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Paper Citation Record · LEDGER

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production

As of 20 August 2026, this Paper Citation Record lists 100 of 243 outbound references and 0 inbound Pith citation observations for arXiv:2608.06877.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2608.06877 v1

Coverage vector

measured 100 of 243 reference resolution

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measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

100 of 243 outbound references displayed

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Outbound references

Observation bb918872-db52-4a8b-9b93-5ad0847698a9 · outbound

This paper cites et al.Machine-Learning-DrivenDiscoveryofWaterSplittingBaFe2O4andHuman-in-the- LoopImprovementviaAl-SubstitutionforIncreasedThermalStability.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Machine-Learning-DrivenDiscoveryofWaterSplittingBaFe2O4andHuman-in-the- LoopImprovementviaAl-SubstitutionforIncreasedThermalStability

Reference 1

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Observation eddca7b9-da9d-442d-a8e3-3fcd78e21f8d · outbound

This paper cites et al.Areviewofsolarthermochemicalcyclesforfuelproduction.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Areviewofsolarthermochemicalcyclesforfuelproduction

Reference 2

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Observation 9e3392b3-ee23-4dd6-acbe-ebdfb78719c3 · outbound

This paper cites Green Energy Environ.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Green Energy Environ

Reference 3

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This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 4

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Observation d2316938-9dde-4594-9adf-1a159b5762fc · outbound

This paper cites Energy 290,130187(2024).

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy 290,130187(2024)

Reference 5

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This paper cites et al.Advancingproductionofhydrogenusingnuclearcycles-integrationofhightemperature gas-cooledreactorswiththermochemicalwatersplittingcycles.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Advancingproductionofhydrogenusingnuclearcycles-integrationofhightemperature gas-cooledreactorswiththermochemicalwatersplittingcycles

Reference 6

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This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 7

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This paper cites et al.Wasteheatvalorizationforhydrogenproduction:ameta-analyticreviewoftechnologies, challenges,andpathstonet-zero.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Wasteheatvalorizationforhydrogenproduction:ameta-analyticreviewoftechnologies, challenges,andpathstonet-zero

Reference 8

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 9

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This paper cites et al.Solarfuelsproduction:Two-stepthermochemicalcycleswithcerium-basedoxides.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Solarfuelsproduction:Two-stepthermochemicalcycleswithcerium-basedoxides

Reference 10

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Observation 92cbe3b6-db94-4ca9-9208-6d37cd45f4b0 · outbound

This paper cites Energy Convers.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Convers

Reference 11

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Observation a7a8ef05-06b5-4a87-90c5-48e7379ed360 · outbound

This paper cites et al.PerovskiteOxideMaterialsforSolarThermochemicalHydrogenProductionfromWater SplittingthroughChemicalLooping.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.PerovskiteOxideMaterialsforSolarThermochemicalHydrogenProductionfromWater SplittingthroughChemicalLooping

Reference 12

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 13

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This paper cites et al.Areviewandperspectiveofefficienthydrogengenerationviasolarthermalwater splitting.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Areviewandperspectiveofefficienthydrogengenerationviasolarthermalwater splitting

Reference 14

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This paper cites et al.Water-splittingmechanismanalysisofSr/CadopedLaFeO3towardscommercialefficiencyof solarthermochemicalH2production.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Water-splittingmechanismanalysisofSr/CadopedLaFeO3towardscommercialefficiencyof solarthermochemicalH2production

Reference 15

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Observation ddef8eff-0c63-4101-b807-1eb4a8b8eb44 · outbound

This paper cites Energy Environ.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Environ

Reference 16

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Observation 2982fd3e-21f6-4cfb-904b-2d1e86dcdde3 · outbound

This paper cites Energy Environ.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Environ

Reference 17

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Observation bda15704-46a0-48e1-b432-e13b2243c0fb · outbound

This paper cites Energy Environ.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Environ

Reference 18

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 19

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This paper cites et al.Hydrogenproductionviaatwo-stepwatersplittingthermochemicalcyclebasedonmetal oxide–Areview.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Hydrogenproductionviaatwo-stepwatersplittingthermochemicalcyclebasedonmetal oxide–Areview

Reference 20

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 21

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This paper cites et al.High-FluxSolar-DrivenThermochemicalDissociationofCO2andH2OUsing NonstoichiometricCeria.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.High-FluxSolar-DrivenThermochemicalDissociationofCO2andH2OUsing NonstoichiometricCeria

Reference 22

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.OutstandingPropertiesandPerformanceofCaTi0.5Mn0.5O3–δforSolar-Driven ThermochemicalHydrogenProduction

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.CompositionallyComplexPerovskiteOxidesforSolarThermochemicalWaterSplitting

Reference 33

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.FavorableRedoxThermodynamicsofSrTi0.5Mn0.5O3−δinSolarThermochemicalWater Splitting

Reference 34

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Observation 4111de11-5b36-404a-a9cd-0e2194c15b1a · outbound

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Observation 7c9a4700-882d-4ba2-b9b5-898c15480310 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Thermodynamicstabilityofdopedceriaforsolarreactors:Sublimationandsurface segregation

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Observation f4a49dd4-0a34-434f-ab35-745933da1cbc · outbound

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Observation e890879b-dd10-4612-890a-d683878fe84b · outbound

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Observation 5d6d5d4a-cf7d-4bd0-a9d1-c67b9d9d3a5a · outbound

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Observation 264139fe-18c5-4792-975b-829bde5d475b · outbound

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Observation e1bf1067-3470-4b06-86b2-f40127d05883 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.633113Z digest=sha256:ee96bb25d4606343301b9a79f44ad0d064182774c42c16b3de2ff05f0e6a9aee

Observation d100e369-79f3-4c86-bca7-717b6eaf1dfe · outbound

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source=pdf_text observed=2026-08-10T19:11:33.638278Z digest=sha256:1c9a1ad7f65c620d2c1b6780de3aa592440d47ccf51b1aa86b2aa3c0b8653510

Observation 2cfe4f03-b306-48d2-b6fd-9f8501d5c419 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.643339Z digest=sha256:6679a52998ff25d7ef8d9c1bfdaed85fc27738e19ca7b8d5060a2e03db47fedc

Observation f3ac15eb-6372-4f0f-9d47-0f61cab2c741 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.650468Z digest=sha256:7843d71b1283d22516e27fff188733eef9f340a210114d0fc60e2596ad3f9fbf

Observation 8f5063ac-7699-49db-8c17-5ddc55ac7800 · outbound

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Observation bf1cdccb-6c43-4320-ae89-9637f6e4fb68 · outbound

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Observation 51358794-4240-4126-91db-0461b8bf1a6d · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy 201,117649(2020)

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source=pdf_text observed=2026-08-10T19:11:33.667520Z digest=sha256:2298e488cfe976ddaa6adb47d98776acb4bf6fc3ba1bed075c0147a024731e09

Observation 9e6917ec-e610-472f-baf1-5f86f3f119fa · outbound

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source=pdf_text observed=2026-08-10T19:11:33.675186Z digest=sha256:4415c61cdf1f085a7c8b12442c41e1fc893430e3a220499d02983a753f9a3637

Observation 31422e14-ed4f-4fc7-891e-4e79185b384c · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Environ

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source=pdf_text observed=2026-08-10T19:11:33.680545Z digest=sha256:09718940b06b0176d3214d30c3b959d3692984d4a81006eaf043799e6f99b1fb

Observation 328d4e3a-3a24-4c55-8f49-9cf2564b5115 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.687165Z digest=sha256:9623e28361ae4673f88e5b3d6707fe3db27c9b3e6486d870efa7acba1cb66835

Observation 46cbf185-ae17-49b5-ac08-37aba4123b00 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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source=pdf_text observed=2026-08-10T19:11:33.694575Z digest=sha256:6aab062b3cabad04830647c20fc9ff5a7fbd0be5dd5ed24d3eb8506df2779c3d

Observation 9ebfbc58-c014-4890-82ec-3a43e6ef2a47 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.699915Z digest=sha256:52e55e4548015399587815a828d738ba83432332a1a948e27db90cdc49127e65

Observation 23da8dcf-541c-4db4-9ead-876316535ad6 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.707365Z digest=sha256:f7c28e7d63a87ab928edf3f192bf3d0fe5c480b71fa6b55c0bedd88df35141ce

Observation 3c89463e-6a06-412e-bc10-30d6bd2b9339 · outbound

This paper cites et al.EnhancedMorphologicalPreservationandRedoxActivityinAl-IncorporatedNiFe2O4for ChemicalLoopingHydrogenProduction.

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Observation c5978984-0d72-4fd0-af9e-afcf003d4075 · outbound

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Observation 815893cf-f4ed-4afb-9ba7-b3bc461fb1a8 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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source=pdf_text observed=2026-08-10T19:11:33.721566Z digest=sha256:5606091d83f43044856287a4fa04a827203861d03f6fec7f68a8dccff80d412d

Observation db39e6e6-ceda-4db8-81e7-ea63865b9263 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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source=pdf_text observed=2026-08-10T19:11:33.728357Z digest=sha256:8ad35b41a6ad1675ad94944c9252072f59e6938d198246610282aa684faa0f10

Observation f16d11f8-e334-4044-b4c8-a7d1afb83e59 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Iron-oxygencovalencyinperovskitestodominatesyngasyieldinchemicalloopingpartial oxidation

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source=pdf_text observed=2026-08-10T19:11:33.734573Z digest=sha256:abd8bdbecab3d80d21758c4e7b66550b7ed1503b4543d785b7f985c3deb75762

Observation b9afd431-6fa4-4448-9840-9e892a413ecc · outbound

This paper cites et al.TailoringCatalyticandOxygenReleaseCapabilityinLaFe1–xNixO3toIntensifyChemical LoopingReactionsatMediumTemperatures.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.TailoringCatalyticandOxygenReleaseCapabilityinLaFe1–xNixO3toIntensifyChemical LoopingReactionsatMediumTemperatures

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Observation 948e6ee5-ee4d-47ff-914c-50de3af04c43 · outbound

This paper cites et al.ModulatingLatticeOxygeninDual-FunctionalMo-V-OMixedOxidesforChemical LoopingOxidativeDehydrogenation.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.ModulatingLatticeOxygeninDual-FunctionalMo-V-OMixedOxidesforChemical LoopingOxidativeDehydrogenation

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Observation 1a4862b3-e012-4ec8-8d9d-942e5fc0f27e · outbound

This paper cites et al.AdecadeofceriabasedsolarthermochemicalH2O/CO2splittingcycle.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.AdecadeofceriabasedsolarthermochemicalH2O/CO2splittingcycle

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Observation aafd3455-e8d2-466f-a2fc-765674fc6436 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Observation 59011e0f-b912-48e1-989c-b6d737fc57ac · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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Observation ac26a059-b7b0-49e8-b900-2d49f69e3504 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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source=pdf_text observed=2026-08-10T19:11:33.764366Z digest=sha256:0a34e15e753e4f198d1fe2e95f11859604d21d6e74f48fd82c4850177fafc45d

Observation b121996b-fcd9-4a47-9983-e8a88ccc4058 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Self-DrivingLaboratoriesforChemistryandMaterialsScience

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source=pdf_text observed=2026-08-10T19:11:33.769933Z digest=sha256:e9f78232693df7e7abec82b35e5d9d8e87fbc62a80dabde23018ee76691935d6

Observation 8b2d4678-1756-4fba-9841-fb856fc9e2d1 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Anautonomouslaboratoryfortheacceleratedsynthesisofinorganicmaterials

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source=pdf_text observed=2026-08-10T19:11:33.775515Z digest=sha256:c8c5fc1daa1e34751eb2f45c141b0e173c6ff508d57c63a6386dac69a35c9cae

Observation dfabaf98-f1b2-493c-a3ec-01bd55fc4fc5 · outbound

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source=pdf_text observed=2026-08-10T19:11:33.785614Z digest=sha256:6242cd98c6d5cacbe5e9b288609efb78d7a6d7e47f34705d12c0ae90a20bff2d

Observation 26602477-ad93-4fd0-862a-8941719858a8 · outbound

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Observation c5c13212-b524-4657-bb95-e004aefe0bbf · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.AcceleratedPerovskiteOxideDevelopmentforThermochemicalEnergyStoragebya High-ThroughputCombinatorialApproach

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Observation 46b768df-b9bc-4863-956d-89f9df6427a0 · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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source=pdf_text observed=2026-08-10T19:11:33.804774Z digest=sha256:9491fc768a78a12e652b77996c5f91d4af4362236d4ade7c226d0108f289bc19

Observation e0d53cbc-05c2-4a5d-a74f-8c50a7cb1357 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

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source=pdf_text observed=2026-08-10T19:11:33.810076Z digest=sha256:3e86d58948c0535896b38177b7639b9536995e9cbeaa14b9f557d9574fc5f76f

Observation 02900c96-cfe1-421a-98cb-73b1ecd8a5fc · outbound

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Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.On-the-flyclosed-loopmaterialsdiscoveryviaBayesianactivelearning

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Observation ec9b2587-defd-4455-a8ad-9e904b5a9eaa · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 77

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source=pdf_text observed=2026-08-10T19:11:33.824014Z digest=sha256:0ef7395ee08be778a940b34f500a847e1ab57ae0a5da1e9b5fd244ed3c3fd3ca

Observation 80df5069-f045-42f2-b8ef-f89605b576e8 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 78

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no resolver link, observed 2026-08-10T19:11:33.831046Z

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source=pdf_text observed=2026-08-10T19:11:33.831046Z digest=sha256:5dd4f3e01175cd8ef496b919590c6359aa80ee26576f725471378fbb81a92765

Observation 1846c567-c4db-4e5c-b82f-cd32b43a7093 · outbound

This paper cites Energy Environ.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Environ

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no resolver link, observed 2026-08-10T19:11:33.836441Z

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source=pdf_text observed=2026-08-10T19:11:33.836441Z digest=sha256:bd91956e491dc75c51c35e0f29c8b96effa01328aac3584a00e50f9a9e015008

Observation 959e7e77-b7b9-4a19-a363-b1b81b42b410 · outbound

This paper cites et al.ComputationallyGuidedDiscoveryofMixedMn/NiPerovskitesforSolar ThermochemicalHydrogenProductionatHighH2Conversion.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.ComputationallyGuidedDiscoveryofMixedMn/NiPerovskitesforSolar ThermochemicalHydrogenProductionatHighH2Conversion

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no resolver link, observed 2026-08-10T19:11:33.842125Z

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source=pdf_text observed=2026-08-10T19:11:33.842125Z digest=sha256:4ce88f694b28e23bdcb077b97ea9494f3a5ff1f89d5ab786f68f91bd708e4cc1

Observation 0788f2a2-fe3e-4315-a4e0-702d37dfa3ed · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 81

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source=pdf_text observed=2026-08-10T19:11:33.849133Z digest=sha256:31e4ea82015b59732315412314d48aa37480930ba6cfa83cbb363302b1522beb

Observation 5a7a8291-2a4b-4116-afdb-b2c345b7ab64 · outbound

This paper cites et al.Fromhigh-entropyceramicstocompositionally-complexceramics:Acasestudyof fluoriteoxides.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Fromhigh-entropyceramicstocompositionally-complexceramics:Acasestudyof fluoriteoxides

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source=pdf_text observed=2026-08-10T19:11:33.855062Z digest=sha256:21db6c43c81c3ecd7123a778d7d36d9e64f658a7916d28f7c8933deb05a9f0b4

Observation b773f800-7311-455f-9bb9-76587099ddeb · outbound

This paper cites Catalysts 12,(2022).

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Catalysts 12,(2022)

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source=pdf_text observed=2026-08-10T19:11:33.863431Z digest=sha256:e22edb2905fa6fa89ab67b752aea49d12e919f835fcac3974ced3ae0fd8913b3

Observation 488cce33-8e8b-46ea-9d78-2c222225c63e · outbound

This paper cites et al.SubsurfaceA-sitevacancyactivateslatticeoxygeninperovskiteferritesformethane anaerobicoxidationtosyngas.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.SubsurfaceA-sitevacancyactivateslatticeoxygeninperovskiteferritesformethane anaerobicoxidationtosyngas

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no resolver link, observed 2026-08-10T19:11:33.870684Z

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source=pdf_text observed=2026-08-10T19:11:33.870684Z digest=sha256:96e68190bb4a4969cebb56342be875138a1717181e8d70f7c37e5f05717e3a1b

Observation efa1c375-f5aa-4a22-bea8-6761ca68a009 · outbound

This paper cites et al.ProbingOne-DimensionalOxygenVacancyChannelsDrivenbyCation-AnionDouble OrderinginPerovskites.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.ProbingOne-DimensionalOxygenVacancyChannelsDrivenbyCation-AnionDouble OrderinginPerovskites

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no resolver link, observed 2026-08-10T19:11:33.877485Z

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source=pdf_text observed=2026-08-10T19:11:33.877485Z digest=sha256:a040533fa4ca00476c86bb299db6ac828e83db09acbbabddaa7ae73c5ba1b5f6

Observation 82906f8d-40cf-4da9-9259-2819247a8530 · outbound

This paper cites et al.UnravelingtheTrade-OffBetweenOxygenVacancyConcentrationandOrderingof PerovskiteOxidesforEfficientLatticeOxygenEvolution.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.UnravelingtheTrade-OffBetweenOxygenVacancyConcentrationandOrderingof PerovskiteOxidesforEfficientLatticeOxygenEvolution

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no resolver link, observed 2026-08-10T19:11:33.881944Z

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source=pdf_text observed=2026-08-10T19:11:33.881944Z digest=sha256:4de93d284bff3c3ca30dc66c11f827e8c86b28ce34fab7f577bc9c9b57b7f458

Observation 052a4562-cd86-4658-a3dd-c5c9eb91c63b · outbound

This paper cites et al.Ambient-pressureozonetreatmentenablestuningofoxygenvacancyconcentrationinthe La1−xSrxFeO3−δ(0≤x≤1)perovskiteoxides.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Ambient-pressureozonetreatmentenablestuningofoxygenvacancyconcentrationinthe La1−xSrxFeO3−δ(0≤x≤1)perovskiteoxides

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no resolver link, observed 2026-08-10T19:11:33.887033Z

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source=pdf_text observed=2026-08-10T19:11:33.887033Z digest=sha256:3ff40c305f4118675439df15387c7194fd091a909dda1545a6ea1829ea15eccc

Observation 8cbd8958-e43c-4e24-8433-32cdb80d1774 · outbound

This paper cites et al.AReviewofSolarThermochemicalCO2SplittingUsingCeria-BasedCeramicsWith DesignedMorphologiesandMicrostructures.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.AReviewofSolarThermochemicalCO2SplittingUsingCeria-BasedCeramicsWith DesignedMorphologiesandMicrostructures

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no resolver link, observed 2026-08-10T19:11:33.894642Z

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source=pdf_text observed=2026-08-10T19:11:33.894642Z digest=sha256:b41ed752b479bf4d0d4d5dd5e8a8aa0d8597afd2668a4a697c3479515eab6be2

Observation 5f76655a-8f50-4171-a8a8-767a318a83c1 · outbound

This paper cites et al.Discoveryofareversibleredox-inducedorder-disordertransitionina10-component compositionallycomplexceramic.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Discoveryofareversibleredox-inducedorder-disordertransitionina10-component compositionallycomplexceramic

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source=pdf_text observed=2026-08-10T19:11:33.899826Z digest=sha256:bfbadd095c234c11a205d852cbadca31b9c53c0974a6289382bf2056ff7ceb39

Observation 3c1472fe-b3ac-4b73-9c86-8214632520ad · outbound

This paper cites et al.Single-phaseduodenaryhigh-entropyfluorite/pyrochloreoxideswithanorder- disordertransition.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Single-phaseduodenaryhigh-entropyfluorite/pyrochloreoxideswithanorder- disordertransition

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no resolver link, observed 2026-08-10T19:11:33.904488Z

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source=pdf_text observed=2026-08-10T19:11:33.904488Z digest=sha256:067b18b3cf31c2327f587fce65447f0a052b08604069c8125e58d9e8ca8bf224

Observation 48445629-b81f-40a1-bfd5-473df8359882 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 91

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source=pdf_text observed=2026-08-10T19:11:33.911255Z digest=sha256:e0bae30f6f78c28bb69da6c01f243e96a1fac05bb3fe3b4bd8af1cb061101d13

Observation 88be2a6c-3296-42f2-8537-91b4920310a4 · outbound

This paper cites Energy 89,924–931(2015).

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy 89,924–931(2015)

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source=pdf_text observed=2026-08-10T19:11:33.918304Z digest=sha256:0f9a9c6410e7b5beb1d1ed58814ce53cafd71449fcb3ed1175bc859c3f221e0d

Observation 53e266d6-eb72-4257-ba05-df0f872e5058 · outbound

This paper cites et al.Agenerativemodelforinorganicmaterialsdesign.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Agenerativemodelforinorganicmaterialsdesign

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no resolver link, observed 2026-08-10T19:11:33.930623Z

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source=pdf_text observed=2026-08-10T19:11:33.930623Z digest=sha256:a98a9c8b9f775737302ba8bbab0c7066d57a83acfb15c706a83a7c7771488e4e

Observation 25babd53-c1be-4a78-affe-7cbed68c2ebe · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 94

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no resolver link, observed 2026-08-10T19:11:33.937042Z

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source=pdf_text observed=2026-08-10T19:11:33.937042Z digest=sha256:8324f44fe71de4205340244a66a24f834250779e4d8665befd66cd41fe34bcf9

Observation 9d43f85e-ea76-48e4-b7fb-0fc579ca3ac8 · outbound

This paper cites et al.Abinitiostructuresolutionsfromnanocrystallinepowderdiffractiondataviadiffusion models.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Abinitiostructuresolutionsfromnanocrystallinepowderdiffractiondataviadiffusion models

Reference 95

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no resolver link, observed 2026-08-10T19:11:33.940995Z

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source=pdf_text observed=2026-08-10T19:11:33.940995Z digest=sha256:74dffc87f05b52a03bf8d7036dfba2dcb49c97a69094aa9642b9e131221c2ac8

Observation 3fbead7b-92da-4656-a601-179abcdc4906 · outbound

This paper cites an unresolved cited work.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Unresolved cited work

Reference 96

Resolution
unresolved
no resolver link, observed 2026-08-10T19:11:33.946506Z

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source=pdf_text observed=2026-08-10T19:11:33.946506Z digest=sha256:2c73618d332c112123fe30f511fa98dce41867c4b809dea48e61225705ee6a36

Observation 96504bf9-0763-4cc3-97b7-b17fc75e289e · outbound

This paper cites Energy Environ.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Environ

Reference 97

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source=pdf_text observed=2026-08-10T19:11:33.952612Z digest=sha256:4a68e430ecea2edc964eb5c061353b4e9935516aa6e02a33ff1701e3265eaa82

Observation 15f3da95-7431-45e8-a46c-7e2d530d20bc · outbound

This paper cites Energy Convers.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Energy Convers

Reference 98

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no resolver link, observed 2026-08-10T19:11:33.956835Z

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source=pdf_text observed=2026-08-10T19:11:33.956835Z digest=sha256:316cb8d47f75a9be19e918121c80e206becdfd6e21f39b01aea60b122e12fb83

Observation e30680df-b20f-4e1d-8449-d4e6bfed00f6 · outbound

This paper cites Fuel 265,116983(2020).

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production Fuel 265,116983(2020)

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source=pdf_text observed=2026-08-10T19:11:33.960637Z digest=sha256:ef240dc13f78a91607f9a497d558c95062228bd1e8e3cb7b28c227f4169aa140

Observation 864b5f71-8de8-4bc4-ab55-972d8406fcc0 · outbound

This paper cites et al.Thermalandmechanicalbehaviourofoxygencarriermaterialsforchemicallooping combustioninapackedbedreactor.

Autonomous Optimization of Complex Oxides for Thermochemical Fuel Production et al.Thermalandmechanicalbehaviourofoxygencarriermaterialsforchemicallooping combustioninapackedbedreactor

Reference 100

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no resolver link, observed 2026-08-10T19:11:33.965176Z

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source=pdf_text observed=2026-08-10T19:11:33.965176Z digest=sha256:8adad5ff9d4dda8cac9a8cb838ccb6952c724d5a3a9703d1784cf095d6a39835

Pith citing papers

No inbound Pith citation observations are available.