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Paper Citation Record · LEDGER

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes

As of 8 August 2026, this Paper Citation Record lists 43 of 43 outbound references and 0 inbound Pith citation observations for arXiv:2506.04543.

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

pith.paper-citation-record.v1
2506.04543 v1

Coverage vector

measured 43 of 43 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: cited_works

Reference resolution

43 of 43 outbound references displayed

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External citation measurements

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Outbound references

Observation d68eba82-c26c-4f83-abd6-f7d4bc871469 · outbound

This paper cites 1 - An overview of the corrosion chemistry.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes 1 - An overview of the corrosion chemistry

Reference 1

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This paper cites THE CORROSION OF METALS.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes THE CORROSION OF METALS

Reference 2

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This paper cites Chapter 5 - Electrochemical corrosion.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Chapter 5 - Electrochemical corrosion

Reference 3

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This paper cites What is Corrosion?.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes What is Corrosion?

Reference 4

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Observation 5dfcf776-4a4f-49aa-9a1f-d3e7494f5440 · outbound

This paper cites Corrosion and Stress Corrosion Cracking Fundamentals.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Corrosion and Stress Corrosion Cracking Fundamentals

Reference 5

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This paper cites 2 - Overview of nuclear materials and nuclear corrosion science and engineering.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes 2 - Overview of nuclear materials and nuclear corrosion science and engineering

Reference 6

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Observation 483a72e8-d73e-4b42-87d3-91a83263c9d4 · outbound

This paper cites Burnable Poisons in Nuclear Fuels.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Burnable Poisons in Nuclear Fuels

Reference 7

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Observation 0a390515-0342-42aa-9099-9a6594a67337 · outbound

This paper cites Materials challenges in nuclear energy.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Materials challenges in nuclear energy

Reference 8

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Observation 181fb6b2-89ce-41ba-90a6-c209939ae931 · outbound

This paper cites Hydrogen Embrittlement in Nuclear Power Systems.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Hydrogen Embrittlement in Nuclear Power Systems

Reference 9

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This paper cites A review of irradiation assisted stress corrosion cracking.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes A review of irradiation assisted stress corrosion cracking

Reference 10

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Observation 41c43f4b-d36c-427a-98f5-43870df21c87 · outbound

This paper cites Irradiation assisted corrosion and stress corrosion cracking (IAC/IASCC) in nuclear reactor systems and components.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Irradiation assisted corrosion and stress corrosion cracking (IAC/IASCC) in nuclear reactor systems and components

Reference 11

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Observation 9c89fe8e-6afa-4820-9312-ef24889e0051 · outbound

This paper cites Environmentally Assisted Cracking of Irradiated Metals and Alloys.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Environmentally Assisted Cracking of Irradiated Metals and Alloys

Reference 12

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This paper cites The design, setup and operational testing of the irradiation and corrosion experiment (ICE).

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes The design, setup and operational testing of the irradiation and corrosion experiment (ICE)

Reference 13

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Observation 4d24b773-3e10-4ee2-89ec-3d0ccc5f6d80 · outbound

This paper cites Continuous Monitoring of Pure Fe Corrosion in Lead-Bismuth Eutectic Under Irradiation with Proton-Induced X-ray Emission Spectroscopy.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Continuous Monitoring of Pure Fe Corrosion in Lead-Bismuth Eutectic Under Irradiation with Proton-Induced X-ray Emission Spectroscopy

Reference 14

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Observation 76e5fc74-9112-48b4-8515-e949fbf08517 · outbound

This paper cites Accelerated corrosion and oxide dissolution in 316L stainless steel irradiated in situ in high temperature water.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Accelerated corrosion and oxide dissolution in 316L stainless steel irradiated in situ in high temperature water

Reference 15

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Observation 760589fc-0c0e-4b41-91df-8c105b896bc8 · outbound

This paper cites Radiolysis driven changes to oxide stability during irradiation-corrosion of 316L stainless steel in high temperature water.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Radiolysis driven changes to oxide stability during irradiation-corrosion of 316L stainless steel in high temperature water

Reference 16

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This paper cites An X-ray photo-electron spectroscopic study on the role of molybdenum in increasing the corrosion resistance of ferritic stainless steels in HC1.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes An X-ray photo-electron spectroscopic study on the role of molybdenum in increasing the corrosion resistance of ferritic stainless steels in HC1

Reference 17

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Observation 6d9bee68-34e3-48a6-8957-ab00083bceef · outbound

This paper cites The mechanism of corrosion inhibition by chro- mate conversion coatings from x-ray absorption near edge spectroscopy (Xanes).

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes The mechanism of corrosion inhibition by chro- mate conversion coatings from x-ray absorption near edge spectroscopy (Xanes)

Reference 18

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Observation b9b5a4fb-e7a0-4c50-80ab-6a8953157ddf · outbound

This paper cites Operando methods: A new era of electrochemistry.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Operando methods: A new era of electrochemistry

Reference 19

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This paper cites Developments in X-ray tomography characterization for electro- chemical devices.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Developments in X-ray tomography characterization for electro- chemical devices

Reference 20

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Observation 881b7c72-3e1e-4225-b223-c5db866e6834 · outbound

This paper cites Coherent X-Ray Diffraction Imaging.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Coherent X-Ray Diffraction Imaging

Reference 21

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Observation ed472a1f-9834-45b7-ba33-be198e654127 · outbound

This paper cites Bragg Coherent Diffraction Imaging for In Situ Studies in Electrocatalysis.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Bragg Coherent Diffraction Imaging for In Situ Studies in Electrocatalysis

Reference 22

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Observation 4dfadd38-77ef-488c-8abb-1fd02bfb843d · outbound

This paper cites Dark-field X-ray microscopy for multiscale structural characterization.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Dark-field X-ray microscopy for multiscale structural characterization

Reference 23

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Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes The ESRF dark-field x-ray microscope at ID06

Reference 24

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This paper cites Direct Imaging of Hydrogen-Driven Dislocation and Strain Field Evolution in a Stainless Steel Grain.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Direct Imaging of Hydrogen-Driven Dislocation and Strain Field Evolution in a Stainless Steel Grain

Reference 25

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Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Unresolved cited work

Reference 26

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Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Rigid 10K Resin

Reference 27

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Observation d0b4f7a5-9eda-4a51-a811-85d4bbe9c86c · outbound

This paper cites X-Ray Irradiation Induced Strain Relaxation of Dewetted Ni Particles on Modified Si Substrate.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes X-Ray Irradiation Induced Strain Relaxation of Dewetted Ni Particles on Modified Si Substrate

Reference 28

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Observation a20a6c22-5336-436a-a984-6cd056a362fb · outbound

This paper cites Towards a quantitative determination of strain in Bragg Coherent X-ray Diffraction Imaging: artefacts and sign convention in reconstructions.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Towards a quantitative determination of strain in Bragg Coherent X-ray Diffraction Imaging: artefacts and sign convention in reconstructions

Reference 29

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Source-reported events for the cited work

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Observation 62ce28b8-cdb9-4b31-bdc6-81c4da20e168 · outbound

This paper cites Cdiutils: A python package for X-ray Bragg Coherent Diffraction Imaging pro- cessing, analysis and visualisation workflows.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Cdiutils: A python package for X-ray Bragg Coherent Diffraction Imaging pro- cessing, analysis and visualisation workflows

Reference 30

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Source-reported events for the cited work

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Observation 0e20ba74-5f6d-45a5-a486-a3c6d7d9a606 · outbound

This paper cites Gwaihir: Jupyter Notebook graphical user interface for Bragg coherent diffraction imaging.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Gwaihir: Jupyter Notebook graphical user interface for Bragg coherent diffraction imaging

Reference 31

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Observation 7a29d2c4-a5d6-4af1-9595-4750ed4b34c0 · outbound

This paper cites PyNX: high-performance computing toolkit for coherent X-ray imaging based on operators.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes PyNX: high-performance computing toolkit for coherent X-ray imaging based on operators

Reference 32

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Observation c41ddcb8-36c2-45ae-ae52-9a50b881598c · outbound

This paper cites Reconstruction of an object from the modulus of its Fourier transform.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Reconstruction of an object from the modulus of its Fourier transform

Reference 33

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Observation 327d5b19-ce41-48f3-afc1-e1eab3c5be59 · outbound

This paper cites Relaxed averaged alternating reflections for diffraction imaging.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Relaxed averaged alternating reflections for diffraction imaging

Reference 34

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:32.503461Z digest=sha256:a4a8c49070a4a747dc310f75be80f467bd998602048389706c4b3bd4bedbedfa

Observation e0dcfb61-4d6d-48e4-8f97-9afe17d078f1 · outbound

This paper cites A practical algorithm for the determination of plane from image and diffraction pictures.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes A practical algorithm for the determination of plane from image and diffraction pictures

Reference 35

Resolution
verified fuzzy
raw_fallback, observed 2026-08-07T10:41:38.388937Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

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Observation cc60c7dd-3076-4e64-8419-3f57cd52c6bb · outbound

This paper cites Equivalent of the point spread function for partially coherent imaging.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Equivalent of the point spread function for partially coherent imaging

Reference 36

Resolution
verified exact
doi, observed 2026-08-07T10:41:34.722978Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:32.792958Z digest=sha256:1b6f4d42a45c78fe727852f9ddde74c7562c4e201adc77e8ea85f95e21135e96

Observation c0d691a4-9281-481d-8c3d-98750f7926dc · outbound

This paper cites Free log-likelihood as an unbiased metric for coherent diffraction imaging.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Free log-likelihood as an unbiased metric for coherent diffraction imaging

Reference 37

Resolution
malformed identifier
raw_fallback, observed 2026-08-07T10:41:38.191325Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:32.918347Z digest=sha256:22fcd5035218156b9a72866a852a183813863176556db3d374d3fda3a8fe0bd1

Observation 9ccb8377-d22d-4e24-9314-041e4f3d512d · outbound

This paper cites ParaView: An End-User Tool for Large Data Visualiza- tion.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes ParaView: An End-User Tool for Large Data Visualiza- tion

Reference 38

Resolution
verified fuzzy
raw_fallback, observed 2026-08-07T10:41:38.037433Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:33.009402Z digest=sha256:db705637ccbe3aa92bcffda5485b40af42fdd035e9af2b12af1c92f44e39f557

Observation 34170a73-8e68-48aa-813f-9af7c816975c · outbound

This paper cites Three-dimensional imaging of dislocation propagation during crystal growth and dissolution.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Three-dimensional imaging of dislocation propagation during crystal growth and dissolution

Reference 39

Resolution
verified exact
doi, observed 2026-08-07T10:41:34.522391Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:33.158089Z digest=sha256:ab3be26b88bb16a5369bf65a8129750fd0001f2be886d792881d428af0997aa0

Observation 915c08d3-7c42-47a2-9d6b-685d71adc806 · outbound

This paper cites Dissolving, trapping and detrapping mechanisms of hydrogen in bcc and fcc transition metals.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Dissolving, trapping and detrapping mechanisms of hydrogen in bcc and fcc transition metals

Reference 40

Resolution
verified exact
doi, observed 2026-08-07T10:41:34.289352Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:33.253306Z digest=sha256:a5f6c16c77b2e0283da54d2ad00659729eac0932ee087666d7909608f1196d74

Observation e34a6203-37e5-405c-8911-c91516c7cf91 · outbound

This paper cites Hydrogen-Enhanced Vacancy Diffusion in Metals.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Hydrogen-Enhanced Vacancy Diffusion in Metals

Reference 41

Resolution
verified exact
doi, observed 2026-08-07T10:41:34.128069Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:33.345103Z digest=sha256:7e70a7a9c165776efc2126d2a00b8449f614adddc8a93822c5dfdf798dfe7d4a

Observation 64d848fb-681e-4684-9235-16d8b51c3c3f · outbound

This paper cites Thermodynamic analysis of the interaction between metal vacancies and hydrogen in bulk Cu.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Thermodynamic analysis of the interaction between metal vacancies and hydrogen in bulk Cu

Reference 42

Resolution
verified fuzzy
raw_fallback, observed 2026-08-07T10:41:37.853627Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:33.491515Z digest=sha256:e682853d047699fd118ac6d8d58564941a3f6e68e44daf3f8761aac75246592e

Observation 3011278f-d766-4c93-a5ea-ef1c378afb19 · outbound

This paper cites Defects Induced in Copper by Cathodic Charging of Hydrogen.

Multipurpose in situ cell design for 3D X-ray imaging of electrochemical processes Defects Induced in Copper by Cathodic Charging of Hydrogen

Reference 43

Resolution
verified exact
doi, observed 2026-08-07T10:41:33.865569Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-07T06:34:17.273281+00:00.

source=pdf_text observed=2026-08-07T10:41:33.593840Z digest=sha256:d9c7cd97ec3b2d487f09d3fc68670e97eca0ce164aa47a65ad712c5247945a70

Pith citing papers

No inbound Pith citation observations are available.