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Paper Citation Record · LEDGER

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes

As of 16 August 2026, this Paper Citation Record lists 59 of 59 outbound references and 0 inbound Pith citation observations for arXiv:2607.17330.

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pith.paper-citation-record.v1
2607.17330 v1

Coverage vector

measured 59 of 59 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-01T18:23:24.020884Z

measured 59 of 59 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00

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59 of 59 outbound references displayed

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Outbound references

Observation 7f2fd29c-d6af-4a51-bfba-4b9e30314dde · outbound

This paper cites Integrated nanomaterials for extreme thermal management: A perspective for aerospace applications,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Integrated nanomaterials for extreme thermal management: A perspective for aerospace applications,

Reference 1

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Observation 9522286a-3bd0-467a-91cd-42a7365f5af9 · outbound

This paper cites S2 -T1: GaN -on-diamond: A brief history,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes S2 -T1: GaN -on-diamond: A brief history,

Reference 2

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Observation 43b43577-2111-4491-8bc7-9218c3d4e3ce · outbound

This paper cites Cooling limits for GaN HEMT technology,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Cooling limits for GaN HEMT technology,

Reference 3

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Observation 4bc308dd-ee30-454c-8d2f-389b0b233132 · outbound

This paper cites AlN/diamond interface nanoengineering for reducing thermal boundary resistance by molecular dynamics simulations,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes AlN/diamond interface nanoengineering for reducing thermal boundary resistance by molecular dynamics simulations,

Reference 4

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Observation aa69ef54-3d5b-4bfc-a9a0-19169e354114 · outbound

This paper cites Anisotropic thermal conductivity of 4H and 6H silicon carbide measured using time-domain thermoreflectance,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Anisotropic thermal conductivity of 4H and 6H silicon carbide measured using time-domain thermoreflectance,

Reference 5

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Observation 99a7e741-b778-492a-b434-e1d5b1f9b61e · outbound

This paper cites (Ultra) wide bandgap semiconductor heterostructures for electronics cooling,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes (Ultra) wide bandgap semiconductor heterostructures for electronics cooling,

Reference 6

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Observation 14fc2df8-f262-4096-8750-781892930544 · outbound

This paper cites Deep -potential enabled multiscale simulation of gallium nitride devices on boron arsenide cooling substrates,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Deep -potential enabled multiscale simulation of gallium nitride devices on boron arsenide cooling substrates,

Reference 7

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Observation 3dfe622a-ea35-45a2-9605-550c75345b46 · outbound

This paper cites Accurate estimation of interfacial thermal conductance between silicon and diamond enabled by a machine learning interatomic potential,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Accurate estimation of interfacial thermal conductance between silicon and diamond enabled by a machine learning interatomic potential,

Reference 8

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Observation 05d5c528-71b0-4887-bf49-ec2f95c4215a · outbound

This paper cites Characterization of the thermal conductivity of CVD diamond for GaN - on-diamond devices,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Characterization of the thermal conductivity of CVD diamond for GaN - on-diamond devices,

Reference 9

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Observation 8a0b0e1f-e442-4c1f-98aa-2a5c34c8cee3 · outbound

This paper cites Fundamental cooling limits for high power density gallium nitride electronics,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Fundamental cooling limits for high power density gallium nitride electronics,

Reference 10

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Observation 4b586985-b832-443d-8810-41d7ce7edbb1 · outbound

This paper cites Significan tly Enhanced Interfacial Thermal Conductance across GaN/Diamond Interfaces Utilizing Al x Ga1–x N as a Phonon Bridge,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Significan tly Enhanced Interfacial Thermal Conductance across GaN/Diamond Interfaces Utilizing Al x Ga1–x N as a Phonon Bridge,

Reference 11

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Observation d66f28c7-9e51-44a7-8f19-2c091b419ae5 · outbound

This paper cites Perspe ctive on thermal conductance across heterogeneously integrated interfaces for wide and ultrawide bandgap electronics,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Perspe ctive on thermal conductance across heterogeneously integrated interfaces for wide and ultrawide bandgap electronics,

Reference 12

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Observation 8a86dcea-4da3-4161-a4f0-366fe1f9e762 · outbound

This paper cites Ultrawide‐bandgap semiconductors: research opportunities and challenges,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Ultrawide‐bandgap semiconductors: research opportunities and challenges,

Reference 13

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Observation 3b28a237-f374-40c3-adf1-fe2aaee2f315 · outbound

This paper cites Interfacial thermal conductance across room-temperature-bonded GaN/diam ond interfaces for GaN -on-diamond devices,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Interfacial thermal conductance across room-temperature-bonded GaN/diam ond interfaces for GaN -on-diamond devices,

Reference 14

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Observation b60112ce-af21-444a-a061-483c2676c47f · outbound

This paper cites Nanoscale thermal transport. II. 2003–2012,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Nanoscale thermal transport. II. 2003–2012,

Reference 15

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Observation 11e4ba85-22aa-449d-8982-bca647a93914 · outbound

This paper cites Extremely anisotropic van der Waals thermal conductors,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Extremely anisotropic van der Waals thermal conductors,

Reference 16

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Observation 64d97e34-efe9-470f-adf6-0accae122e4b · outbound

This paper cites Exceptionally strong phonon scattering by B substitution in cubic SiC,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Exceptionally strong phonon scattering by B substitution in cubic SiC,

Reference 17

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Observation 6f08c3c7-e206-4a77-b5c1-de294c28f2c9 · outbound

This paper cites Ultrahigh-quality silicon carbide single crystals,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Ultrahigh-quality silicon carbide single crystals,

Reference 18

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Observation c934d696-9381-4389-944c-cb811d2f71a6 · outbound

This paper cites Silicon carbide as a platform for power electro nics,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Silicon carbide as a platform for power electro nics,

Reference 19

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Observation 26fef820-fd31-463d-96b6-db4c3e83bf61 · outbound

This paper cites New approaches and understandings in the growth of cubic silicon carbide,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes New approaches and understandings in the growth of cubic silicon carbide,

Reference 20

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Observation 79598523-b670-40c1-85a9-4f35174f66f0 · outbound

This paper cites Thermal conductivity of GaN, GaN 71, and SiC from 150 K to 850 K,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Thermal conductivity of GaN, GaN 71, and SiC from 150 K to 850 K,

Reference 21

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Observation 6e324a71-ab72-4bca-bf13-75d3bbcc181f · outbound

This paper cites Experimental observation of high intrinsic thermal conductivity of AlN,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Experimental observation of high intrinsic thermal conductivity of AlN,

Reference 22

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Observation 3451d1ce-d640-4d5e-bf34-a57b7607e596 · outbound

This paper cites Thermal conductivity of pure and impure silicon, silicon carbide, and diamond,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Thermal conductivity of pure and impure silicon, silicon carbide, and diamond,

Reference 23

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Observation 130fe7ce-20b5-4962-9980-4e5e15fa5ee7 · outbound

This paper cites Nonmetallic crystals with high thermal conductivity,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Nonmetallic crystals with high thermal conductivity,

Reference 24

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Observation c6408d7f-08d8-44ab-ace7-71daa4657865 · outbound

This paper cites Quasi-ballistic thermal conduction in 6H–SiC,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Quasi-ballistic thermal conduction in 6H–SiC,

Reference 25

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Observation da8de0a1-103e-4639-aedb-57cd24e8a090 · outbound

This paper cites Phonon thermal transport in 2H, 4H and 6H silicon carbide from first principles,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Phonon thermal transport in 2H, 4H and 6H silicon carbide from first principles,

Reference 26

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Observation d23e2c62-d916-4b3f-9846-94f4c2af75e3 · outbound

This paper cites High thermal conductivity in wafer-scale cubic silicon carbide crystals,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes High thermal conductivity in wafer-scale cubic silicon carbide crystals,

Reference 27

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Observation 5aaa135d-e063-4d01-95bd-c89efd498aed · outbound

This paper cites Thermal boundary conductance enhancement of the Si/diamond interface via atomic transition strategy,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Thermal boundary conductance enhancement of the Si/diamond interface via atomic transition strategy,

Reference 28

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Observation 3a226582-f01e-4d23-b863-1a0917f47650 · outbound

This paper cites Enhancing heat energy transfer at graphene/polypropylene interface,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Enhancing heat energy transfer at graphene/polypropylene interface,

Reference 29

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Observation 4077a15d-6087-460e-a30a-c96a06c80fc9 · outbound

This paper cites Manipulati ng heat transfer at graphene/silicon interface with nitrogen doping,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Manipulati ng heat transfer at graphene/silicon interface with nitrogen doping,

Reference 30

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Observation 3df4156d-2566-4f1c-90ef-add9e24eebb3 · outbound

This paper cites Atomic -scale surface engineering to modulate thermal transport in M oS2/Si (2D/3D) heterostructure,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Atomic -scale surface engineering to modulate thermal transport in M oS2/Si (2D/3D) heterostructure,

Reference 31

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Observation eda650ec-fb80-411e-8751-406f57c7c332 · outbound

This paper cites Deep learning -based molecular dynamics simulation reconfiguration of efficient heat energy transport of Gra/h -BN heterointerface,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Deep learning -based molecular dynamics simulation reconfiguration of efficient heat energy transport of Gra/h -BN heterointerface,

Reference 32

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Observation c349520c-157b-444d-8820-efd35213c351 · outbound

This paper cites Broadly manipulating the interfacial thermal energy transport across the Si/4H-SiC interfaces via nanopatterns,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Broadly manipulating the interfacial thermal energy transport across the Si/4H-SiC interfaces via nanopatterns,

Reference 33

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Observation 67513a92-3cd3-4341-b09c-acc39f9d892f · outbound

This paper cites Enhancing and mapping thermal boundary conductance across bonded Si -SiC interface,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Enhancing and mapping thermal boundary conductance across bonded Si -SiC interface,

Reference 34

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Observation 57583a34-d673-4fa1-9866-266860ccfd3f · outbound

This paper cites Amorphous carbon interlayer modulated interfacial thermal conductance between Cu and diamond,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Amorphous carbon interlayer modulated interfacial thermal conductance between Cu and diamond,

Reference 35

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Observation 74aee610-6a9e-4073-88f0-7c92af4846f1 · outbound

This paper cites Thermal characterization of direct wafer bonded Si -on-SiC,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Thermal characterization of direct wafer bonded Si -on-SiC,

Reference 36

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source=pdf_text observed=2026-08-01T18:23:21.698638Z digest=sha256:7268736100b28d1b8000b890be6019c44226da8d7e94d68eb211ca30f137a98e

Observation 046e388e-fb8a-44f2-a9f4-a9b47c57f643 · outbound

This paper cites Surface activated bonding of SiC/diamond for thermal management of high-output power GaN HEMTs,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Surface activated bonding of SiC/diamond for thermal management of high-output power GaN HEMTs,

Reference 37

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source=pdf_text observed=2026-08-01T18:23:21.802010Z digest=sha256:d2849888440da1cc311b9782c69cb874a13c8ba51178f26b399e0123419efa24

Observation 7b338b5a-a51b-406b-9151-69266e478f78 · outbound

This paper cites Record-Low thermal boundary resistance at bonded GaN/diamond interface by controlling ultrathin heterogeneous amorphous layer,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Record-Low thermal boundary resistance at bonded GaN/diamond interface by controlling ultrathin heterogeneous amorphous layer,

Reference 38

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source=pdf_text observed=2026-08-01T18:23:21.900063Z digest=sha256:89037e993094097c488898b78e1221597dd5d876b8f24d4d5aba46270bb1ffc3

Observation ccd19718-2467-4819-b15d-0ae7799d7bd7 · outbound

This paper cites In fluence of Interfacial Mixing on Thermal Boundary Conductance Across a Chromium/Silicon Interface,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes In fluence of Interfacial Mixing on Thermal Boundary Conductance Across a Chromium/Silicon Interface,

Reference 39

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doi, observed 2026-08-01T18:28:26.666748Z

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source=pdf_text observed=2026-08-01T18:23:22.002062Z digest=sha256:9ad0f81d93cd7354f7d1f1dccb97333a64881faa7d0da4aa78240790e066906d

Observation 315159dc-3262-4c98-bd82-b06918a4a73e · outbound

This paper cites Effect of the thickness of amorphous silicon intermediate layer on the thermal transport of silicon/diamond interface,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Effect of the thickness of amorphous silicon intermediate layer on the thermal transport of silicon/diamond interface,

Reference 40

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source=pdf_text observed=2026-08-01T18:23:22.085081Z digest=sha256:08187de153a59490f3f9e1d7cd99e259af77eec827e04e5970f41132bb5257ea

Observation 065e64a5-af30-4cb4-90cb-8e7ca89f73af · outbound

This paper cites Influence and regulation of amorphous layers on phonon transport at SiC/Si interface,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Influence and regulation of amorphous layers on phonon transport at SiC/Si interface,

Reference 41

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source=pdf_text observed=2026-08-01T18:23:22.193671Z digest=sha256:89f4d0f6d548bd45ba7c33bbe6b00819cece1635a49233e39a1b506279b94859

Observation c21e4497-e575-454d-a052-adfa642efb06 · outbound

This paper cites Fast parallel algorithms for short -range molecular dynamics,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Fast parallel algorithms for short -range molecular dynamics,

Reference 42

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source=pdf_text observed=2026-08-01T18:23:22.300958Z digest=sha256:16831f8303b495bf703bf9e70e98537df56a5278c014f9ac954115d872f53a48

Observation dafef9eb-165f-4a9f-8a20-1c748cdc3e30 · outbound

This paper cites Analytical potential for atomistic simulations of silicon, carbon, and silicon carbide,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Analytical potential for atomistic simulations of silicon, carbon, and silicon carbide,

Reference 43

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source=pdf_text observed=2026-08-01T18:23:22.409300Z digest=sha256:7ba4ae30a53889a0221475c57333fe06afbf96accb882dfd7282ed7fb96757d2

Observation fc5f783f-8f5b-4f25-a2ae-2101f226732a · outbound

This paper cites Enhanced thermal boundary conductance across GaN/SiC interfaces with AlN transition layers,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Enhanced thermal boundary conductance across GaN/SiC interfaces with AlN transition layers,

Reference 44

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source=pdf_text observed=2026-08-01T18:23:22.511644Z digest=sha256:5c204c7b9ef3045c3bde2d06ea482215c74330d8463f207f88aa13be472ace9f

Observation fa77c468-5518-4084-98e8-ae8ae01a8ed0 · outbound

This paper cites Modulation of the interfacial thermal resistances of the w - AlN/Graphene/3C-SiC interface by nanoscale nonplanar feature structures,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Modulation of the interfacial thermal resistances of the w - AlN/Graphene/3C-SiC interface by nanoscale nonplanar feature structures,

Reference 45

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no resolver link, observed 2026-08-01T18:23:22.597751Z

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source=pdf_text observed=2026-08-01T18:23:22.597751Z digest=sha256:29fc0ec389ebca229e714775cb7cefe21f21d720fca3f765fd6c4c382458956c

Observation 7d9140f3-b2e7-4655-817b-fd61b87985e6 · outbound

This paper cites The two -phase model for calculating thermodynamic properties of liquids from molecular dynamics: Validation for the phase diagram of Lennard-Jones fluids,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes The two -phase model for calculating thermodynamic properties of liquids from molecular dynamics: Validation for the phase diagram of Lennard-Jones fluids,

Reference 46

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source=pdf_text observed=2026-08-01T18:23:22.706895Z digest=sha256:8509fb972305243746893a86ff86c99e4d212440336349065e0360251ff68a10

Observation de8878b6-f3a0-412d-9d5f-912e37626c23 · outbound

This paper cites Role of anharmonic phonon scattering in the spectrally decomposed thermal conductance at planar interfaces.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Role of anharmonic phonon scattering in the spectrally decomposed thermal conductance at planar interfaces

Reference 47

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source=pdf_text observed=2026-08-01T18:23:22.813775Z digest=sha256:6f88939b8fd07119b44dd93028efa4a765f04f08c26bb201705160fb4825deaf

Observation 8990d3fb-865d-4499-9d7a-61c3382b9f1a · outbound

This paper cites Spectral mapping of heat transfer mechanisms at liquid-solid interfaces,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Spectral mapping of heat transfer mechanisms at liquid-solid interfaces,

Reference 48

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source=pdf_text observed=2026-08-01T18:23:22.955407Z digest=sha256:ded0f9da71b797603352255c795bee7cced1ae73a802517c3ee6ee53b01a613f

Observation 496f4aac-e1cf-4447-8f56-9bd00a55560f · outbound

This paper cites Assessing the applicability of quantum corrections to classical thermal conductivity predictions,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Assessing the applicability of quantum corrections to classical thermal conductivity predictions,

Reference 49

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source=pdf_text observed=2026-08-01T18:23:23.057357Z digest=sha256:dede6d38af490aa2cb50bc615f2c7d24f525d92ffa6271a8373d23a9ce336df7

Observation a0d00d1b-482f-4558-964d-d46159a52565 · outbound

This paper cites Kapitza thermal resistance across individual grain boundaries in graphene,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Kapitza thermal resistance across individual grain boundaries in graphene,

Reference 50

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source=pdf_text observed=2026-08-01T18:23:23.138967Z digest=sha256:b17e9a5be30680c508cab21b5a6aa22bfc0cdbdb56839e35661b5c34c2fa3a90

Observation 97bcfe0d-128a-4eaa-84e3-67c24d9e3fa1 · outbound

This paper cites New approaches to the computer simulation of amorphous alloys: a review,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes New approaches to the computer simulation of amorphous alloys: a review,

Reference 51

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source=pdf_text observed=2026-08-01T18:23:23.245251Z digest=sha256:a585fed0b63d1ed2ad7d3fe047534596f5d620d1e078bc06891861880eab4a60

Observation a0b49f4c-ca02-4501-99fa-33897302b964 · outbound

This paper cites Interfacial thermal resistance: Past, present, and future,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Interfacial thermal resistance: Past, present, and future,

Reference 52

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source=pdf_text observed=2026-08-01T18:23:23.336289Z digest=sha256:276117f5675d96b053d1bb9c7337627cd4db30814555c61688fae66e63770ea2

Observation 353906ca-52c3-4dd0-a1c4-1becd1e92ab9 · outbound

This paper cites A novel center -hybrid pin -fin microchannel heat sink with embedded secondary microchannels for hotspot thermal management,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes A novel center -hybrid pin -fin microchannel heat sink with embedded secondary microchannels for hotspot thermal management,

Reference 53

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source=pdf_text observed=2026-08-01T18:23:23.415944Z digest=sha256:7a28878cec89ef497941ba52f9c8688eebe4d811e35bb2133b63dd3d0b5b9471

Observation a77e7044-868b-48c6-ba6a-afb7c3383561 · outbound

This paper cites Numerical analysis of flow and heat tra nsfer characteristics of double-layer heterogeneous single crystal diamond microchannel heat sinks,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Numerical analysis of flow and heat tra nsfer characteristics of double-layer heterogeneous single crystal diamond microchannel heat sinks,

Reference 54

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source=pdf_text observed=2026-08-01T18:23:23.521577Z digest=sha256:37c645ab580a60e80c84e420432943833e9ec598f807a91f36c860f7a376a4d5

Observation 445e005b-5675-486a-8360-4f5808314a4f · outbound

This paper cites Role of elastic phonon couplings in dictating the thermal transport across atomically sharp SiC/Si interfaces,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Role of elastic phonon couplings in dictating the thermal transport across atomically sharp SiC/Si interfaces,

Reference 55

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source=pdf_text observed=2026-08-01T18:23:23.593372Z digest=sha256:785e91aa5ff29b11560acfe975ece183441b34b13c5dcdd7bbb3d23409c02ec1

Observation 6983f1d5-09a7-4c5c-b5b7-280988d27cd5 · outbound

This paper cites Thermal rectification effect of pristine graphene induced by vdW heterojunction substrate,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Thermal rectification effect of pristine graphene induced by vdW heterojunction substrate,

Reference 56

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source=pdf_text observed=2026-08-01T18:23:23.695590Z digest=sha256:eb6f51da809596aea793359beccad5a32d5c354c8f94207c7a4bdd329da40d2c

Observation 54f7d08e-5749-493f-8a43-386d0b19c210 · outbound

This paper cites Remarkable thermal rectification in pristine and symmetric monolayer graphene enabled by asymmetric thermal contact,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Remarkable thermal rectification in pristine and symmetric monolayer graphene enabled by asymmetric thermal contact,

Reference 57

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source=pdf_text observed=2026-08-01T18:23:23.796338Z digest=sha256:743843f0c8a412f69b0a3757fc0c1a8230e444df45419370d80372ba8b60b3c2

Observation 2e316fdc-e11b-4de9-85aa-88b741636d5e · outbound

This paper cites Interfacial engineering for the enhancement of interfacial thermal conductance in GaN/AlN heterostructure,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Interfacial engineering for the enhancement of interfacial thermal conductance in GaN/AlN heterostructure,

Reference 58

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source=pdf_text observed=2026-08-01T18:23:23.914330Z digest=sha256:0390846901039b869a256549af776b5e43f25e6769f9d559658a3d9ade844eb2

Observation f10ebc7b-0df8-4201-9251-9baca6fb268e · outbound

This paper cites Molecular dynamic s simulations of carbon nanotube/silicon interfacial thermal conductance,.

Interfacial thermal transport in Si/SiC and SiC/diamond heterostructures: effects of amorphous interlayers and SiC polytypes Molecular dynamic s simulations of carbon nanotube/silicon interfacial thermal conductance,

Reference 59

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source=pdf_text observed=2026-08-01T18:23:24.020884Z digest=sha256:d567621b62fc6448860255c4f5d9e680e82f0da10b6350ddc53527e77102cb7a

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