SiBCN materials for high-temperature applications: Atomistic origin of electrical conductivity
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3493265
Reference32 articles.
1. A silicoboron carbonitride ceramic stable to 2,000°C
2. Correlation of boron content and high temperature stability in Si–B–C–N ceramics
3. Effect of B and the Si/C ratio on high-temperature stability of Si–B–C–N materials
4. PACVD-Derived Thin Films in the System Si-B-C-N
5. High-temperature stability of the mechanical and optical properties of Si–B–C–N films prepared by magnetron sputtering
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1. An electrically conductive SiBCN film prepared via polymer-derived ceramic and chemical vapor deposition methods;Sensors and Actuators A: Physical;2021-10
2. In-situ preparation and mechanical property analysis of SiC/SiBCN(O) nanocomposites;Ceramics International;2020-08
3. Joining of Cf/SiBCN Composite with a Ni-Cr-Pd(Si,B) Filler Alloy;Journal of Materials Engineering and Performance;2019-11
4. High temperature self-healing SiBCN ceramics derived from hyperbranched polyborosilazanes;Advanced Composites and Hybrid Materials;2018-05-31
5. Magnetron sputtered Hf–B–Si–C–N films with controlled electrical conductivity and optical transparency, and with ultrahigh oxidation resistance;Thin Solid Films;2018-05
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