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Boron-rich boron carbide from soot: a low-temperature green synthesis approach
M. S. Swapna, H. V. Saritha Devi, S. Sankararaman
J. Korean Ceram. Soc.. 2020;57(6):646-652.   Published online 2020 November 30    DOI:

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Boron-rich boron carbide from soot: a low-temperature green synthesis approach
Journal of the Korean Ceramic Society. 2020;57(6):651-657   Crossref logo
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Boron Carbide Nanowires from Castor Oil for Optronic Applications: A Low-Temperature Greener Approach
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ChemInform Abstract: Low Temperature Carbothermal and Boron Carbide Reduction Synthesis of LaB6.
ChemInform. 2013;44(44):no-no   Crossref logo
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Low-temperature green synthesis of boron carbide using aloe vera
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High temperature strength of boron, silicon carbide coated boron, silicon carbide, stainless steel and tungsten fibres
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Preparation of boron carbide from oxide by self-propagating high temperature synthesis
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Boron carbide nanowires from castor oil for optronic applications: a low‐temperature greener approach
Journal of Materials Science: Materials in Electronics. 2021;   Crossref logo
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Low-temperature synthesis of boron carbide powder from condensed boric acid–glycerin product
Materials Letters. 2011;65(12):1839-1841   Crossref logo
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Boron Rich Boron Carbide: An Emerging High Performance Material
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Low Temperature Processing of Reaction-Bonded Boron Carbide Composites
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