EFFECT OF HIGH-TEMPERATURE CALCINATION ON THE STRUCTURE OF BORON-CONTAINING CENTERS IN A CARBON NANOMATERIAL
Author:
Publisher
Pleiades Publishing Ltd
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Link
https://link.springer.com/content/pdf/10.1134/S0022476623090056.pdf
Reference27 articles.
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2. S. V. Sawant, A. W. Patwardhan, J. B. Joshi, and K. Dasgupta. Boron-doped carbon nanotubes: Synthesis, characterization and emerging applications - A review. Chem. Eng. J., 2022, 427, 131616. https://doi.org/10.1016/j.cej.2021.131616
3. B. L. Tumanskii, D. S. Sabirov, S. P. Solodovnikov, and Y. I. Lyakhovetsky. Manganese (III) acetate-mediated activation of C–H bonds of weak CH-acids; addition of o-carborane, its derivatives, and some other CH-acids to [60]-fullerene. Dalton Trans., 2019, 48(6), 2046-2058. https://doi.org/10.1039/c8dt04565h
4. A. A. Arie and J. K. Lee. Synthesis of boron-doped C60 film using plasma-assisted thermal evaporation technique and its electrochemical characterizations. Fullerenes, Nanotubes Carbon Nanostruct., 2012, 20(3), 216-223. https://doi.org/10.1080/1536383x.2010.542592
5. H. N. Vergara Reyes, E. Chigo Anota, and M. Castro. C60-like boron carbide and carbon nitride fullerenes: Stability and electronic properties obtained by DFT methods. Fullerenes, Nanotubes Carbon Nanostruct., 2018, 26(1), 52-60. https://doi.org/10.1080/1536383x.2017.1402006
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