2013
DOI: 10.1016/j.carbon.2012.11.031
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Infrared study of boron–carbon chemical bonds in boron-doped activated carbon

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Cited by 136 publications
(64 citation statements)
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“…In Fig. 5(d), the 659 cm À1 peak represents O-B-O bond and the peak at 1044 cm À1 arises due to B-C stretching vibrations [23], confirming the presence of boron in graphene framework.…”
Section: Resultsmentioning
confidence: 76%
“…In Fig. 5(d), the 659 cm À1 peak represents O-B-O bond and the peak at 1044 cm À1 arises due to B-C stretching vibrations [23], confirming the presence of boron in graphene framework.…”
Section: Resultsmentioning
confidence: 76%
“…The small band at 1124 cm −1 can be attributed to CN bonds 7b,27. Oxidation of BCN occurred during the heat treatment, evidenced by two small shoulders appearing at 934 and 1039 cm −1 , which can be attributed to N‐B‐O and B‐O‐B interactions . The broad band between 1615 and 1660 cm −1 can be attributed to the C=O bond 2b.…”
Section: Resultsmentioning
confidence: 97%
“…Among many heteroatoms boron has been proved to induce interesting mechanical and electronic properties of carbon materials [12,13]. Boron has been used to dope many carbon materials to improve their oxidation resistance, electrochemical efficiency, chemical reactivity, mechanical properties and supercapacitor performance [13][14][15][16][17][18][19][20]. Further, boron substitution in the carbon structure improves the crystallinity and thereby lowers the oxidation rate due to a decrease in the M A N U S C R I P T A C C E P T E D ACCEPTED MANUSCRIPT 3 total number of accessible surface active sites for oxygen chemisorption [10,21,22].…”
Section: Introductionmentioning
confidence: 99%