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Synthesis of B-C-N Composite from Melamine-Formaldehyde Resins Containing Boron and Its Electric Double Layer Capacitor Performance

机译:含硼三聚氰胺-甲醛树脂合成B-C-N复合材料及其双电层电容器性能

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摘要

Melamine-formaldehyde resin including boron (MFB resin) was prepared from melamine, formaldehyde and boric acid. B-C-N composite was prepared by pyrolysis of its MFB resin at 800-1000 °C for 1 h in an inert atmosphere. Nitrogen contents in its B-C-N composite was kept high ratio of N/C, up to 0.24, in spite of heat treatment temperature. Boron contents depended on the ratio of formaldehyde added. Electric double layer capacitor (EDLC) performance of samples was evaluated in 40 % H2SO4 aqueous electrolyte by CV characteristic and galvanostatic charge/discharge measurement using three electrode cell. Electric double layer capacitor performance was as high as 500 F/g (1.1 F/m2). The specific surface area of B-C-N composite obtained is shown 300-600 mVg. From the standpoint of specific capacitance per unit surface area, electric double layer capacitor performance increased with increasing N/C and it is shown the correlation between electric double layer capacitor performance and N/C.
机译:由三聚氰胺,甲醛和硼酸制备包括硼的三聚氰胺-甲醛树脂(MFB树脂)。 B-C-N复合材料是通过在惰性气氛中将其MFB树脂在800-1000°C下热解1 h来制备的。尽管热处理温度高,但其B-C-N复合材料中的氮含量仍保持较高的N / C比,最高为0.24。硼含量取决于所添加甲醛的比例。通过CV特性和使用三电极电池的恒电流充放电测量,在40%H2SO4水性电解质中评估了样品的双电层电容器(EDLC)性能。双电层电容器的性能高达500 F / g(1.1 F / m2)。所获得的B-C-N复合材料的比表面积显示为300-600mVg。从每单位表面积的比电容的观点来看,双电层电容器的性能随着N / C的增加而增加,并且表明双电层电容器的性能与N / C之间的相关性。

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