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Study on boron and nitrogen co-doped graphene xerogel for high-performance electrosorption application

机译:硼和氮掺杂石墨烯Xerogel的高性能吸电应用研究

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The search for highly efficient carbon materials with high desalting capacity for the brackish water desalination is still indispensable. In this study, boron and nitrogen co-doped graphene xerogels are prepared by a simple sol-gel method with atmospheric drying and carbonization, in which the rod-like primary particles are attached on the graphene sheets via crosslinking reaction of boric acid-melamine-resorcinol-formaldehyde (BMRF). With the increase in doping ratio, the carbonized BMRF gels display high micropore surface area and abundant doping sites. The maximum doping contents of boron (1.54 at.%) and nitrogen (8.72 at.%) can be achieved in the co-doped graphene xerogel with the molar ratios of C6H6O2 and H3BO3 of 1.2, which displays superior specific capacitance (242 F g(-1) at a current density of 0.1 A g(-1)) and high capacitance retention (92.7% after 5000 cycles at a current density of 2.0 A g(-1)). The co-doped graphene xerogels are evaluated as electrode materials for the electrochemical desalination of brackish water. Compared to the bare graphene xerogel, the co-doped graphene xerogel displays high electrosorption capacity of 18.45 mg g(-1) and high charge efficiency of 45% for NaCl solution under an applied voltage of 1.6 V.
机译:寻找高效的碳材料,具有高脱盐能力的咸水脱盐的能力仍然是不可或缺的。在该研究中,通过具有大气干燥和碳化的简单溶胶 - 凝胶法制备硼和氮掺杂石墨烯Xerogels,其中通过硼酸 - 三聚氰胺的交联反应将棒状初级颗粒连接在石墨烯片上 - 间苯二酚 - 甲醛(BMRF)。随着掺杂比的增加,碳化BMRF凝胶显示出高微孔表面积和丰富的掺杂位点。在共掺杂的石墨烯Xerogel中,硼(1.54at)和氮气(1.54at)和氮气(8.72at%)的最大掺杂含量可以通过C6H6O2和H3BO3的摩尔比,其显示出优异的特定电容(242 f g (-1)在电流密度为0.1Ag(-1)),并且在电流密度为2.0g(-1)的5000次循环后的高电容保持(92.7%)。共掺杂的石墨烯Xerogels被评价为电化学脱盐的电极材料。与裸石墨烯Xerogel相比,共掺杂的石墨烯Xerogel在1.6V的施加电压下显示出18.45mg(-1)的高电吸收容量为18.45mg(-1),高电荷效率为45%的NaCl溶液。

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