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B-11 NMR study of the BF4- anion in activated carbons at various stages of charge of EDLCs in organic electrolyte

机译:有机电解质中EDLCs不同电荷阶段活性炭中BF4-阴离子的B-11 NMR研究

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The behavior of the electrolyte anion, tetrafluoroborate ( BF4-), in an electric double-layer capacitor was studied by solid state B-11 NMR using two activated carbons of medium (M500) and large (M3000) surface area, which show capacitance of 35 F/ml and 20 F/ml by charging at 2.7 V, respectively. Magic angle spinning (MAS) B-11 NMR distinguishes two species (A and B) on the carbons at the impregnated, charged, and discharged stages. The A species corresponds to ions on the outer surface, showing free motion regardless of the activated carbon. The B species is located in the pores of the activated carbon, showing a downfield shift and line broadening. The B species in M500 was further separated into C and D species according to their chemical shifts in multiple quantum (MQ)MAS NMR. The very short relaxation time and large chemical shift of the C species suggest a very strong adsorption over the positive electrode of M500, whereas its spherical symmetry is maintained, as indicated by its small quadrupole constant. The amount of this species increases on the positive electrode of M500 by charging at 2.7 V, contributing to the larger capacitance (35 mF/ml) of this particular carbon at this voltage. By contrast, the B species was more moderately immobilized on the positive electrode of M3000, although the ion appeared to be deformed into a flattened shape on the carbon surface of large pores as indicated by its larger quadrupole constant. A rapid exchange between adsorbed and free B species within the same pores of larger size in M3000 may reduce the capacitance in spite of the more adsorption on this large surface area activated carbon. (c) 2006 Elsevier Ltd. All rights reserved.
机译:采用固体B-11核磁共振研究了电解质阴离子四氟硼酸盐(BF4-)在双电层电容器中的行为,使用中等(M500)和大(M3000)表面积的活性炭,在2.7 V下充电时电容分别为35 F/ml和20 F/ml。魔角旋转 (MAS) B-11 NMR 在浸渍、充电和放电阶段区分碳上的两种物质(A 和 B)。A物质对应于外表面的离子,无论活性炭如何,都显示出自由运动。B物种位于活性炭的孔隙中,显示出下场位移和线展宽。M500中的B物种根据其在多量子(MQ)MAS NMR中的化学位移进一步分为C和D物种。C物种的弛豫时间非常短,化学位移大,表明M500的正极具有很强的吸附性,而其球形对称性得以维持,如其小的四极常数所示。通过在 2.7 V 下充电,M500 正极上该物质的含量增加,从而导致该特定碳在此电压下的电容更大 (35 mF/ml)。相比之下,B物种更适度地固定在M3000的正极上,尽管离子似乎在大孔的碳表面上变形为扁平形状,如其较大的四极常数所示。在M3000中,吸附的和游离的B物质在相同孔隙中的快速交换可能会降低电容,尽管在这种大表面积活性炭上的吸附更多。(c) 2006 爱思唯尔有限公司保留所有权利。

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