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首页> 外文期刊>Russian journal of electrochemistry >Improvement of electrochemical properties of PTMA cathode by using carbon blacks with high specific surface area1
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Improvement of electrochemical properties of PTMA cathode by using carbon blacks with high specific surface area1

机译:通过使用高比表面积的炭黑改善PTMA阴极的电化学性能1

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A PTMA (poly(4-methacryloyloxy-2,2,6,6-tetramethyl-piperidine-N-oxyl)) electrode with high energy density is prepared with Black Pearl 2000 (BP-2000). For comparisons, vapor grown carbon fiber (VGCF) and acetylene black (AB) are also employed to fabricate the PTMA-electrodes. The electrochemical properties of the electrode are improved obviously by employing BP-2000. The specific capacity of the PTMA-BP electrode based on the mass of PTMA is 26.7% larger than that of the PTMA-VGCF and PTMA-AB electrodes at a 1 C rate. At higher discharge rates, the polarization degree of the Li/PTMA-BP cell is the minimum one. At a discharge rate of 50 C, the specific capacity of the PTMA-BP electrode is 104.9 mA h g-1, and is 27.6 and 16.7% larger than that of the PTMA-VGCF and PTMA-AB electrodes, respectively. Besides, the discharge plateau of the Li/PTMA-BP cell is 3.35 V, and is 0.03 and 0.13 V higher than that of the Li/PTMA-AB and Li/PTMA-VGCF cells, respectively. The larger specific capacity of BP-2000 and the improved electrochemical kinetics of PTMA at the surface of BP carbon, resulted from the larger surface area of BP-2000, are the main factors for improving the capacity and rate capability of the PTMA-electrode. The high specific surface area of BP-2000 is also beneficial to the thorough contact of PTMA with BP carbon, resulting in the improved conductivity of the PTMA-BP composites. The cycling performance of the PTMA-BP electrode is also satisfied.
机译:用Black Pearl 2000(BP-2000)制备具有高能量密度的PTMA(聚(4-甲基丙烯酰氧基-2,2,6,6-四甲基-哌啶-N-氧基))电极。为了进行比较,还使用气相生长碳纤维(VGCF)和乙炔黑(AB)来制造PTMA电极。采用BP-2000明显改善了电极的电化学性能。在1 C速率下,基于PTMA质量的PTMA-BP电极的比容量比PTMA-VGCF和PTMA-AB电极的比容量大26.7%。在较高的放电速率下,Li / PTMA-BP电池的极化度最小。在50 C的放电速率下,PTMA-BP电极的比容量为104.9 mA h g-1,分别比PTMA-VGCF和PTMA-AB电极大27.6和16.7%。此外,Li / PTMA-BP电池的放电平台为3.35 V,分别比Li / PTMA-AB和Li / PTMA-VGCF电池的放电平台高0.03和0.13V。 BP-2000的较大表面积导致BP-2000的比容量更大以及PTMA在BP碳表面的电化学动力学得到改善,这是提高PTMA电极的容量和倍率性能的主要因素。 BP-2000的高比表面积也有利于PTMA与BP碳的彻底接触,从而改善了PTMA-BP复合材料的导电性。 PTMA-BP电极的循环性能也得到了满足。

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