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Preparation of chrome-tanned leather shaving-based hierarchical porous carbon and its capacitance properties

机译:基于铬鞣革剃胶的等级多孔碳的制备及其电容性能

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摘要

Based on the complexes formed by the original Cr( III ) in chrome-tanned leather shavings and the carboxyl groups in collagen as raw materials, a chromium oxide-carbon composite material was formed by the high-temperature carbonization of chromium-tanned leather shavings, followed by the leaching of chrome oxide and activation by KOH. By this method, the hierarchical porous carbon with a high surface area doped with oxygen and nitrogen was prepared. The forming process of the hierarchical porous structure is discussed in detail. Through adjusting the mass ratio of KOH to carbon during the activation process, with a mass ratio of 2, the chromium-tanned leather shavings-based hierarchical porous carbon (called CTSHPC-2) was prepared with an optimal specific surface area (3211 m ~(2) g ~(?1) ) and a large volume ratio of mesopores to macropores (61.9%) as well as abundant oxygen (13.92 at%) and nitrogen (3.58 at%) functional groups. The results showed that CTSHPC-2 obtained a high specific capacitance of 335.5 F g ~(?1) at a current density of 0.5 A g ~(?1) . In addition, it had higher rate performance, low resistance, and better cycle stability. Even when the current density is 10 A g ~(?1) over 5000 cycles, the specific capacity retention rate is 93.5%. Therefore, CTSHPC-2 is a promising electrode material for supercapacitors.
机译:基于由原始Cr(III)形成的铬鞣制皮革屑和胶原蛋白作为原料中的羧基形成的络合物,通过铬鞣制皮刨花的高温碳化形成氧化铬 - 碳复合材料,然后浸出铬氧化物和KOH的活化。通过该方法,制备具有掺杂有氧和氮的高表面积的分层多孔碳。详细讨论了分层多孔结构的形成过程。通过在活化过程中调节KOH至碳的质量比,用质量比为2,用最佳的比表面积(3211m〜)制备基于铬鞣革屑的等级多孔碳(称为CTSHPC-2)(3211 m〜 (2)G〜(α1))和中孔的大体积比(61.9%)以及丰富的氧(13.92at%)和氮(3.58at%)官能团。结果表明,CTSHPC-2以0.5Ag〜(α1)的电流密度获得335.5f g〜(α1)的高比电容。此外,它具有更高的速率性能,低电阻和更好的循环稳定性。即使当电流密度超过5000次循环时,即使电流密度为10Ag〜(Δ1),则特定容量保持率为93.5%。因此,CTSHPC-2是用于超级电容器的有希望的电极材料。

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