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Preparation and electrochemical properties of pitch-based activated carbon aerogels

机译:沥青基活性炭气凝胶的制备及电化学性能

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摘要

The porous structure of pitch-based carbon aerogels (P-CAs) can be modified by KOH activation. It is found that decreasing the carbonization temperature of precursor CAs and increasing the mass ratio of KOH to CAs help to the formation of 0.7 nm-sized micropores and 2.7 nm-sized mesopores, respectively. The origin and the pore size of micropores play an important role in controlling electrochemical properties. The carbonization-forming micropores have stronger energy storage efficiency than activation-forming micropores, and only those with diameter below 1 nm (Microp < 1 nm) are the crucial place to storage energy. Due to the substantive increase of the number of the Microp < 1 nm, the highest specific capacitance of the as-prepared activated samples can reach 187.2 Fg{sup}(-1) at 5 mAcm{sup}(-2), 1.8 times as large as that of their precursor CAs. Furthermore, this capacitance is still up to 173.3 Fg{sup}(-1) when increasing the current density to 50mAcm{sup}(-2), indicating that the activated samples have a high-rate charge-discharge performance.
机译:沥青基碳气凝胶(P-CAs)的多孔结构可通过KOH活化进行修饰。发现降低前体CA的碳化温度和增加KOH与CA的质量比有助于分别形成0.7nm尺寸的微孔和2.7nm尺寸的中孔。微孔的起源和孔径在控制电化学性能中起着重要作用。碳化形成的微孔比活化形成的微孔具有更高的能量存储效率,只有直径小于1 nm(Microp <1 nm)的那些才是存储能量的关键位置。由于Microp <1 nm的数量大量增加,在5 mAcm {sup}(-2)时,所制备的活化样品的最高比电容可以达到187.2 Fg {sup}(-1),是1.8倍与其前代CA一样大。此外,当将电流密度增加到50mAcm {sup}(-2)时,该电容仍高达173.3 Fg {sup}(-1),表明活化的样品具有高速率的充放电性能。

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