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用于双电层电容器的具有高电子和离子传导率水平的中间相沥青基碳材料。

Mesophase Pitch-Derived Carbons with High Electronic and Ionic Conductivity Levels for Electric Double-Layer Capacitors.

作者信息

Wu Pin-I, Hsu Yu-Tung, Tseng Yu-Cheng, Subramani Ramesh, Chen Yan-Shi, Chang Chia-Lin, Leu Goa-Shee, Teng Hsisheng

机构信息

Department of Chemical Engineering, Hierarchical Green-Energy Materials (Hi-GEM) Research Center, and Center of Applied Nanomedicine, National Cheng Kung University, Tainan 70101, Taiwan.

Refining & Manufacturing Research Institute, CPC Corporation, Chiayi 60036, Taiwan.

出版信息

ACS Omega. 2019 Oct 3;4(16):16925-16934. doi: 10.1021/acsomega.9b02243. eCollection 2019 Oct 15.

Abstract

We develop a temperature-programmed pretreatment strategy for converting aliphatic-rich petroleum pitch into a mesophase framework, which can then be activated using KOH to produce high-performance carbons for electric double-layer capacitors (EDLCs). In the pretreatment of pitch at an optimal temperature, both the temperature ramp and holding time influence the mesophase structure, which governs the pore structure and crystallinity of the resulting activated carbon. High carbon microporosity is beneficial to capacitance maximization but detrimental to ion transport. To resolve this problem, we develop a multistep ramp incorporating aliphatic species into the aromatic framework during mesophase formation. This incorporation process produces a mesophase framework that can be activated to form carbons with high crystallinity, thereby enhancing electronic conductivity and hierarchical porosity, which improves ionic conductivity. The resulting carbon electrode is used to assemble a symmetric EDLC, which exhibits a capacitance of 160 F g and excellent high-rate retention in a propylene carbonate solution of ,-diethyl--methylethanaminium tetrafluoroborate. The EDLC delivers a superior specific energy of 40 Wh kg (based on the total carbon mass) within a voltage range of 0-2.7 V and sustained a high energy of 24 Wh kg at a high power of 50 kW kg. The findings of this study demonstrate that incorporating aliphatic species into aromatic mesophase frameworks plays a crucial role in regulating the crystallinity and pore structure of pitch-derived carbons for charge storage.

摘要

我们开发了一种程序升温预处理策略,用于将富含脂肪族的石油沥青转化为中间相骨架,然后可使用氢氧化钾对其进行活化,以生产用于双电层电容器(EDLC)的高性能碳材料。在最佳温度下对沥青进行预处理时,升温速率和保温时间都会影响中间相结构,而中间相结构决定了所得活性炭的孔结构和结晶度。高碳微孔率有利于使电容最大化,但不利于离子传输。为了解决这个问题,我们开发了一种多步升温方法,在中间相形成过程中将脂肪族物种纳入芳香族骨架中。这种纳入过程产生了一种中间相骨架,可将其活化以形成具有高结晶度的碳,从而提高电子导电性和分级孔隙率,进而改善离子导电性。所得的碳电极用于组装对称的EDLC,该EDLC在二乙基甲基乙基铵四氟硼酸盐的碳酸丙烯酯溶液中表现出160 F/g的电容和出色的高倍率保持率。该EDLC在0至2.7 V的电压范围内提供了40 Wh/kg的优异比能量(基于总碳质量),并在50 kW/kg的高功率下保持了24 Wh/kg的高能量。本研究结果表明,将脂肪族物种纳入芳香族中间相骨架中对于调节沥青基碳的结晶度和孔结构以进行电荷存储起着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb17/6796889/7c0188b8e0ae/ao9b02243_0008.jpg

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