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通过无溶剂法以氧化锌模板和石油沥青合成用于高性能超级电容器的分级微/介孔碳。

Hierarchical Micro/Mesoporous Carbons Synthesized with a ZnO Template and Petroleum Pitch via a Solvent-Free Process for a High-Performance Supercapacitor.

作者信息

Liu Guan-Wen, Chen Tsung-Yi, Chung Cheng-Han, Lin Hong-Ping, Hsu Chun-Han

机构信息

Department of Chemistry, National Cheng Kung University, No. 1, University Road, Tainan City 70101, Taiwan.

出版信息

ACS Omega. 2017 May 17;2(5):2106-2113. doi: 10.1021/acsomega.7b00308. eCollection 2017 May 31.

Abstract

Hierarchical micro/mesoporous carbons were prepared using ZnO nanoparticles as hard templates and a petroleum industrial-residual pitch as the carbon source via a solvent-free process. The ZnO templates can be easily removed using HCl(aq), thereby avoiding limitations present in conventional porous silica templating approaches that require highly corrosive HF(aq) for template removal. Notably, the proposed solvent-free synthetic method from low-cost pitch to high-value porous carbons is a friendly process with respect to our overexploited environment. With the combination of ZnO nanoparticles and pitch, the surface area (76-548 m g) of the resultant mesoporous carbons increases with an increase in the weight ratios of ZnO to pitch. Furthermore, the hierarchical micro/mesoporous carbons with a large surface area (854-1979 m g) can be feasibly fabricated by only adding an appropriate amount of an activating agent. Meanwhile, N-doped hierarchical porous carbons can be achieved by carbonizing the blend of these materials with melamine. For supercapacitor application, the resultant carbons exhibit a high capacitance up to 200.5 F g at 5 mV s using LiClO/PC as the electrolyte in a symmetrical two-electrode cell. More importantly, the coin-cell supercapacitor based on porous carbons achieved a capacitance of 94 F g at 5 mV s and 63% capacitance retention at 500 mV s, thereby holding the potential for commercialization.

摘要

以ZnO纳米颗粒为硬模板,石油工业剩余沥青为碳源,通过无溶剂法制备了分级微/介孔碳。使用HCl(aq)可以轻松去除ZnO模板,从而避免了传统多孔二氧化硅模板法中存在的局限性,传统方法需要使用高腐蚀性的HF(aq)来去除模板。值得注意的是,从低成本沥青到高价值多孔碳的无溶剂合成方法对于我们过度开发的环境来说是一个友好的过程。通过ZnO纳米颗粒和沥青的结合,所得介孔碳的表面积(76 - 548 m²/g)随着ZnO与沥青重量比的增加而增加。此外,仅通过添加适量的活化剂就可以 feasibly 制备出具有大表面积(854 - 1979 m²/g)的分级微/介孔碳。同时,通过将这些材料与三聚氰胺共混碳化可以实现N掺杂分级多孔碳。对于超级电容器应用,在对称两电极电池中使用LiClO₄/PC作为电解质时,所得碳在5 mV/s下表现出高达200.5 F/g的高电容。更重要的是,基于多孔碳的扣式电池超级电容器在5 mV/s下的电容为94 F/g,在500 mV/s下的电容保持率为63%,因此具有商业化潜力。

原文中“feasibly”这个词在这里的语境下翻译有些难度,暂时保留英文,可能需要结合更多背景信息准确翻译,这里先直接保留英文呈现一种可能的翻译结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/460d/6641127/b875e74d5536/ao-2017-00308b_0001.jpg

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