热解
多孔性
分子
聚合物
材料科学
离子键合
化学工程
小分子
波动性(金融)
金属有机骨架
催化作用
碳纤维
有机化学
化学
离子
吸附
复合材料
经济
工程类
金融经济学
复合数
生物化学
作者
Lei Tong,Qianqian Yang,Shuai Li,Lele Zhang,Wei-Jie Zeng,Yanwei Ding,Liangdong Fan,Hai‐Wei Liang
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2022-10-22
卷期号:16 (1): 80-87
被引量:14
标识
DOI:10.1007/s12274-022-4997-8
摘要
Replacing traditional polymer-based precursors with small molecules is a promising pathway toward facile and controllable preparation of porous carbons but remains a prohibitive challenge because of the high volatility of small molecules. Herein, a simple, general, and controllable method is reported to prepare porous carbons by converting small organic molecules into organic molecular salts followed by pyrolysis. The robust electrostatic force holding organic molecular salts together leads to negligible volatility and thus ensures the formation of carbons under high-temperature pyrolysis. Meanwhile, metal moieties in organic molecular salts can be evolved into in-situ templates or activators during pyrolysis to create nanopores. The modular nature of organic molecular salts allows easy control of the porosity and chemical doping of carbons at a molecular level. The sulfur-doped carbon prepared by the ionic solid strategy can serve as robust support to prepare small-sized intermetallic PtCo catalysts, which exhibit a high mass activity of 1.62 A·mgPt−1 in catalyzing oxygen reduction reaction for fuel cell applications.
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