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基于新型钴(II)卟啉/芘的共轭微孔聚合物实现高效电化学析氧

Efficacious Electrochemical Oxygen Evolution from a Novel Co(II) Porphyrin/Pyrene-Based Conjugated Microporous Polymer.

作者信息

Bhunia Subhajit, Bhunia Kousik, Patra Bidhan Chandra, Das Sabuj Kanti, Pradhan Debabrata, Bhaumik Asim, Pradhan Anirban, Bhattacharya Santanu

机构信息

Materials Science Centre , Indian Institute of Technology (IIT) Kharagpur , Kharagpur 721302 , India.

出版信息

ACS Appl Mater Interfaces. 2019 Jan 9;11(1):1520-1528. doi: 10.1021/acsami.8b20142. Epub 2018 Dec 27.

Abstract

Oxygen evolution reaction (OER) is energetically challenging from the platform of making many photovoltaic devices such as metal-air batteries and water splitting systems because of its poor kinetics even when precious metals are used. Herein, a Co(II)-porphyrin/pyrene-comprised conjugated microporous polymer Co-MPPy-1 has been developed which shows efficient OER in alkaline medium. The material was characterized by Fourier transform infrared, solid-state C cross-polarization magic angle spinning nuclear magnetic resonance, N volumetric adsorption/desorption analysis, scanning electron microscopy, ultra high resolution-transmission electron microscopy, X-ray photoelectron spectroscopy, and other physical studies. Co-MPPy-1 showed Brunauer-Emmett-Teller surface area of ∼501 m g. Co-MPPy-1 achieved a current density of 1 and 10 mA/cm at 340 and 420 mV, respectively. The turnover frequency calculated for the OER is 0.43 s. The heterogeneity of this electrocatalyst was tested by chronoamperometric measurement and 1000 cycle recyclability test with retainment of the excellent electrochemical catalytic activity. This can be attributed to the presence of high density of Co(II) porphyrin unit and efficient charge transport in the π-conductive conjugated polymeric backbone.

摘要

析氧反应(OER)对于许多光伏器件(如金属空气电池和水分解系统)的制备平台来说,在能量方面具有挑战性,因为即使使用贵金属,其动力学性能也很差。在此,已开发出一种由钴(II)卟啉/芘组成的共轭微孔聚合物Co-MPPy-1,它在碱性介质中显示出高效的析氧反应。该材料通过傅里叶变换红外光谱、固态碳交叉极化魔角旋转核磁共振、N2体积吸附/脱附分析、扫描电子显微镜、超高分辨率透射电子显微镜、X射线光电子能谱和其他物理研究进行了表征。Co-MPPy-1的比表面积约为501 m²/g。Co-MPPy-1在340和420 mV时分别实现了1和10 mA/cm²的电流密度。计算得到的析氧反应周转频率为0.43 s⁻¹。通过计时电流法测量和1000次循环可回收性测试对该电催化剂的异质性进行了测试,其优异的电化学催化活性得以保留。这可归因于高密度的钴(II)卟啉单元的存在以及π导电共轭聚合物主链中的有效电荷传输。

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