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极化子和双极化子诱导的电荷载流子传输以增强光催化产氢

Polaron and bipolaron induced charge carrier transportation for enhanced photocatalytic H production.

作者信息

Naveen Kumar T R, Karthik P, Neppolian B

机构信息

SRM Research Institute, SRM Institute of Science and Technology, Chennai-603203, Tamil Nadu, India.

出版信息

Nanoscale. 2020 Jul 14;12(26):14213-14221. doi: 10.1039/d0nr02950e. Epub 2020 Jul 1.

DOI:10.1039/d0nr02950e
PMID:32608424
Abstract

Photocatalysis is one of the facile approaches for efficient solar energy conversion and storage. However, rapid charge carrier recombination considerably decreases solar to energy conversion efficiency. Herein, polaron and bipolaron rich polypyrrole (PPy) has been utilized as a solid support for effective photogenerated charge carrier separation. Simple oxidative polymerization using a high concentration of ammonium persulfate (APS) induces radical cation/bipolaron formation in PPy due to the cleavage of π-bonds as confirmed by electron paramagnetic resonance spectroscopy (EPR). The formation of radical cations led to an increase of the dielectric constant which retards the charge carrier recombination and thereby enhances the conductivity. Moreover, the polarons and bipolarons induced charge carrier separation in photocatalytic H production was studied with the well-known g-CN photocatalyst. It is worth mentioning that compared to bare g-CN, the PPy supported system showed a drastically enhanced photocatalytic H production rate. A maximum H production rate of 1851 μmoles per g is achieved, which is ∼51 times higher than that of the bare g-CN catalyst due to efficient charge carrier separation assisted by radical cations/bipolarons. Thus, utilizing this simple polaron and bipolaron rich PPy solid support could be an effective strategy and alternative for using noble metal cocatalysts to enhance charge carrier separation.

摘要

光催化是实现高效太阳能转换与存储的简便方法之一。然而,快速的电荷载流子复合会显著降低太阳能到能量的转换效率。在此,富含极化子和双极化子的聚吡咯(PPy)被用作有效光生电荷载流子分离的固体载体。使用高浓度过硫酸铵(APS)进行简单的氧化聚合反应,由于π键的断裂,在PPy中诱导形成自由基阳离子/双极化子,这已通过电子顺磁共振光谱(EPR)得到证实。自由基阳离子的形成导致介电常数增加,从而阻碍电荷载流子复合,进而提高电导率。此外,利用著名的g-CN光催化剂研究了极化子和双极化子在光催化产氢中诱导的电荷载流子分离。值得一提的是,与裸g-CN相比,PPy负载体系的光催化产氢速率显著提高。实现了每克1851微摩尔的最大产氢速率,由于自由基阳离子/双极化子辅助的有效电荷载流子分离,这一速率比裸g-CN催化剂高出约51倍。因此,利用这种简单的富含极化子和双极化子的PPy固体载体可能是一种有效的策略,也是使用贵金属助催化剂来增强电荷载流子分离的替代方法。

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