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具有可调硼/氮路易斯酸/碱位点的硼碳氮化物用于增强电催化全水解。

Boron carbonitride with tunable B/N Lewis acid/base sites for enhanced electrocatalytic overall water splitting.

作者信息

Shi Dong, Chang Bin, Ai Zizheng, Jiang Hehe, Chen Fuzhou, Shao Yongliang, Shen Jianxing, Wu Yongzhong, Hao Xiaopeng

机构信息

State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, P. R. China.

出版信息

Nanoscale. 2021 Feb 7;13(5):2849-2854. doi: 10.1039/d0nr06857h. Epub 2021 Feb 3.

Abstract

In-depth research on energy storage and conversion is urgently needed; thus, water splitting has become a possible method to achieve sustainable energy utilization. However, traditional carbon material with high graphitization degree exhibits a relatively low electrocatalytic oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) activity as it is electrochemically inert. In this work, according to the Lewis theory of acids and bases and the density functional theory (DFT) results, which show that the enriched heteroatom of B/N in the boron carbonitride (BCN) system may introduce stronger adsorption strength of OH*/HO, respectively, we have designed and synthesized self-supporting BCN materials with different enrichment degrees of B/N (B-BCN/N-BCN) using carbon paper as substrate. Furthermore, by adjusting the contents of B and N, the optimum electrocatalytic performance of overall water splitting was obtained in which the onset voltage of water splitting on B-BCN//N-BCN was lower than 1.60 V. Our strategy of synthesizing materials with different heteroatom enrichment to improve the electronic environment of materials has opened up new opportunities for developing efficient metal-free electrocatalysts.

摘要

目前迫切需要对能量存储和转换进行深入研究;因此,水分解已成为实现可持续能源利用的一种可行方法。然而,具有高石墨化程度的传统碳材料由于其电化学惰性,表现出相对较低的电催化析氧反应(OER)和析氢反应(HER)活性。在这项工作中,根据酸碱的路易斯理论以及密度泛函理论(DFT)结果,表明硼碳氮化物(BCN)体系中富集的B/N杂原子可能分别引入更强的OH*/HO吸附强度,我们以碳纸为基底设计并合成了具有不同B/N富集程度的自支撑BCN材料(B-BCN/N-BCN)。此外,通过调整B和N的含量,获得了整体水分解的最佳电催化性能,其中B-BCN//N-BCN上水分解的起始电压低于1.60V。我们通过合成具有不同杂原子富集的材料来改善材料电子环境的策略,为开发高效无金属电催化剂开辟了新的机遇。

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