纳米颗粒
电子转移
相(物质)
材料科学
纳米复合材料
异质结
光催化
氧化还原
化学工程
纳米技术
光化学
化学
无机化学
催化作用
有机化学
光电子学
工程类
作者
Huimin Yang,Nan Cheng,Nan Gao,Wenjing Zhou,Fanfan Gao,Dai Dong,Danyang Dou,Yujie Liu,Zhenhai Liang,Donghua Yang
标识
DOI:10.1016/j.electacta.2022.141086
摘要
Photoelectrochemical nitrogen reduction (PEC NRR) provides a clean and sustainable method for the production of NH 3 under environmental conditions. However, low reaction efficiency remains a major challenge due to the presence of competitive hydrogen evolution reactions (HER). Herein, nanocomposites (SNP/MSO) with three-phase interface were prepared by loading hydrophilic SnO 2 nanoparticles (SNP) on hydrophobic MoS 2 (MSO) obtained by surface modification with silicomolybdic acid. The hydrophobic interface eliminated the transport barrier of N 2 in the liquid phase to the reaction center, inhibiting HER since the lowered contact area with the liquid proton. Meanwhile, the heterojunction structure formed between MSO and SNP accelerated the effective electron transfer. The synergistic effect of the triphase interface structure and electron transfer structure contributed to the high NH 3 yield (19.6 μg h −1 mg −1 ) and FE (40.34%) of SNP/10MSO in the photoelectrochemical system. Compared with the nanocomposites (SNP/MSI) prepared by hydrophilic MoS 2 , FE was significantly increased by 10 percentage points. Three-phase interface of SNP/MSO enhance photoelectrochemical N 2 reduction.
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