光催化
三乙醇胺
光化学
制氢
化学
氢
催化作用
分析化学(期刊)
有机化学
作者
Faten Saman,Hasliza Bahruji,Abdul Hanif Mahadi,Celine Hee Se Ling
出处
期刊:Fuel
[Elsevier BV]
日期:2023-05-20
卷期号:349: 128725-128725
被引量:31
标识
DOI:10.1016/j.fuel.2023.128725
摘要
The changes in structural and optical properties of g-C3N4 and Pd/g-C3N4 following reduction treatment have affected the photocatalytic activity. Improved H2 rate was observed on reduced Pd/g-C3N4, but g-C3N4 experiences deterioration of photocatalytic activity after reduction. The rate of hydrogen production was reduced from Pd/g-C3N4/450 °C > Pd/g-C3N4/250 °C > Pd/g-C3N4 > g-C3N4 > g-C3N4/250 °C > g-C3N4/450 °C. Impregnation of Pd on g-C3N4 reduced the recombination of photogenerated electrons by extending the separation of the electron-hole pair. The in-situ DRIFTS analysis revealed a high number of terminal –NH2 formed during the H2 reduction of g-C3N4. A higher density of –NH2 terminal enhanced hydrogen bonds in g-C3N4 that lead to the blocking of electron conductivity. Efficient coordination of hydrogen atom spillover from Pd to the surrounding g-C3N4 enhanced the g-C3N4/Pd interfacial contact via Pd-N bond formation for improved charge mobility. In-situ photocatalytic hydrogen production using triethanolamine (TEOA) as a sacrificial agent showed the role of the hydroxyl group on TEOA to scavenge the photogenerated holes.
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