通过在 Ru 单原子/纳米粒子双位触媒上进行中继催化,有效的电化学化托卢
Lingxia Zheng1, Lubo Zhang1, Jiawei Bai1
1Petroleum and Chemical Industry Key Laboratory of Organic Electrochemical Synthesis, College of Chemical Engineering, Zhejiang University of Technology (ZJUT), Hangzhou, 310014, China.
单原子/纳米粒子催化剂有效地将多烯化为甲基环,用于储存液态有机. 这种双站式方法提高了效率和选择性,克服了贵金属的局限性.
科学领域:
- 材料科学 材料科学 材料科学
- 电化学 电化学 电化学
- 催化剂是一种催化剂.
背景情况:
- 甲基环-多- (MTH) 循环是一个关键的液态有机载体 (LOHC) 系统.
- 像金 (Pt) 这样的贵金属催化剂在工业LOHC应用中面临成本和可用性挑战.
研究的目的:
- 开发一个具有成本效益的单原子/纳米粒子 (Ru SA/NP) 双站点电催化剂,用于化.
- 在LOHC系统中提高电化学化 (ECH) 的效率和选择性.
主要方法:
- 制造一个 Ru SA/NP 双站式电催化剂,金属负载较低.
- 在电化学微反应器中,电化学化 (ECH) 从 (TL) 到甲基环 (MCH).
- 实验和理论分析以阐明反应机制和结构-活性关系.
主要成果:
- 最优的Ru4-CN催化剂在一个广泛的潜在窗口中实现了约100%的法拉第效率 (FE) 和高MCH选择性.
- 催化剂显著抑制了进化反应 (HER).
- 在2.0V时,MCH产量达到657.12μmolh-1 mgRu-1,大约是商业Ru/C的28倍.
结论:
- Ru SA/NP双站点催化剂为有机基质的高效电化学化提供了一个有希望的策略.
- 拟议的机制包括在Ru NP上进行优惠的TL吸附,在Ru SAs上形成H*,然后进行化.
- 这种设计为先进的LOHC催化剂开发提供了对结构-活动关系的洞察.
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