用于光催化水分离氢进化的磁性钴金属有机框架。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Mohammad Hossein Razeghi, Ozra Gholipour, Jaber J Sardroodi, Sajjad Keshipour, Ali Hassanzadeh
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引用次数: 0

摘要

将水作为一种可再生的安全能源用于制氢,减少了使用有毒化石燃料的需要。光催化方法提供了一种有价值的解决方案,可避免在促进氢气进化反应的复杂电化学途径上花费高昂的成本。然而,包括贵金属催化剂在内的几种光催化剂已被用于这一目的,但它们通常也被认为是高成本的。本研究旨在利用金属有机框架(MOFs)具有类似半导体的特性、高多孔结构和高设计灵活性的优势。本文利用 MOF 技术,并受益于 Fe3O4 纳米颗粒作为催化剂载体的特性,更有效地分离催化剂,合成了一种新型复合材料。我们提出的光催化剂能有效地收集从紫外线到可见光的所有波长的光,从而产生适合水分离的电子/空穴对,在环境条件下的周转频率为 0.222 h-1,无需任何添加剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Magnetic cobalt metal organic framework for photocatalytic water splitting hydrogen evolution.

Magnetic cobalt metal organic framework for photocatalytic water splitting hydrogen evolution.

Using water as a renewable and safe energy source for hydrogen generation has reduced the need to use toxic fossil fuels. Photocatalytic approaches provide a worthy solution to avoid the high expenditure on complicated electrochemical pathways to promote Hydrogen Evolution Reactions. However, several types of photocatalysts including noble metal-based catalysts have already been in use for this purpose, which are generally considered high-cost as well. The present study aims to use the benefits of metal-organic frameworks (MOFs) with semiconductor-like characteristics, highly porous structures and high design flexibility. These properties of MOFs allow more efficient and effective mass transport as well as exposure to light.in this paper, using MOF technology and benefiting from the characteristics of Fe3O4 nanoparticles as catalyst support for more efficient separation of catalyst, we have synthesized a novel composite. Our proposed photocatalyst demonstrates efficient harvest of light in all wavelengths from UV to visible to generate electron/hole pairs suitable for water splitting with a turnover frequency of 0.222 h-1 at ambient conditions without requiring any additives.

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CiteScore
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