Gas–solid two-phase flow low-temperature solid-phase method: a novel approach to mechanically synthesize heterometallic–organic frameworks

IF 3.1 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Neng mei Deng, Yang Liu, Lu lu Tang, Xu cheng Fu and Jun Zhao
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引用次数: 0

Abstract

Research has demonstrated that heterometallic–organic frameworks (HMOFs) and their derivatives showcase exceptional application potential across various domains, including gas adsorption, energy storage, and environmental purification, often outperforming their monometallic MOF counterparts. The GSF synthesis protocol detailed in this paper introduces a pioneering mechanochemical approach for the production of manganese-based HMOFs. This technique facilitates the continuous fabrication of HMOFs in the absence of solvents, thereby cutting down on the production costs of MOFs and mitigating the issue of organic solvent pollution. This study provides experimental evidence and theoretical support for the standardization and large-scale application of the GSF method, while also holding significant scientific and practical value for advancing the innovative development of green chemical synthesis technologies.

Abstract Image

气固两相流低温固相法:机械合成异金属有机骨架的新方法
研究表明,杂金属有机框架(HMOFs)及其衍生物在气体吸附、能量储存和环境净化等各个领域都具有卓越的应用潜力,其性能往往优于单金属MOF。本文详细介绍了GSF合成方案,介绍了一种开创性的机械化学方法,用于生产锰基HMOFs。该技术有利于在没有溶剂的情况下连续制备HMOFs,从而降低了mof的生产成本,减轻了有机溶剂污染问题。本研究为GSF方法的标准化和规模化应用提供了实验依据和理论支持,同时对推动绿色化学合成技术的创新发展也具有重要的科学和实用价值。
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来源期刊
Reaction Chemistry & Engineering
Reaction Chemistry & Engineering Chemistry-Chemistry (miscellaneous)
CiteScore
6.60
自引率
7.70%
发文量
227
期刊介绍: Reaction Chemistry & Engineering is a new journal reporting cutting edge research into all aspects of making molecules for the benefit of fundamental research, applied processes and wider society. From fundamental, molecular-level chemistry to large scale chemical production, Reaction Chemistry & Engineering brings together communities of chemists and chemical engineers working to ensure the crucial role of reaction chemistry in today’s world.
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