双金属片
水溶液
理论(学习稳定性)
化学稳定性
金属有机骨架
金属
反应速率常数
过渡金属
催化作用
化学工程
材料科学
纳米技术
化学
计算机科学
动力学
冶金
物理化学
有机化学
物理
吸附
工程类
机器学习
量子力学
作者
Shuai Yuan,Jiayu Peng,Yirui Zhang,Yang Shao‐Horn
标识
DOI:10.1021/acs.jpcc.9b08749
摘要
Bimetallic metal–organic frameworks (MOFs) based on heterometal-modified hexanuclear Zr building units have emerged as promising materials for applications in energy-related fields such as heterogenous catalysis/electrocatalysis. However, their stability remains a challenge under some practical conditions, and the physical/chemical origin to the (in)stability is not well-understood. Herein, we selected three representative Zr-MOFs (MOF-808, NU-1000, and UiO-66) as platforms and incorporated different heterometals (Ti4+, V3+, V5+, Cr3+, Cr6+, Mn2+, Fe2+, Fe3+, Co2+, Ni2+, Cu2+, and Zn2+) to form a series of bimetallic M/Zr-MOFs. Their stability was examined in aqueous solutions of various pH to define their stability windows and understand their stability trend. The stability of M/Zr-MOFs was found to be dictated by the oxidation states of incorporated heterometals and slightly affected by the supporting Zr-MOFs. Water-exchange rate constant, defined as the rate constant by replacing a coordinated water with a solution water, was proposed as the stability descriptor to explain the stability trend and guide the design and application of future stable MOFs.
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