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Postsynthetic Lithium Modification of Covalent-Organic Polymers for Enhancing Hydrogen and Carbon Dioxide Storage

机译:共价有机聚合物的合成后锂修饰,用于增强氢和二氧化碳的存储

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摘要

Recent experiment and simulation show that introduction of lithium in the frameworks can enhance the gas-storage capacities of framework materials. Here a covalent-brganic polymer-1 (COP-1) has been synthesized through the self-polymerization of monomer 1,3,5-tris((4-bromophenyl)-ethynyl) benzene (TBEB) by the nickel(0)-catalyzed Yamomoto reaction. To enhance gas adsorption properties of the COP-1 material, we have proposed a novel lithium-decorating approach in which the alkynyl functionalities in COP-1 are postsynthetically converted to lithium carboxylate groups with the aid of dry ultrapure CO2. In particular, the H2 uptake of lithium-modified COP material is 1.67 wt % at T = 77 K and ~1 bar, which is increased by ~70.4%, compared with the unmodified compounds. Besides, the enhancement effects of lithium modification on CO2 and CH4 adsorption have also been observed. It is expected that this approach proposed here would provide a new direction for lithium modification of MOFs and COFs for clean energy and environmental applications.
机译:最近的实验和模拟表明,在框架中引入锂可以增强框架材料的储气能力。通过单体1,3,5-三((4-溴苯基)-乙炔基)苯(TBEB)在镍(0)-上的自聚合反应合成了一种共价-溴聚合物-1(COP-1)。催化八元反应。为了提高COP-1材料的气体吸附性能,我们提出了一种新颖的锂装饰方法,其中借助干燥的超纯CO2将COP-1中的炔基官能团合成后转化为羧酸锂基团。特别是,在T = 77 K和〜1 bar时,锂改性COP材料的H2吸收为1.67 wt%,与未改性的化合物相比,增加了〜70.4%。此外,还观察到锂改性对CO 2和CH 4吸附的增强作用。可以预期,这里提出的这种方法将为清洁能源和环境应用的MOF和COF的锂改性提供新的方向。

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