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首页> 外文期刊>Angewandte Chemie >Remarkable Improvement in the Mechanical Properties and CO2 Uptake of MOFs Brought About by Covalent Linking to Graphene
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Remarkable Improvement in the Mechanical Properties and CO2 Uptake of MOFs Brought About by Covalent Linking to Graphene

机译:共价连接石墨烯带来的MOF的机械性能和CO2吸收显着改善

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摘要

Metal-organic frameworks (MOFs) are exceptional as gas adsorbents but their mechanical properties are poor. We present a successful strategy to improve the mechanical properties along with gas adsorption characteristics, wherein graphene (Gr) is covalently bonded with M/DOBDC (M=Mg2+, Ni2+, or Co2+, DOBDC=2,5-dioxido-1,4-benzene dicarboxylate) MOFs. The surface area of the graphene-MOF composites increases up to 200-300 m(2) g(-1) whereas the CO2 uptake increases by ca. 3-5 wt% at 0.15 atm and by 610 wt% at 1 atm. What is significant is that the composites exhibit improved mechanical properties. In the case of Mg/DOBDC, a three-fold increase in both the elastic modulus and hardness with 5 wt% graphene reinforcement is observed. Improvement in both the mechanical properties and gas adsorption characteristics of porous MOFs on linking them to graphene is a novel observation and suggests a new avenue for the design and synthesis of porous materials.
机译:金属有机骨架(MOF)作为气体吸附剂是例外,但其机械性能较差。我们提出了一个成功的策略来改善机械性能以及气体吸附特性,其中石墨烯(Gr)与M / DOBDC(M = Mg2 +,Ni2 +或Co2 +,DOBDC = 2,5-dioxido-1,4-二羧酸苯)MOF。石墨烯-MOF复合材料的表面积最多增加到200-300 m(2)g(-1),而二氧化碳的吸收量大约增加。在0.15个大气压下为3-5 wt%,在1个大气压下为610 wt%。重要的是该复合材料表现出改善的机械性能。在Mg / DOBDC的情况下,观察到弹性模量和硬度增加了3倍(石墨烯增强量为5 wt%)。多孔MOF与石墨烯连接时,其力学性能和气体吸附特性的改善是一个新颖的发现,为多孔材料的设计和合成提供了一条新途径。

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