首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >The Effect of Sterically Active Ligand Substituents on Gas Adsorption within a Family of 3D Zn-Based Coordination Polymers
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The Effect of Sterically Active Ligand Substituents on Gas Adsorption within a Family of 3D Zn-Based Coordination Polymers

机译:空心活性配体取代基对3D Zn基配位聚合物系列气体吸附的影响

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摘要

An investigation of the adsorption properties of two structurally related, 3D coordination polymers of composition Zn(2-Mehba) and Zn(2,6-Me(2)hba) (2-Mehba = the dianion of 2-methyl-4-hydroxybenzoic acid and 2,6-Me(2)hba = the dianion of 2,6-dimethyl-4-hydroxybenzoic acid) is presented. A common feature of these structures are parallel channels that are able to accommodate appropriately sized guest molecules. The structures differ with respect to the steric congestion within the channels arising from methyl groups appended to the bridging ligands of the network. The host network, Zn(2-Mehba), is able to take up appreciable quantities of H-2 (77 K) and CO2 and CH4 (298 K) in a reversible manner. In regard to the adsorption of N-2 by Zn(2-Mehba), there appears to be an unusual temperature dependence for the uptake of the gas such that when the temperature is increased from 77 to 298 K the uptake of N-2 increases. The relatively narrow channels of Zn(2,6-Me(2)hba) are too small to allow the uptake of N-2 and CH4, but H-2 molecules can be adsorbed. A pronounced step at elevated pressures in CO2 and N2O isotherms for Zn(2,6-Me(2)hba) is noted. Calculations indicate that rotation of phenolate rings leads to a change in the available intraframework space during CO2 dosing.
机译:组合物Zn(2-Mehba)和Zn(2,6-Me(2)HBA)的两个结构相关,3D配位聚合物的吸附性能研究(2-Mehba = 2-甲基-4-羟基苯甲酸的副呈系酸和2,6- Me(2)HBA = 2,6-二甲基-4-羟基苯甲酸的脱膜。这些结构的共同特征是能够容纳适当大小的客体分子的平行通道。结构在由附加到网络的桥接配体上所产生的甲基中产生的通道内的空间充血不同。宿主网络Zn(2-MeHBA)能够以可逆的方式占据最明显的H-2(77k)和CO2和CH 4(298k)。关于通过Zn(2-Mehba)的N-2的吸附,似乎是对气体吸收的不寻常的温度依赖性,使得当温度从77增加到298k时,N-2的摄取增加。 Zn的相对窄的通道(2,6-ME(2)HBA)太小,不能允许N-2和CH 4的摄取,但是可以吸附H-2分子。注意到Zn(2,6-ME(2)HBA)的CO 2和N2O等温线中升高的升高的显着步骤。计算表明,酚类环的旋转导致CO 2给药期间可用的帧内空间的变化。

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