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Influence of side chain structure on sorption of xenon and carbon dioxide gas by polypeptide membranes

机译:侧链结构对多肽膜吸附氙气和二氧化碳气体的影响

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AbstractThe influence of side chain structure on sorption of xenon and carbon dioxide gas by polypeptides is examined in two ways: chemical structure of side chain and higher order structure of the side chain region. Sorption of xenon gas increases progressively with increase in side chain length of poly(n‐alkylL‐glutamates). The sorption isotherms of a polymer at various temperatures are reduced to one curve when the data are arranged in the form of sorption per residue versus fugacity ratio (as activity). The sorption of carbon dioxide gas shows a minimum at an intermediate length of side chains, corresponding to poly(n‐propyl orn‐butyl glutamate). The behavior is considered the result of overlapping influences of looseness of the side chain region and density of polar groups. The Langmuir constants and the enthalpy and entropy of sorption explain this quantitatively. Sorption of carbon dioxide gas is influenced by the higher‐order structure of poly(γ‐benzylL‐glutamate). In this polymer, the benzyl ester part is the main sorption site, and it was confirmed that the stacking between side‐chain benzene rings significantly reduces the ex
机译:摘要 从侧链的化学结构和侧链区域的高阶结构两个方面研究了侧链结构对多肽吸附氙气和二氧化碳气体的影响。氙气的吸附随着聚(正烷基L-谷氨酸)侧链长度的增加而逐渐增加。当数据以每残留物吸附量与逸度比(作为活性)的形式排列时,聚合物在不同温度下的吸附等温线被简化为一条曲线。二氧化碳气体的吸附在侧链的中间长度处显示出最小值,对应于聚(正丙基orn-丁基谷氨酸酯)。该行为被认为是侧链区域松散度和极性基团密度重叠影响的结果。朗缪尔常数和吸附的焓和熵定量地解释了这一点。二氧化碳气体的吸附受聚(γ-苄基L-谷氨酸)的高级结构的影响。在该聚合物中,苄酯部分是主要的吸附位点,并且证实了侧链苯环之间的堆积显着降低了 ex

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