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腺嘌呤、尿嘧啶及其相应衍生物在钠蒙脱石上的吸附位点。

Sites of adsorption of adenine, uracil, and their corresponding derivatives on sodium montmorillonite.

作者信息

Perezgasga L, Serrato-Díaz A, Negrón-Mendoza A, De Pablo Galán L, Mosqueira F G

机构信息

Instituto de Ciencias Nucleares, UNAM. Cd. Universitaria, Mexico DF, México.

出版信息

Orig Life Evol Biosph. 2005 Apr;35(2):91-110. doi: 10.1007/s11084-005-0199-0.

Abstract

Clay minerals are considered important to chemical evolution processes due to their properties, ancient origin, and wide distribution. To extend the knowledge of their role in the prebiotic epoch, the adsorption sites of adenine, adenosine, AMP, ADP, ATP, Poly A, uracil, uridine, UMP, UDP, UTP and Poly U on sodium montmorillonite are investigated. X-ray diffraction, ultraviolet and infrared spectroscopy studies indicate that these molecules distribute into the interlamellar channel and the edge of the clay crystals. Monomers are adsorbed predominantly in the interlamellar channel, whereas polymers adsorb along the crystal edges. Such behavior is discussed mainly in terms of bulk pH, pK(a) of the adsorbate, and Van der Waals interactions.

摘要

由于其性质、古老起源和广泛分布,粘土矿物被认为对化学演化过程很重要。为了扩展对它们在生命起源前时期作用的认识,研究了腺嘌呤、腺苷、AMP、ADP、ATP、聚腺苷酸、尿嘧啶、尿苷、UMP、UDP、UTP和聚尿苷酸在钠蒙脱石上的吸附位点。X射线衍射、紫外和红外光谱研究表明,这些分子分布在粘土晶体的层间通道和边缘。单体主要吸附在层间通道中,而聚合物则沿晶体边缘吸附。这种行为主要根据本体pH值、被吸附物的pK(a)以及范德华相互作用来讨论。

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