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Influence of aluminum oxide on the prebiotic thermal synthesis of Gly-Glu-(Gly-Glu)_n polymer

机译:氧化铝对Gly-Glu-(Gly-Glu)_n聚合物益生元热合成的影响

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The effect of the aluminum oxide on the thermal synthesis of the glycine-glutamic acid (Gly-Glu-(Gly-Glu)_n polymer is described. The thermal synthesis in the molten state was carried out in the absence and presence of the oxide. In both cases, the vibrational spectra showed characteristic group frequencies corresponding predominantly to a Gly-Glu-(Gly-Glu)_n sequence in the polymeric structure. The theoretical spectral data support the experimental proposed Gly-Glu-(Gly-Glu)_n sequence for the polymer. The SEM-EDX characterization of the solid phase involved in the thermal synthesis showed that the aluminum oxide participates as a site for nucleation and growth of the polymer, explaining the increase of 25% efficiency in the presence of aluminum oxide. Electrophoresis data show shorter polypeptide chains in the presence of aluminum oxide.
机译:描述了氧化铝对甘氨酸-谷氨酸(Gly-Glu-(Gly-Glu)_n)聚合物的热合成的影响,熔融状态下的热合成在不存在和存在氧化物的情况下进行。在这两种情况下,振动光谱均显示出与聚合物结构中的Gly-Glu-(Gly-Glu)_n序列相对应的特征群频率,理论光谱数据支持实验提出的Gly-Glu-(Gly-Glu)_n序列热合成中涉及的固相的SEM-EDX表征表明,氧化铝参与了聚合物的成核和生长,解释了在氧化铝存在下效率提高了25%。数据显示在氧化铝存在下较短的多肽链。

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