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Characterization of Nanoclay-phosphatase Complex with IR Spectroscopy and Electron Microscopy

机译:纳米粘土磷酸酶复合物的红外光谱和电子显微镜表征

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摘要

Commercial phosphatase enzyme (acid and alkaline) was immobilized with different nanoclays collected from three genetically different soil orders (i.e. Inceptisol, Vertisol andAlfisol) and complexes were characterized by IR spectroscopy and electron microscopy in the laboratory. Scanning electron microscopy (SEM) images showed modification of surface morphologies of nanoclay due to phosphatase adsorption (appearance of boulder like structures and rough surfaces after immobilization). IR scanning confirmed presence of characteristic band of clay mineral due to H-O-H, Si-0 stretching and Al-O-H bending in all nanoclays. Nanoclay-phosphatase complexes were also characterized by means ofIR and it was found that carbonyl (C=0) amide III (-CO-N-) and amide I (-CO-NH_2) group present in various amino acid side chains were involved in adsorption process whereas carboxylate, primary amine and amide II (-CO-NH-) groups present in glutamine became more free on adsorption.
机译:将商品化的磷酸酶(酸和碱)固定在从三种遗传上不同的土壤阶次(即Inceptisol,Vertisol和Alfisol)收集的不同纳米粘土中,并在实验室中通过IR光谱和电子显微镜对复合物进行表征。扫描电子显微镜(SEM)图像显示,由于磷酸酶的吸附(固定后巨石状结构和粗糙表面的出现),纳米粘土的表面形态发生了改变。红外扫描证实,由于所有纳米粘土中的H-O-H,Si-0拉伸和Al-O-H弯曲,粘土矿物存在特征带。还通过IR对纳米粘土磷酸酶复合物进行了表征,发现存在于各种氨基酸侧链中的羰基(C = 0)酰胺III(-CO-N-)和酰胺I(-CO-NH_2)基团也参与其中。吸附过程,而谷氨酰胺中存在的羧酸盐,伯胺和酰胺II(-CO-NH-)基团在吸附时变得更自由。

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