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Study on the immobilization of hemoglobin by nano mesoporous MCFs and its optical properties

机译:纳米介孔MCFS及其光学性质对血红蛋白固定的研究及其光学性质

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Nano mesoporous molecular sieve MCFs (mesocellular foams) was synthesized successfully through hydrothermal method. Then bovine hemoglobin was successfully immobilized into the mesoporous molecular sieve MCFs, the immobilized enzyme was 50.27 mg g(-1). The desirable adsorbate/adsorbent, Hb/MCFs, (mass ratio, m/m) for 3/50 was achieved by adjusting adsorption conditions. The obtained materials were characterized using various techniques such as the powder XRD, Fourier transform infrared spectroscopy, UV-Vis solid diffuse reflectance spectroscopy (SDRS), photoluminescence spectrum and N(2)adsorption desorption study at 77 K. The results showed that hemoglobin had been immobilized successfully inside the channels of mesoporous MCFs. Scanning electron microscopy was used to confirm the average particle diameters of MCFs-Hb and (CH3-MCFs)-Hb. And the results showed that the average particle diameters of MCFs-Hb and (CH3-MCFs)-Hb were 2212 +/- 50 nm and 2219 +/- 50 nm, respectively. The adsorption process of MCFs/(CH3-MCFs) adsorbing hemoglobin enzyme was in accordance with pseudo-second-order kinetic equation. The process of MCFs/(CH3-MCFs) adsorbing hemoglobin enzyme belonged to an exothermic reaction which was a spontaneous reaction. Freundlich model described the adsorption of hemoglobin by MCFs/CH3-MCFs well. The desorption process of MCFs-Hb/(CH3-MCFs)-Hb composite was studied in the sodium hydroxide solution (0.1 mol L-1), and equilibrium was reached at 5 h. The desorption rates were 72.58% and 69.67%, respectively. The luminescence spectra showed that the obtained composites had the light-emitting properties.
机译:通过水热法成功地合成纳米介孔分子筛MCFS(Mesocellular泡沫)。然后将牛血红蛋白成功地固定到中孔分子筛MCF中,固定化酶为50.27mg g(-1)。通过调节吸附条件,实现了3/50的理想吸附/吸附剂,Hb / MCF,(质量比,m / m)。使用各种技术,诸如粉末XRD,傅立叶变换红外光谱,UV-VI的固体漫射反射光谱(SDR),光致发光光谱和N(2)吸附解吸研究的各种技术表征在77k中。结果表明血红蛋白有成功地固定在中孔MCF的通道内。扫描电子显微镜用于确认MCFS-HB的平均粒径和(CH3-MCFS)-HB。结果表明,MCFS-HB和(CH3-MCFS)-HB的平均粒径分别为2212 +/- 50nm和2219 +/- 50nm。吸附血红蛋白酶的MCFS /(CH3-MCFS)的吸附过程符合伪二阶动力学方程。 MCFS /(CH3-MCFS)吸附血红蛋白酶的过程属于放热反应,其是自发反应。 Freundlich模型描述了MCFS / CH3-MCFS的血红蛋白的吸附。在氢氧化钠溶液(0.1mol L-1)中研究了MCFS-HB /(CH3-MCFS)-HB复合物的解吸过程,5小时达到平衡。解吸率分别为72.58%和69.67%。发光光谱表明所获得的复合材料具有发光性质。

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