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首页> 外文期刊>Bulletin of Materials Science >Effect of CTAB coating on structural, magnetic and peroxidase mimic activity of ferric oxide nanoparticles
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Effect of CTAB coating on structural, magnetic and peroxidase mimic activity of ferric oxide nanoparticles

机译:CTAB涂层对氧化铁纳米粒子结构,磁性和过氧化物酶模拟活性的影响

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In the present work, pristine and cetyl trimethyl ammonium bromide (CTAB)-coated ferric oxide nanoparticles (CTAB@ Fe2O3 NPs) were synthesized and studied as enzyme mimics. The w/w ratio of Fe2O3 to CTAB was varied as 1: 1 and 1: 2. Transmission electron microscopic analysis revealed that pristine NPs had an average size of 50 nm, whereas the presence of CTAB resulted in the formation of nanorods with length of 130 nm. BET studies confirmed enhancement of surface area on CTAB coating, which was maximum for w/w ratio 1: 1. The synthesized pristine NPs and CTAB-coated NPs were evaluated for their peroxidase mimic activity using o-dianisidine dihydrochloride as substrate. Optimum pH, temperature, substrate and NPs concentration for the reaction were 1, 25 degrees C, 0.16 mg ml(-1) and 1 mg ml-1, respectively. Peroxidase mimic activity of CTAB@ Fe2O3 NPs (w/w 1: 1) was higher than that of pristine NPs. However, further increase in CTAB coating (w/w 1: 2) resulted in lowering of peroxidase mimic activity. Kinetic analysis was carried out at optimized conditions; maximum velocity (Vmax) and Michaelis constant (Km) value of CTAB@ Fe2O3 NPs at 1: 1 w/w ratio were 7.69 mM and 1.12 mu mol s(-1), respectively.
机译:在本作的工作中,合成原始和十六烷基溴化铵(CTAB) - 涂覆的氧化铁纳米颗粒(CTAB @ Fe2O3 NPS),并作为酶模拟研究。 Fe2O3至CTAB的W / W比为1:1和1:2 130 nm。 BET研究证实了CTAB涂层表面区域的增强,其最大值为W / W比1:1。评价合成的原始NPS和CTAB涂覆的NPS,用于使用O-二氨氨酸二盐酸盐作为基质的过氧化物酶模拟活性。反应的最佳pH值,温度,基材和NPS浓度为1,25℃,0.16mg ml(-1)和1mg ml-1。 CTAB @ Fe2O3 NPS(W / W 1:1)的过氧化物酶模拟活性高于原始NPS。然而,CTAB涂层(W / W 1:2)的进一步增加导致过氧化物酶模拟活性降低。在优化条件下进行动力学分析; CTAB @ Fe2O3 NPS的最大速度(Vmax)和Michaelis常数(km)值分别为7.69 mm和1.12μmols(-1)。

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