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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Green approach for in-situ growth of highly-ordered 3D flower-like CuS hollow nanospheres decorated on nitrogen and sulfur co-doped graphene bionanocomposite with enhanced peroxidase-like catalytic activity performance for colorimetric biosensing of glucose
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Green approach for in-situ growth of highly-ordered 3D flower-like CuS hollow nanospheres decorated on nitrogen and sulfur co-doped graphene bionanocomposite with enhanced peroxidase-like catalytic activity performance for colorimetric biosensing of glucose

机译:用于氮气和硫磺共掺杂石墨烯二酮复合材料的高度有序3D花型CUS空心纳米球的原位生长的绿色方法,具有增强的过氧化物酶样催化活性性能,用于葡萄糖的比色生物溶解

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摘要

We describe a green and facile hydrothermal route to synthesize highly ordered 3D flower-like hierarchical CuS hollow nanospheres@N-S-rGO bionanocomposite used to detect glucose. After synthesis and comprehensive characterization of all potential catalysts, the peroxidase-like activity of 3D CuS NSs@N-S-rGO is compared extensively with pure 3D CuS NSs, N-S-rGO, N-rGO, and GO to monitor the effect of each modification and treatment on their catalytic properties. The results indicate promising peroxidase activity of 3D CuS NSs@N-S-rGO by possessing the highest catalytic activity and the Michaelis constant of 93.5 times lower and 9.7 times higher than that of reported for HRP, respectively. The bionanocomposite is used to detect glucose in serum with and without light. The results show a remarkable enhancement in the limit of detection for glucose from 0.3 mu M to 0.075 mu M (40 folds) with visible light that can be attributed to the fast electron transfer on the surface of 3D CuS NSs@N-S-rGO and the synergistic interaction of 3D CuS NSs and N-S-rGO. The method was further applied to the colorimetric detection of glucose in human serum and showed high selectivity. Our result also show that this method based on 3D CuS NSs@N-S-rGO is economical, reliable, feasible, and highly efficient.
机译:我们描述了一种绿色和容易的水热途径,以合成高度有序的3D花样等级CUS空心纳米球,用于检测葡萄糖的N-S-Rgo BionanoOcith。在合成和综合表征所有潜在催化剂之后,3D CUS NSS @ NS-RGO的过氧化物酶样活性与纯3DCU,NS-RGO,N-RGO相比,并转到监测每个改性的效果和处理催化性质。结果表明,通过具有最高的催化活性和较低的催化活性和迈克莱斯常数分别具有93.5倍,分别高出93.5倍,分别高出93.5倍的93.5倍。脱硫复合材料用于检测血清中的葡萄糖,无需光。结果表明,从0.3μm至0.075 mu m(40倍)的葡萄糖的检测极限具有显着的增强,该可见光可归因于3D CUS-RGO的3D表面上的快速电子转移和3D CUS和NS-RGO的协同相互作用。该方法进一步应用于人血清中葡萄糖的比色检测,并显示出高选择性。我们的结果还表明,该方法基于3D CUSS @ N-S RGO是经济的,可靠,可行的,高效的。

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