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Facile synthesis of Au-SnO2 hybrid nanospheres with enhanced photoelectrochemical biosensing performance

机译:简单的合成Au-SnO2混合团簇与增强光电化学若性能

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Au-SnO2 hybrid nanospheres (HNSs) were synthesized by a facile, one-step method, which was achieved via a redox reaction between the reductive stannous (II) ions and oxidative auric (III) ions and dissolved O2, and then in situ formation of Au nanoparticles (NPs) and SnO2 NPs. The results indicated that the Au NPs are able to trap electrons, improve the electron-hole pairs' life, and enhance the visible light absorption intensity that are all beneficial for enhancement of the visible light photoelectrochemical performance. Cysteine was chosen as a model molecule in photoelectrochemical biosensing experiments. The biosensor displayed excellent analytical performance for detection of cysteine with an extremely broad linear range (from 0.4 μM to 12 mM), and a low detection limit (0.1 μM). Therefore, the Au-SnO2 HNSs will be promising candidates for photocatalysts, photoelectrochemical biosensors, and other photoelectric devices.
机译:Au-SnO2混合团簇(HNSs)是合成简单,一步到位的方法,这是实现通过还原之间的氧化还原反应(2)离子和氧化亚锡金(3)离子和溶解的氧气,然后原位形成的Au纳米颗粒(NPs)和SnO2 NPs。表示,非盟NPs陷阱电子,提高电子空穴对的生活,,提高可见光的吸收增强的强度,都是有益的可见光光电化学的性能。在光电化学分子若实验。半胱氨酸的分析检测的性能一个极其广泛的线性范围(从0.4μM12毫米)和较低的检出限(0.1μM)。因此,Au-SnO2 HNSs会有前途的候选人为催化剂,光电化学生物传感器等光电设备。

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