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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Shape-controlled synthesis and electrocatalytic and direct electron transfer properties of bismuth titanate nanostructures
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Shape-controlled synthesis and electrocatalytic and direct electron transfer properties of bismuth titanate nanostructures

机译:钛酸铋纳米结构的形状控制合成及电催化和直接电子转移性质

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摘要

A facile hydrothermal synthesis strategy for the synthesis of bismuth titanate (Bi4Ti3O12, BT) nanorods (NRs) and nanosheets (NSs) is demonstrated, using which their shapes can be effectively controlled. The novel BT nanostructures were for the first time explored for protein immobilization and biosensing platform and further for studies of electrocatalytic and direct electron transfer (DET) properties. UV—visible absorption and Fourier-transform infrared spectroscopy investigations indicate that the Hb intercalated in the BTNRs and BTNSs well retains its native structure. Comparative experiments have confirmed that the Hb—Chi—BTNSs electrode has not only enhanced DET capacity but also displays excellent electrocatalytic properties such as higher sensitivity and wider linear range to the detection of hydrogen peroxide in comparison with the Hb—Chi—BTNRs electrode. We believe that BTNSs with unique structure and excellent DET and eletrocatalytic performance are expected to find potential applications in nanodevices and biomedicine, food and environmental analysis and detection.
机译:证明了一种简便的水热合成策略,用于合成钛酸铋(Bi4Ti3O12,BT)纳米棒(NRs)和纳米片(NSs),使用该策略可以有效地控制其形状。首次探索了新颖的BT纳米结构用于蛋白质固定和生物传感平台,并进一步用于电催化和直接电子转移(DET)性能的研究。紫外可见吸收和傅立叶变换红外光谱研究表明,插入BTNRs和BTNSs中的Hb很好地保留了其天然结构。对比实验已经证实,与Hb-Chi-BTNRs电极相比,Hb-Chi-BTNSs电极不仅具有增强的DET容量,而且显示出优异的电催化性能,例如对过氧化氢的检测具有更高的灵敏度和更宽的线性范围。我们相信,具有独特结构,出色的DET和电催化性能的BTNS有望在纳米器件和生物医学,食品和环境分析与检测中找到潜在的应用。

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