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Photoelectrochemical device based on Mo-doped BiVO4 enables smart analysis of the global antioxidant capacity in food

机译:基于Mo掺杂BiVO4的光电化学装置可对食品中的全球抗氧化能力进行智能分析

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For a healthy diet, which is an extension of a high quality lifestyle, tremendous attention has been focused on using antioxidant capacity indicators for food inspections and health guides. Although photoelectrochemical transducers have broadened our horizons for global antioxidant activity analysis, a growing body of foods and beverages needs to be quantified in the visible region and the necessary photoelectrochemical instrumentalization is still in its infancy. Generally, BiVO4 is considered as an ideal starting material for antioxidant surveillance under visible light irradiation. However, it is subjected to unsatisfied charge collection and utilization in practical applications. Herein, we studied the effects of successive molybdenum substitution of vanadium on the photocatalytic behavior of BiMoxV(1-x)O4 under visible light illumination. A superior photocurrent density was obtained for BiMo0.015V0.985O4 due to the flower-like architecture and favorable crystalline form. At the same time, this superhybrid BiMo0.015V0.985O4 composite successfully acted as a sensing unit in a photoelectrochemical platform for antioxidant capacity evaluation in foodstuffs. The related mechanism was further unearthed and discussed in-depth. Such a straightforward yet cogent principle was also applied to our integrated device for the "smart" analysis of the global antioxidant capacity, whereby collected data can be treated as a nutritive value index for routine quality control in the food industry. On the basis of this achievement, it is anticipated that mobile app-based quantitative antioxidant capacity detection will soon be realized.
机译:对于健康饮食而言,这是高质量生活方式的延伸,人们已将极大的注意力集中在使用抗氧化剂能力指标进行食品检查和健康指南上。尽管光电化学换能器拓宽了我们进行全球抗氧化剂活性分析的视野,但仍需要在可见光区域对越来越多的食品和饮料进行定量,而必要的光电化学仪器化仍处于起步阶段。通常,BiVO4被认为是在可见光照射下进行抗氧化剂监测的理想原料。但是,在实际应用中,其电荷收集和利用不令人满意。在这里,我们研究了钒的连续钼替代对BiMoxV(1-x)O4在可见光照射下的光催化行为的影响。 BiMo0.015V0.985O4由于具有花状结构和良好的晶型,因此具有较高的光电流密度。同时,这种超杂交BiMo0.015V0.985O4复合材料在光电化学平台中成功地用作传感单元,用于评估食品中的抗氧化剂能力。相关机制进一步发掘并深入讨论。这种简单而又令人信服的原则也被应用于我们的集成设备,以“智能”地分析全球抗氧化剂能力,从而将收集到的数据视为食品行业常规质量控制的营养价值指标。基于此成就,预计不久将实现基于移动应用程序的定量抗氧化剂容量检测。

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