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Low dimensional materials for glucose sensing

机译:低维材料葡萄糖传感

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摘要

Biosensors are essential components for effective healthcare management. Since biological processes occur on molecular scales, nanomaterials and nanosensors intrinsically provide the most appropriate landscapes for developing biosensors. Low-dimensional materials have the advantage of offering high surface areas, increased reactivity and unique physicochemical properties for efficient and selective biosensing. So far, nanomaterials and nanodevices have offered significant prospects for glucose sensing. Targeted glucose biosensing using such low-dimensional materials enables much more effective monitoring of blood glucose levels, thus providing significantly better predictive diabetes diagnostics and management. In this review, recent advances in using low dimensional materials for sensing glucose are summarized. Sensing fundamentals are discussed, as well as invasive, minimally-invasive and non-invasive sensing methods. The effects of morphological characteristics and size-dependent properties of low dimensional materials are explored for glucose sensing, and the key performance parameters such as selectivity, stability and sensitivity are also discussed. Finally, the challenges and future opportunities that low dimensional materials can offer for glucose sensing are outlined.
机译:为有效的生物传感器是必不可少的组件医疗保健管理。发生在分子尺度上,纳米材料纳米传感器本质上提供最适当的景观开发生物传感器。低维材料的优势提供高表面积,增加反应性和独特的物理化学性质有效和选择性若。纳米材料和nanodevices已经提供重要的葡萄糖传感的前景。目标是使用这样的葡萄糖若低维材料使更多有效的监测血糖水平,从而提供更好的预测糖尿病的诊断和管理。审查,使用低维的最新进展材料葡萄糖传感进行了总结。传感原理进行了讨论,以及侵入性和非侵入性的方法传感方法。特征、尺度依赖的性质低维材料的探索葡萄糖传感、和性能的关键参数如选择性、稳定性和灵敏度进行了讨论。挑战和未来的机会很低维材料可以提供葡萄糖感应了。

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