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Quantum capacitance as a reagentless molecular sensing element

机译:量子电容reagentless分子传感元件

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The application of nanoscale capacitance as a transduction of molecular recognition relevant to molecular diagnostics is demonstrated. The energy-related signal relates directly to the electron occupation of quantized states present in readily fabricated molecular junctions such as those presented by redox switchable self-assembled molecular monolayers, reduced graphene oxide or redox-active graphene composite films, assembled on standard metallic or micro-fabricated electrodes. Sensor design is thus based on the response of a confined and resolved electronic density of states to target binding and the associated change in interfacial chemical potential. Demonstrated herein with a number of clinically important markers, this represents a new potent and ultrasensitive molecular detection enabling energy transducer principle capable of quantifying, in a single step and reagentless manner, markers within biological fluid.
机译:纳米级电容作为一个的应用传导的分子识别有关分子诊断。能源相关信号直接相关占领电子基态的礼物容易组装分子连接等这些由氧化还原可切换的自组装分子膜,减少了石墨烯氧化物或redox-active石墨烯复合材料电影,在标准的金属或组装micro-fabricated电极。因此基于响应的局限和解决电子态密度的目标绑定和相关界面的变化化学势。许多临床重要的标记,这一点代表一个新的强有力的和超灵敏分子检测使能量转换器能够量化的原则,在一个单一的一步,reagentless方式标记内生物流体。

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