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Near-Nernstian pH Sensors Based on Hydrothermally Grown NiO Nanosheets on Hierarchically Roughened Si Substrates

机译:基于水热生长的NiO纳米片的近能神经pH传感器,层状粗糙的Si基底

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Introduction: Recently, the use of high surface-to-volume ratio sensing materials, such as TiO 2 , ZnO, and NiO nanostructures, used for pH sensing were demonstrated [ 1 – 4 ]. High response over 44.5 mV/pH was obtained, which was explained as being attributed to increase ion adsorption sites of sensing electrodes (SEs). In this work, pH SEs with improved sensing performance based on hydrothermal growth (HTG) of NiO NSs on Hierarchically roughened Si substrates, which could significantly increase the ion adsorption sites, are proposed and demonstrated. A dual roughening scheme to form pyramidal cones and Si nanowires (Si NWs) consecutively is employed. For comparison, pH sensing performance of SEs with a different combination of the Si NWs, KOH-etched Si substrates, and HTG NiO NSs are also investigated and the benefit of the nanostructures is analyzed. Possible mechanism governing the enhancement in pH sensing response is also proposed and discussed.
机译:简介:最近,已证明使用高表面体积比的传感材料(例如TiO 2,ZnO和NiO纳米结构)进行pH传感[1-4]。获得了超过44.5 mV / pH的高响应,这可以解释为归因于感应电极(SEs)的离子吸附位点增加。在这项工作中,提出并证明了基于NiO NSs在分层粗糙化的Si基板上的水热生长(HTG)可以改善传感性能的pH SE,可以显着增加离子的吸附位点。采用双重粗糙化方案以连续形成锥形锥体和Si纳米线(Si NWs)。为了进行比较,还研究了具有不同的Si NWs,KOH蚀刻的Si衬底和HTG NiO NSs组合的SE的pH感测性能,并分析了纳米结构的益处。还提出并讨论了控制pH感测响应增强的可能机制。

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