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Miniaturized nanohole array based plasmonic sensor for the detection of acetone and ethanol with insights into the kinetics of adsorptive plasmonic sensing

机译:基于小型nanohole阵列电浆传感器丙酮和乙醇的检测洞察吸附的动力学电浆传感

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摘要

The present work demonstrates development of a miniaturized plasmonic platform comprised of a Au nanohole array (NHA) on a Si/Si3N4 substrate. Plasmonic responses of the NHA platform, which is coated with Cu-benzenetricarboxylate metal organic framework (MOF), are found to be promising even towards 500 nmol mol(-1) (ppb) of acetone or ethanol vapors at room temperature. The sensing characteristics are further investigated by varying the operating temperature (296 K to 318 K) of the sensor and the concentrations of vapors (500 nmol mol(-1) to 320 mu mol mol(-1)). The plasmonic responses for the sensors are correlated with the adsorption of vapors on the MOF surface and modeled in accordance to Langmuir-type adsorption. Kinetic parameters are estimated for the adsorption of fixed concentrations of acetone and ethanol vapors within the studied operating temperature range. The linear variation of characteristic response time constants with the operating temperature provides Arrhenius activation energies for the adsorption of acetone and ethanol vapors. The comparatively lower activation energy estimated for the adsorption of ethanol results in faster and more sensitive response of the sensor towards that analyte. The plasmonic sensor for the detection of nmol mol(-1) level acetone and ethanol vapors at room temperature along with the kinetic correlation on plasmonic response with the adsorption of the analytes described herein offer new insights to existing reports on surface modification and plasmonic detection.
机译:目前的工作发展小型电浆平台组成的一个非盟nanohole阵列(NHA) Si /氮化硅衬底。电浆NHA平台的反应,这是涂有Cu-benzenetricarboxylate金属有机框架(MOF),被发现甚至承诺对500 nmol摩尔(1)的含量在室温下丙酮或乙醇蒸气。进一步传感特性研究了不同操作温度(296 K到318 K)的传感器蒸汽的浓度(500 nmol摩尔(1),320μ摩尔摩尔(1))。传感器相关的吸附蒸汽在财政部表面建模根据朗谬尔吸附。参数估计的吸附固定浓度的丙酮和乙醇蒸汽在研究工作温度的范围内。响应时间常数与操作活化温度提供了阿伦尼乌斯丙酮和吸附的能量乙醇蒸气。活化能估计的吸附乙醇导致更快和更敏感响应的传感器对分析物。电浆nmol检测传感器丙酮和乙醇蒸汽摩尔(1)水平在房间温度随着动力学相关电浆反应的吸附所述分析物提供了新的见解现有的表面改性和报告电浆检测。

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