首页> 外文期刊>Journal of the American Chemical Society >Comparative Gas Sensing In Cobalt, Nickel, Copper, Zinc, And Metal-free Phthalocyanine Chemiresistors
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Comparative Gas Sensing In Cobalt, Nickel, Copper, Zinc, And Metal-free Phthalocyanine Chemiresistors

机译:钴,镍,铜,锌和无金属酞菁化学传感器中的比较气敏

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摘要

The sensitivities of metallophthalocyanine (MPcs: M = Co, Ni, Cu, Zn, and H_2) chemiresistors to vapor phase electron donors were examined using 50 nm MPc films deposited on interdigitated electrodes. Sensor responses were measured as changes in current at constant voltage. Analytes were chosen to span a broad range of Lewis base and hydrogen bond base strengths. The MPc sensor responses were correlated exponentially with binding enthalpy. These exponential fits were consistent with the van't Hoff equation and standard free energy relationships. Sensor recovery times were found to depend exponentially on binding enthalpy, in agreement with the Arrhenius equation. Relative sensitivities of all MPcs were compared via two-way ANOVA analysis. Array response patterns were differentiated via linear discriminant analysis, and analyte identification was achieved over a range of concentrations with 95.1% classification accuracy for the strong binding analytes. The ability to distinguish among different analytes, regardless of their concentration, through normalization of the responses to a reference sensor is particularly noteworthy.
机译:使用在交叉指状电极上沉积的50 nm MPc膜检查了金属酞菁(MPcs:M = Co,Ni,Cu,Zn和H_2)化学气相敏电阻对气相电子给体的敏感性。传感器响应被测量为恒定电压下电流的变化。选择的分析物应具有广泛的路易斯碱和氢键碱强度范围。 MPc传感器响应与结合焓呈指数相关。这些指数拟合与范霍夫方程和标准自由能关系一致。发现传感器的恢复时间与结合焓成指数关系,与Arrhenius方程一致。通过双向方差分析分析比较所有MPcs的相对灵敏度。通过线性判别分析来区分阵列响应模式,并在强浓度分析物的浓度范围内以95.1%的分类精度实现分析物鉴定。通过对参考传感器的响应进行归一化来区分不同分析物(无论其浓度如何)的能力尤其值得注意。

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