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Analyte chemisorption and sensing on n- and p-channel copper phthalocyanine thin-film transistors

机译:n通道和p通道铜酞菁薄膜晶体管对分析物的化学吸附和传感

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摘要

Chemical sensing properties of phthalocyanine thin-film transistors have been investigated using nearly identical n- and p-channel devices. P-type copper phthalocyanine (CuPc) has been modified with fluorine groups to convert the charge carriers from holes to electrons. The sensor responses to the tight binding analyte dimethyl methylphosphonate (DMMP) and weak binding analyte methanol (MeOH) were compared in air and N_2. The results suggest that the sensor response involves counterdoping of pre-adsorbed oxygen (O_2). A linear dependence of chemical response to DMMP concentration was observed in both n- and p- type devices. For DMMP, there is a factor of 2.5 difference in the chemical sensitivity between n- and p-channel CuPc thin-film transistors, even though it has similar binding strength to n- and p-type CuPc molecules as indicated by the desorption times. The effect is attributed to the difference in the analyte perturbation of electron and hole trap energies in n- and p-type materials.
机译:酞菁薄膜晶体管的化学传感特性已使用几乎相同的n沟道和p沟道器件进行了研究。 P型铜酞菁(CuPc)已用氟基团改性,可将电荷载流子从空穴转换为电子。在空气和N_2中比较了传感器对紧密结合分析物甲基膦酸二甲酯(DMMP)和弱结合分析物甲醇(MeOH)的响应。结果表明,传感器响应涉及预吸附氧(O_2)的反掺杂。在n型和p型器件中均观察到化学反应对DMMP浓度的线性依赖性。对于DMMP,即使解吸时间表明它与n型和p型CuPc分子具有相似的结合强度,n沟道和p沟道CuPc薄膜晶体管之间的化学敏感性相差2.5倍。该影响归因于n型和p型材料中电子和空穴陷阱能的分析物扰动的差异。

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