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Metallic versus Semiconducting SWCNT Chemiresistors: A Case for Separated SWCNTs Wrapped by a Metallosupramolecular Polymer

机译:金属与半导体SWCNT Chemiresistors:一种由金属分子聚合物包裹的分离的SWCNT的情况

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As-synthesized single-walled carbon nanotubes (SWCNTs) are a mixture of metallic and semiconducting tubes, and separation is essential to improve the performances of SWCNT-based electric devices. Our chemical sensor monitors the conductivity of an SWCNT network, wherein each tube is wrapped by an insulating metallosupramolecular polymer (MSP). Vapors of strong electrophiles such as diethyl chlorophosphate (DECP), a nerve agent simulant, can trigger the disassembly of MSPs, resulting in conductive SWCNT pathways. Herein, we report that separated SWCNTs have a large impact on the sensitivity and selectivity of chemical sensors. Semiconducting SWCNT (S-SWCNT) sensors are the most sensitive to DECP (up to 10000% increase in conductivity). By contrast, the responses of metallic SWCNT (M-SWCNT) sensors were smaller but less susceptible to interfering signals. For saturated water vapor, increasing and decreasing conductivities were observed for S- and M-SWCNT sensors, respectively. Mixtures of M- and S-SWCNTs revealed reduced responses to saturated water vapor as a result of canceling effects. Our results reveal that S- and M-SWCNTs compensate sensitivity and selectivity, and the combined use of separated SWCNTs, either in arrays or in single sensors, offers advantages in sensing systems.
机译:合成的单壁碳纳米管(SWCNTS)是金属和半导体管的混合物,并且分离对于改善基于SWCNT的电气装置的性能是必不可少的。我们的化学传感器监测SWCNT网络的电导率,其中每个管通过绝缘金属囊分子聚合物(MSP)包裹。诸如氯磷酸二乙基磷酸二乙基磷酸(DECP),神经剂模拟剂的蒸气可以触发MSP的拆卸,导致导电SWCNT途径。在此,我们报告说,分离的SWCNT对化学传感器的灵敏度和选择性具有很大影响。半导体SWCNT(S-SWCNT)传感器对DECP最敏感(导电性增加高达10000%)。相比之下,金属SWCNT(M-SWCNT)传感器的响应较小但不易受干扰信号的影响。对于饱和水蒸气,分别观察到S-和M-SWCNT传感器的增加和降低的导电性。 M-和S-SWCNTS的混合物显示出由于取消效应而对饱和水蒸气的响应降低。我们的研究结果表明,S-和M-SWCNTS补偿了灵敏度和选择性,以及在阵列或单个传感器中的分离的SWCNT的结合使用,可在传感系统中提供优势。

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