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DNA-decorated carbon nanotubes for chemical sensing

机译:DNA修饰的碳纳米管用于化学传感

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We demonstrate a versatile class of nanoscale chemical sensors based on single-stranded DNA (ssDNA) for chemical recognition and single-walled carbon nanotube field effect transistors (SWNT FETs) for electronic read-out. SWNT FETs with a nanoscale coating of ssDNA respond to vapours that cause no detectable conductivity change in bare devices. The gases tested are methanol, trimethylamine, propionic acid, dimethylmethylphosphonate and dinitrotoluene. Sensor responses differ in sign and magnitude for different gases and can be tuned by choice of the ssDNA base sequence. Sensors respond and recover rapidly (seconds), and the sensor surface is self-regenerating. Preliminary results of all-atom molecular dynamics simulations are consistent with experiment.
机译:我们展示了基于单链DNA(ssDNA)进行化学识别和基于单壁碳纳米管场效应晶体管(SWNT FET)进行电子读出的通用类纳米级化学传感器。带有ssDNA纳米涂层的SWNT FET对蒸汽产生响应,这些蒸汽在裸设备中不会引起可检测的电导率变化。测试的气体是甲醇,三甲胺,丙酸,二甲基甲基膦酸酯和二硝基甲苯。对于不同的气体,传感器的响应在符号和强度上都不同,并且可以通过选择ssDNA碱基序列进行调整。传感器响应并快速恢复(秒),并且传感器表面正在自我再生。全原子分子动力学模拟的初步结果与实验一致。

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