†Key Laboratory of Applied Surface and Colloid Chemistry of Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710119, People's Republic of China.
‡Key Laboratory of Applied Surface and Colloid Chemistry of Ministry of Education, School of Materials Science and Engineering, Shaanxi Normal University, Xi'an 710119, People's Republic of China.
ACS Appl Mater Interfaces. 2015 May 27;7(20):10718-26. doi: 10.1021/acsami.5b00155. Epub 2015 May 14.
Two low-cost, micropatterned, solution-gated field effect transistors (modified FET and unmodified FET) based on reduced graphene oxide (RGO) were developed and used for detection and discrimination of nucleoside triphosphates (NTPs). The modified FET was realized by simple deposition of a positively charged bis-pyrenyl derivative, py-diIM-py, onto the conducting RGO strips of the unmodified FET. The electrical properties and sensing behaviors of the as-prepared devices were studied comprehensively. Electrical transfer property tests revealed that both of the two FETs exhibit V-shaped ambipolar field effect behavior from p-type region to n-type region. Sensing performance studies demonstrated that modification of the native FET with py-diIM-py improves its sensing ability to NTPs-GTP and ATP in particular. The detection limit of GTP and ATP was as low as 400 nM, which is the lowest value for graphene-based electronic sensors reported so far. Furthermore, based on the cross-reactive responses of the two devices to NTPs, NTPs can be conveniently distinguished via combining use of the two devices. The enhancement of the modifier (py-diIM-py) to the sensing performance of the FET is tentatively attributed to its possible mediation role in sticking onto RGO strips and accumulating analytes by electrostatic association with the relevant species. Because they are sensitive and fast in response, simple and low-cost in preparation, and possibly useful in sensor-array fabrication, the developed sensors show great potential in real-life application.
两种基于还原氧化石墨烯(RGO)的低成本、微图案、溶液门控场效应晶体管(修饰 FET 和未修饰 FET)被开发出来,并用于检测和区分核苷三磷酸(NTPs)。修饰 FET 通过简单地将带正电荷的双芘基衍生物 py-diIM-py 沉积在未修饰 FET 的导电 RGO 条上而实现。全面研究了制备的器件的电特性和传感行为。电转移特性测试表明,两种 FET 都表现出从 p 型区到 n 型区的 V 形双极场效应行为。传感性能研究表明,用 py-diIM-py 修饰本征 FET 可提高其对 NTPs-GTP 和 ATP 的传感能力。GTP 和 ATP 的检测限低至 400 nM,这是迄今为止基于石墨烯的电子传感器报道的最低值。此外,基于两个器件对 NTPs 的交叉反应响应,可以方便地通过组合使用两个器件来区分 NTPs。修饰剂(py-diIM-py)对 FET 传感性能的增强,可能归因于其在与相关物质静电缔合时,通过附着在 RGO 条上和积累分析物,对其进行可能的介导作用。由于它们在响应速度、制备简单、成本低方面具有优势,并且可能有助于传感器阵列的制造,因此所开发的传感器在实际应用中具有很大的潜力。