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| 1 | An Overview of Carbon Nanotubes and Graphene for Biosensing Applications显示文摘With the development of carbon nanomaterials in recent years, there has been an explosion of interests in using carbon nanotubes(CNTs) and graphene for developing new biosensors. It is believed that employing CNTs and graphene as sensor components can make sensors more reliable, accurate, and fast due to their remarkable properties. Depending on the types of target molecular, different strategies can be applied to design sensor device. This review article summarized the important progress in developing CNT-and graphene-based electrochemical biosensors, field-effect transistor biosensors, and optical biosensors. Although CNTs and graphene have led to some groundbreaking discoveries, challenges are still remained and the state-of-the-art sensors are far from a practical application. As a conclusion, future effort has to be made through an interdisciplinary platform, including materials science, biology, and electric engineering. | Zanzan Zhu | 2017 | Nano-Micro Letters2017,9,3: | 6 |
| 2 | 石墨烯场效应晶体管生物传感器在医学检测中的研究进展显示文摘近年来,将纳米材料石墨烯与电子元件场效应晶体管整合构建生物传感器检测生物分子越来越受到关注,这主要得益于石墨烯场效应晶体管具备以下优点,如灵敏度高和特异度好、分析速度快、免标记、廉价、能够微型化和一体化等。文章概述了石墨烯场效应晶体管结构及工作原理,石墨烯的制备及功能化方法,石墨烯场效应晶体管在医学检测中的运用。 | 郑超 卢忠心 | 2019 | 国际检验医学杂志2019,40,3: | 2 |
| 3 | Graphene oxide and molecular beacons-based multiplexed DNA detection by synchronous fluorescence analysis显示文摘 | | 2013 | Science China(Physics,Mechanics & Astronomy)2013,56,3: | 2 |
| 4 | Physical properties and device applications of graphene oxide显示文摘Graphene oxide(GO),the functionalized graphene with oxygenated groups(mainly epoxy and hydroxyl),has attracted resurgent interests in the past decade owing to its large surface area,superior physical and chemical properties,and easy composition with other materials via surface functional groups.Usually,GO is used as an important raw material for mass production of graphene via reduction.However,under different conditions,the coverage,types,and arrangements of oxygen-containing groups in GO can be varied,which give rise to excellent and controllable physical properties,such as tunable electronic and mechanical properties depending closely on oxidation degree,suppressed thermal conductivity,optical transparency and fluorescence,and nonlinear optical properties.Based on these outstanding properties,many electronic,optical,optoelectronic,and thermoelectric devices with high performance can be achieved on the basis of GO.Here we present a comprehensive review on recent progress of GO,focusing on the atomic structures,fundamental physical properties,and related device applications,including transparent and flexible conductors,field-effect transistors,electrical and optical sensors,fluorescence quenchers,optical limiters and absorbers,surface enhanced Raman scattering detectors,solar cells,light-emitting diodes,and thermal rectifiers. | Xiao-Ming Huang Li-Zhao Liu Si Zhou Ji-Jun Zhao | 2020 | Frontiers of physics2020,15,3: | 0 |
| 5 | 基于工艺选择性的硅纳米线及其表面生物组装的可控批量制造技术及其在传感器的应用显示文摘针对硅纳米线及其在生物、医学、环境、反恐应用中生物检测的制造需求,通过充分利用硅材料本身的特性,发展传统光刻、腐蚀工艺中的硅纳米线精细控制技术,研究硅纳米线传感界面上有序组装多种生物功能探针(包括蛋白质探针和基因探针)的制造方法,提出一致性良好的硅纳米线的自上而下批量制造方法及其表面生物识别和捕获性能的精确控制制造技术,为高灵敏度、高选择性的硅纳米线生物传感器件的制造及批量化奠定坚实的技术基础,并为基于硅纳米线及相关生物组装的跨尺度制造提供可借鉴的新原理和新方法. | 王跃林 李铁 高安然 鲁娜 | 2015 | 中国科学:技术科学2015,45,1: | 0 |
| 6 | 双色荧光定量检测大米中的汞显示文摘利用两条部分互补的富含胸腺嘧啶(T碱基)的单链核酸,结合氧化石墨烯及核酸染料SYBR GreenⅠ,采用同步荧光分析法,建立一种高灵敏度、高选择性的汞离子(Hg2+)双色荧光定量检测方法。在优化条件下,Hg2+浓度在5×10-10~500×10-10 mol/L之间时,SYBR GreenⅠ及Carboxy-X-rhodamine(ROX)总的荧光强度(△IT)与Hg2+浓度(C)之间具有良好的线性关系,其拟合的回归方程为△IT=2.121 3C+10.536 0,方法检出限(3σ)为2×10-10 mol/L。该方法操作简单、检测速度快、选择性好、灵敏度高、重复性好、检出限低。将该方法应用于大米中汞的检测,获得了满意的结果。 | 翟琨 王联芝 向东山 | 2015 | 食品科学2015,36,2: | 0 |