Surface-Renewable AgNPs/CNT/rGO Nanocomposites as Bifunctional Impedimetric Sensors

来源 :Nano-Micro Letters | 被引量 : 0次 | 上传用户:www474033605
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
In this study, glassy carbon electrode modified by silver nanoparticles/carbon nanotube/reduced graphene oxide(AgNPs/CNT/rGO) composite has been utilized as a platform to immobilize cis-dioxomolybdenum(VI)–salicylaldehydehistidine(MoO_2/Sal-His). The modified electrode shows two reversible redox couples for MoO_2/Sal-His. Electrocatalytic oxidation of cysteine(CySH) and electrocatalytic reduction of iodate on the surface of the modified electrode were investigated with cyclic voltammetry and electrochemical impedance spectroscopy methods. The presence of MoO_2/SalHis on AgNPs/CNT/rGO shifted the catalytic current of iodate reduction to a more positive potential and the catalytic current of cysteine oxidation to a more negative potential. The change of interfacial charge transfer resistance(R_(ct))recorded by the modified electrode was monitored for sensitive quantitative detection of CySH and iodate. Moreover, the sensor has a good stability, and it can be renewed easily and repeatedly through a mechanical or electrochemical process. In this study, glassy carbon electrode modified by silver nanoparticles / carbon nanotube / reduced graphene oxide (AgNPs / CNT / rGO) composite has been utilized as a platform to immobilize cis-dioxomolybdenum (VI) -salicylaldehyde histidine (MoO 2 / Sal- His). The modified electrode shows two reversible redox couples for MoO 2 / Sal-His. Electrocatalytic oxidation of cysteine ​​(CySH) and electrocatalytic reduction of iodate on the surface of the modified electrode were investigated with cyclic voltammetry and electrochemical impedance spectroscopy methods. The presence of MoO 2 / SalHis on AgNPs / CNT / rGO shifted the catalytic current of iodate reduction to a more positive potential and the catalytic current of cysteine ​​oxidation to a more negative potential. The change of interfacial charge transfer resistance (R_ (ct)) recorded by the modified electrode was monitored for sensitive quantitative detection of CySH and iodate. Moreover, the sensor has a good stability, and it can be renewed easily and repeated ly through a mechanical or electrochemical process.
其他文献
2下一代光刻技术虽然光学光刻技术为微电子技术突飞猛进的发展立下了汗马功劳,创造了一次又一次的人间奇迹,然而目前集成电路特征尺寸也越来越接近物理极限。为开发研究新一
通过提高发射区的方块电阻和优化发射区的磷杂质浓度纵向分布,制备了性能优良的单晶硅太阳电池.I-V测量分析表明:高表面活性磷杂质浓度浅结发射区太阳电池短路电流密度、开路
随着计算机技术的不断发展,创新了传统文件处理及办公自动化技术,成为以复杂内、外部网及全球互联网为基础的现代计算机处理业务,随之计算机系统的连接能力也有了进一步的提高。在此背景下,网络连接安全问题也逐渐凸显出来,为了有效解决计算机网络安全问题,相关专家相继提出了多种神经元模型,具有重要作用的要数神经网络,其常常在计算机网络安全评价中使用。基于此,本文就以神经网络为基础,研究计算机网络安全评价仿真模型
For the first time, Mo nanoscrew was cultivated as a novel non-coinage-metal substrate for surface-enhanced Raman scattering(SERS). It was found that the nanosc
电信网、广播电视网和互联网的融合发展实现了三种网络的资源共享等服务。信息安全问题在三网融合过程中引起了广泛关注。基于信息安全的网络开销优化既要考虑到了信息的安全性又要考虑到了网络的传输性能等问题,有利于降低三网融合下的运营成本,提高信息传输质量。本文首先介绍了三网融合所面临的信息安全问题,总结了不同网络的特点,针对不同网络的特点提出基于信息安全的网络开销优化方法与发展策略。
首先论述了Al GaN/GaN高电子迁移率晶体管(HEMT)在微波大功率领域的应用优势和潜力;其次,介绍并分析了影响Al GaN/GaN HEMT性能的主要参数,分析表明要提高Al-GaN/GaN HEMT的
由于计算机网络的不断发展,人们在对于数据的处理的时候,对于数据的存储以及备份有越来越多的要求。现阶段随着网络技术的不断的发展,人们对于数据的同步备份的要求越来越高,云计
由于历史的原因 ,我国配电领域的技术创新能力曾经十分薄弱 ,构成了电力产业的“瓶颈”。自90年代中期以来 ,一批新兴的民营科技企业凭借自身的机制、人才、信息等方面的优势
采用场极板结终端技术提高LDMOS击穿电压,借助二维器件仿真器MEDICI软件对基于体硅CMOS工艺500V高压的n-LDMOS器件结构和主要掺杂参数进行优化,确定漂移区的掺杂浓度(ND)、结
2.3用户对主要产品水平的需求rn500kV电容式电压互感器要求准确度高,二次输出容量大,0.2级精度的产品输出容量达到250VA以上.不仅需要普通型产品,也需要能适应特殊环境条件的