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Electrochemical Reduction of Manganese Mediated by Carbon Nanotubes/Li~+ Modified Glassy Carbon Electrodes

机译:碳纳米管/ Li〜+修饰的玻碳电极介导的锰的电化学还原

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Glassy carbon electrodes (GCE) were modified with carbon nanotubes (CNT) with and without Li~+ dopant by a mechanical attachment method. These modified working electrodes, abbreviated as CNT/Li~+/GCE and CNT/GCE, produced two reduction peaks of Mn(II) at +0.8 V and +0.1 V vs Ag/AgCl in 0.1 M KC1, which appeared irreversible during cyclic voltammetry. The sensing characteristics of the modified film electrodes demonstrated in this study were composed of: (i) a wide working potential window ranging from +1.8 V to -1.8 V (depending on different scan rates, pH, concentration and temperature); (ii) a wide applicable pH range (from at least 2-10); (iii) a wide applicable temperature range from 5-90 °C; (iv) a current response that is stable and fast with a satisfactory and reproducible linear voltammetric and amperometric response to various analytes; (v) a good reproducibility and recovery rate in seawater and blood; (vi) interfering metal ions such as Hg~(2+), Cd~(2+) and Cu~(2+) appeared to pose positive interference on the reduction peaks of Mn~(2+). The reduction current of Mn~(2+) using CNT/Li~+/GCE was largely influenced by concentration, pH, temperature and scan rate. Based on the calibration curve obtained, a linear graph of up to 1 mM Mn(II), with an impressive sensitivity response of 66.7 μA/mM, was obtained. Based on chronoamperometry, a diffusion coefficient for Mn~(2+) of 1.53 x 10~(-7) cm~2/s was determined.
机译:玻碳电极(GCE)通过碳纳米管(CNT)在有或没有Li〜+掺杂的情况下通过机械连接方法进行了修饰。这些修饰的工作电极(分别缩写为CNT / Li〜+ / GCE和CNT / GCE)在0.1M KC1中相对于Ag / AgCl在+0.8 V和+0.1 V处产生了Mn(II)的两个还原峰,在循环中似乎是不可逆的伏安法。这项研究中证明的改性膜电极的感测特性包括:(i)宽的工作电势范围为+1.8 V至-1.8 V(取决于不同的扫描速率,pH,浓度和温度); (ii)适用的pH范围很广(至少2-10); (iii)适用温度范围是5-90°C; (iv)稳定和快速的电流响应,并且对各种分析物具有令人满意的和可再现的线性伏安和安培响应; (v)在海水和血液中具有良好的再现性和回收率; (vi)诸如Hg〜(2 +),Cd〜(2+)和Cu〜(2+)等干扰金属离子似乎对Mn〜(2+)的还原峰产生正干扰。使用CNT / Li〜+ / GCE还原Mn〜(2+)的电流受浓度,pH,温度和扫描速率的影响很大。根据获得的校准曲线,获得了高达1 mM Mn(II)的线性图,其灵敏度响应高达66.7μA/ mM。基于计时电流法,测得Mn〜(2+)的扩散系数为1.53 x 10〜(-7)cm〜2 / s。

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