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Chemical Reversibility and Stable Low-Potential NADH Detection with Nonconventional Conducting Polymer Nanotubule Modified Glassy Carbon Electrodes

机译:非常规导电聚合物纳米管修饰的玻碳电极的化学可逆性和稳定的低电位NADH检测

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Studies of the oxidation of β-nicotinamide adenine dinucleotide (NADH) at glassy carbon (GCEs) electrode surfaces, modified with nonconventional conducting polymer nanotubules, are reported. In contrast to the situation with conventional carbon electrodes, chemical reversibility of the NADH oxidation reaction was achieved by means of poly(1,2-diaminobenzene) conducting nanotubule coatings. A ΔE_(p) of 425 mV (vs Ag/AgCl; pH 7.0) was observed. The NADH amperometric response of the conducting nanotubule modified GCEs was shown to be extremely stable, with 98% of the initial response remaining after 48 h of stirring in the presence of 1×10~(-4) M NADH solutions (compared to 14% at the poly(1,2-diaminobenzene) modified GCEs). The nonconventional conducting polymer nanotubule-coated electrodes, when tested in amperometric mode for NADH electrochemical oxidation at an applied potential of 450 mV, showed a sensitivity of 99 nA/mM, an operational stability for 2 days, a storage stability of 2 weeks at 4℃, a linearity from 5×10~(-5) to 1×10~(-3) M, and good NADH chemical reversibility, all of which make them useful tools for dehydrogenase enzyme probe assembly.
机译:报道了用非常规导电聚合物纳米管改性的玻碳(GCE)电极表面β-烟酰胺腺嘌呤二核苷酸(NADH)氧化的研究。与常规碳电极的情况相比,NADH氧化反应的化学可逆性是通过聚(1,2-二氨基苯)导电纳米管涂层实现的。观察到425 mV的ΔE_(p)(vs Ag / AgCl; pH 7.0)。导电纳米管修饰的GCE的NADH安培响应显示非常稳定,在1×10〜(-4)M NADH溶液中搅拌48小时后仍保留了98%的初始响应(相比之下,只有14%在聚(1,2-二氨基苯)修饰的GCE上)。当在450 mV的施加电势下以安培模式对NADH电化学氧化进行测试时,非常规导电聚合物纳米管涂覆的电极显示出99 nA / mM的灵敏度,2天的操作稳定性,4周的2周的存储稳定性℃,从5×10〜(-5)到1×10〜(-3)M的线性,以及良好的NADH化学可逆性,所有这些使其成为脱氢酶探针组装的有用工具。

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