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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Nitrogen-doped graphene oxide as a catalyst for the oxidation of Rhodamine B by hydrogen peroxide: application to a sensitive fluorometric assay for hydrogen peroxide
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Nitrogen-doped graphene oxide as a catalyst for the oxidation of Rhodamine B by hydrogen peroxide: application to a sensitive fluorometric assay for hydrogen peroxide

机译:氮掺杂的石墨烯氧化物作为氢氧化氢氧化氢氧化氢化物的催化剂:应用于过氧化氢的敏感荧光测定

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摘要

The authors report that nitrogen-doped graphene oxide (NGO) catalyzes the oxidative decomposition of the fluorophore Rhodamine B (RhB) by hydrogen peroxide. The catalytic decomposition of hydrogen peroxide yields free hydroxyl radicals that destroy RhB so that the intensity of the yellow fluorescence is reduced. Nitrogen doping enhances the electronic and optical properties and surface chemical reactivities of GO such as widening of bandgap, increase in conductivity, enhanced quenching and adsorbing capabilities etc. The catalytic properties of NGO are attributed to its large specific surface and high electron affinity of nitrogen atoms. The chemical and structural properties of GO and NGO were characterized by XRD, FTIR, SEM, UV-visible and Raman spectroscopies. The method was optimized by varying the concentration of RhB, nitrogen dopant and hydrogen peroxide. The fluorescent probe, best operated at excitation/emission wavelengths of 554/577 nm, allows hydrogen peroxide to be determined in concentrations as low as 94 pM with a linear range spanning from 1 nM to 1 mu M.
机译:作者报告说氮掺杂的石墨烯氧化物(NGO)催化荧光团罗丹明B(RHB)的氧化分解通过过氧化氢。过氧化氢的催化分解产生的游离羟基自由基破坏RHB,从而减少了黄色荧光的强度。氮掺杂增强了诸如扩大带隙的电子和光学性能和表面化学反应,导电性增加,增强的猝灭和吸附能力等。NGO的催化性质归因于其大的比表面和氮原子的高电子亲和力。 。 Go和Ngo的化学和结构性质的特征是XRD,FTIR,SEM,UV可见和拉曼光谱。通过改变RHB,氮掺杂剂和过氧化氢的浓度来优化该方法。在554/577nm的激发/发射波长下最佳操作的荧光探针允许过氧化氢以低至94μm的浓度确定,其线性范围从1nm到1μm。

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