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PeryleneDiimide as a Precise Graphene-like SuperoxideDismutase Mimetic

机译:苝二酰亚胺作为精确的类石墨烯超氧化物歧化酶模拟

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摘要

Here we show that the active portion of a graphitic nanoparticle can be mimicked by a perylene diimide (PDI) to explain the otherwise elusive biological and electrocatalytic activity of the nanoparticle construct. Development of molecular analogues that mimic the antioxidant properties of oxidized graphenes, in this case the poly(ethylene glycolated) hydrophilic carbon clusters (PEG–HCCs), will afford important insights into the highly efficient activity of PEG–HCCs and their graphitic analogues. PEGylated perylene diimides (PEGn–PDI) serve as well-defined molecular analogues of PEG–HCCs and oxidized graphenes in general, and their antioxidant and superoxide dismutase-like (SOD-like) properties were studied. PEGn–PDIs have two reversible reduction peaks, which are more positive than the oxidation peak of superoxide (O2•–). This is similar to the reduction peak of the HCCs. Thus, as with PEG–HCCs, PEGn–PDIs are also strong single-electron oxidants of O2•–. Furthermore, reduced PEGn–PDI, PEGn–PDI•–, in the presenceof protons, was shown to reduce O2•– to H2O2 to complete the catalytic cycle inthis SOD analogue. The kinetics of the conversion of O2•– to O2 and H2O2 by PEG8–PDI was measured using freeze-trapEPR experiments to provide a turnover number of 133 s–1; the similarity in kinetics further supports that PEG8–PDI is a true SOD mimetic. Finally, PDIs can be used as catalystsin the electrochemical oxygen reduction reaction in water, which proceedsby a two-electron process with the production of H2O2, mimicking graphene oxide nanoparticles that are otherwisedifficult to study spectroscopically.
机译:在这里,我们表明,石墨纳米颗粒的活性部分可以被a二酰亚胺(PDI)模仿,以解释纳米颗粒构建体否则难以捉摸的生物学和电催化活性。模仿氧化石墨烯的抗氧化特性的分子类似物的开发,在这种情况下为聚(乙二醇化)亲水性碳簇(PEG-HCC),将为深入了解PEG-HCC及其石墨类似物的高效活性提供重要的见识。聚乙二醇化per二酰亚胺(PEGn-PDI)通常用作PEG-HCC和氧化石墨烯的明确分子类似物,并研究了它们的抗氧化剂和超氧化物歧化酶样(SOD样)特性。 PEGn-PDI具有两个可逆的还原峰,它们比超氧化物的氧化峰(O2 •-)更为正。这类似于HCC的还原峰。因此,与PEG–HCC一样,PEGn–PDI也是O2 •-的强单电子氧化剂。此外,在存在下,PEGn–PDI,PEGn–PDI •– 减少的质子表明可以将O2 •– 还原为H2O2,从而完成这种SOD类似物。使用冷冻捕集器测定了PEG8-PDI将O2 •– 转化为O2和H2O2的动力学EPR实验可提供133 s –1 的周转次数;动力学上的相似性进一步支持PEG8-PDI是真正的SOD模拟物。最后,PDI可以用作催化剂在水中的电化学氧还原反应中通过两电子过程产生H 2 O 2 来模仿氧化石墨烯纳米颗粒很难用光谱学的方法研究。

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