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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Identification of Individual Reaction Steps in Complex Radical Reactions Involving Gold Nanoparticles
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Identification of Individual Reaction Steps in Complex Radical Reactions Involving Gold Nanoparticles

机译:鉴定涉及金纳米颗粒的复杂自由基反应中的个体反应步骤

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A triple-jump model is invoked to help identify individual reaction steps in complex chemical reactions involving radical reactants in the presence of gold nanoparticles. The model consists of three sequential reaction phases: production of radicals, stabilization of radicals, and conversion from radical intermediates to final products. Isolated reaction phases were studied with electron paramagnetic resonance spectroscopy. As examples of the model, we investigated the spin trapping reaction with BMPO and the hydroxylation of 3-CCA, and the results supported the model. For X-ray irradiation of gold nanoparticle aqueous solutions, hydroxyl radicals were found to be scavenged by nanoparticles in the first phase. The stabilization phase was largely unaffected by gold nanoparticles, whereas conversion of radical intermediates was catalyzed. Such a step-wise model is thus proven useful for determining the exact catalytic step in the presence of nanoparticle catalysts in complex reactions such as DNA strand breaks, polymerization and hydroxylation that are important to many fields including X-ray nanochemistry.
机译:调用三跳模型以帮助识别涉及在金纳米颗粒存在下涉及自由基反应物的复杂化学反应中的个体反应步骤。该模型由三个顺序反应阶段组成:生产自由基,自由基稳定,并从激进的中间体转化为最终产品。用电子顺磁共振光谱研究分离的反应相。作为模型的实例,我们研究了与BMPO的旋转诱捕反应和3-CCA的羟基化,结果支持该模型。对于金纳米粒子水溶液的X射线照射,发现羟基自由基通过第一阶段的纳米颗粒清除。稳定阶段大大不受金纳米颗粒的影响,而自由基中间体的转化催化。因此,已经证明了这种步骤模型,可用于在纳米颗粒催化剂存在下在复杂的反应中确定纳米颗粒催化剂的确切催化步骤,例如DNA链断裂,聚合和羟基化对包括X射线纳米化学的许多领域重要的。

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