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Artificial Active Nanoreactor with Nature-Inspired Sequential Catalytic Ability

机译:具有自然风格的顺序催化能力的人工活性纳米反应器

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This study is aimed at addressing the present challenge in tandem catalysis, where the sequential catalytic processes are often not compatible with each other and even engage in each other. The objective is met by reporting an artificial “active” nanoreactor capable of sequential catalytic ability. This nanoreactor is made of nature-inspired “active” compartments consisting of core-and-shell architectures. The “active” compartments allow the nanoreactor to catalytically separate the tandem processes from each other, avoiding the occurrence of mutual interferences. Unlike the use of reported nanoreactors and conventional bi-functional catalysts, the tandem catalysis at this nanoreactor involves neither the mutual competition nor the spatiotemporal mismatching between the tandem processes. This nanoreactor suggests a potential model for achieving sequential catalytic ability.
机译:这项研究旨在解决串联催化中的当前挑战,在串联催化中,顺序催化过程通常不彼此兼容,甚至相互参与。 通过报告具有顺序催化能力的人工“主动”纳米反应器来满足目标。 该纳米反应器由自然风格的“主动”室制成,由核心和壳体系结构组成。 “主动”室允许纳米反应器将串联过程彼此分离,从而避免了相互干扰的发生。 与报道的纳米反应器和常规双功能催化剂不同,该纳米反应器的串联催化既不涉及相互竞争,也不涉及串联过程之间的时空不匹配。 该纳米反应器提出了实现顺序催化能力的潜在模型。

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