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Low density magnetic silicate-nickel alloy composite hollow structures: seed induced direct assembly fabrication and catalytic properties

机译:低密度磁性硅酸硅镍合金复合空心结构:种子诱导直接组装制造和催化性能

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An efficient seed induced direct assembly route is designed for the controlled synthesis of hollow microsphere supported catalysts (HMSCs) with nickel alloy as the active material. The inherent magnetic response of nickel alloy endows HMSCs magnetic separability, and the hollow interior of the support opens a new avenue for self-floating separation. It is found that the introduction of P and Co contributes largely to the improvement of the catalytic performance of the products, which may attributed to synergistic effects and electron transfer. Moreover, the loading amounts of alloy nanoparticles can be easily tailored through properly monitoring the reaction conditions. With the optimized loading of 2.68 wt%, the k _(N) of HMSC–NiCoP-2.68 wt% reaches 14.0 s ~(?1) g ~(?1) for the catalytic reduction of p -nitrophenol (4-NP), which is higher than commercial 5 wt% Pd/C of 11.6 s ~(?1) g ~(?1) under the same conditions. This work provides additional insights into preparation and property control of an easily separable supported non-noble metal catalyst, which holds potential to be extended to the preparation and property control of other metal nanocatalysts on various supports.
机译:设计了高效的种子诱导的直接组装途径,用于控制中空微球负载催化剂(HMSCs)的控制合成作为活性材料。镍合金的固有磁响应赋予HMSCS磁性分离性,并且支撑件的中空内部打开了一种新的自浮间分离途径。结果发现,P和CO的引入主要有助于提高产品的催化性能,这可能归因于协同效应和电子转移。此外,通过适当监测反应条件,可以容易地定制合金纳米颗粒的装载量。随着2.68wt%的优化负载,HMSC-Nicop-2.68wt%的K _(n)达到14.0 s〜(α1)g〜(α1),用于催化还原p-硝基苯酚(4-np) ,在相同条件下高于11.6 s〜(α1)g〜(α1)的商业5wt%pd / c。这项工作提供了额外的见解,进入易于可分离的支撑的非贵金属催化剂的制备和性能控制,其具有延伸到其他金属纳米催化剂对各种支撑件的制备和性能控制的可能性。

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