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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Structured Assemblages of Single-Walled 3d Transition Metal Silicate Nanotubes as Precursors for Composition-Tailorable Catalysts
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Structured Assemblages of Single-Walled 3d Transition Metal Silicate Nanotubes as Precursors for Composition-Tailorable Catalysts

机译:单壁3d过渡金属硅酸盐纳米管作为结构可定制催化剂的前体的结构组合。

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摘要

Copper silicate has so far been the only transition metal silicate that can be synthesized into a single-walled nanotubular structure. In addition to making single-walled copper silicate nanotubes (CuSiNT) as hollow spherical or bundle-like assemblages, herein, we developed a general method to synthesize a series of new single-walled silicate nanotubes containing other 3d transition metal elements (M = Mn, Fe, Co, Ni, and Zn). After the controllable synthesis of CuSiNT, up to 80% of Cu in the CuSiNT can be replaced with dopant metals (M) through complex-assisted ion exchange, while the original tubular structure remains intact. These metal silicate nanotubes can serve as solid precursors for design-made nanocatalysts; enhanced catalytic performance has been demonstrated using CO2 hydrogenation as a model reaction.
机译:到目前为止,硅酸铜是唯一可以合成为单壁纳米管结构的过渡金属硅酸盐。除了将单壁硅酸铜纳米管(CuSiNT)制成空心球形或束状组件外,我们还开发了一种通用方法来合成一系列包含其他3d过渡金属元素的新单壁硅酸纳米管(M = Mn ,Fe,Co,Ni和Zn)。在可控制的CuSiNT合成后,CuSiNT中多达80%的Cu可以通过复杂辅助离子交换被掺杂金属(M)取代,而原始的管状结构仍保持完整。这些金属硅酸盐纳米管可以用作设计的纳米催化剂的固体前体。使用CO2加氢作为模型反应已证明了增强的催化性能。

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