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Shape selection through epitaxy of supported platinum nanocrystals

机译:形状选择通过外延的支持铂纳米晶体

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Supported nanocrystals of original shapes are highly desirable for the development of optimized catalysts; however, conventional methods for the preparation of supported catalysts do not allow shape control. In this work, we have synthesized concave platinum nanocubes exposing {110} crystallographic facets at 20 degrees C. In the presence of a crystallographically oriented Pt(111) support in the reaction medium, the concave nanocubes grow epitaxially on the support, producing macroscopic nanostructured surfaces. Higher reaction temperature produces a mixture of different nanostructures in solution; however, only the nanostructures growing along the 111 direction are obtained on the Pt(111) support. Therefore, the oriented surface acts as a template for a selective immobilization of specific nanostructures out of a mixture, which can be regarded as an epitaxial resolution of an inhomogeneous mixture of nanocrystals. Thus, a judicious choice of the support crystallographic orientation may allow the isolation of original nanostructures that cannot be obtained in a pure form.
机译:支持纳米晶体的原始形状高度发展的理想的优化催化剂;准备支持的催化剂不允许形状控制。凹铂nanocubes暴露{110}在20度c .晶体方面面向结晶学的在反应介质,Pt(111)支持凹nanocubes上外延生长支持,产生宏观纳米表面。混合不同纳米结构的解决方案;然而,只有纳米结构生长111年工党方向得到(111)支持。选择性固定的模板特定的纳米结构的混合物,这可以被视为一个外延的决议不均匀的混合纳米晶体。明智的选择支持晶体取向可能允许原始的隔离在纯纳米结构无法获得的形式。

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