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中空 MnO 纳米晶体的管状单层超晶格及其氧还原活性。

Tubular Monolayer Superlattices of Hollow MnO Nanocrystals and Their Oxygen Reduction Activity.

机构信息

Collaborative Innovation Center of Chemistry for Energy Materials, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Department of Chemistry, Fudan University , Shanghai 200433, China.

出版信息

J Am Chem Soc. 2017 Sep 6;139(35):12133-12136. doi: 10.1021/jacs.7b06587. Epub 2017 Aug 28.

Abstract

Self-assembled nanocrystal (NC) superlattices are emerging as an important class of materials with rationally modulated properties. Engineering the nanoscale structure of constituent building blocks as well as the mesoscale morphology of NC superlattices is a crucial step in widening their range of applications. Here, we report a template-assisted epitaxial assembly strategy, enabling growth of freestanding, carbon-coated tubular monolayer superlattices (TMSLs). Specifically, we design and construct TMSLs of hollow MnO NCs (h-MnO-TMSLs) by exploiting structural evolution of MnO NCs. The tubular superlattices obtained possess a number of unique and advantageous structural features unavailable in conventional NC superlattices, rendering them particularly attractive for energy conversion applications. We demonstrate this by employing h-MnO-TMSLs as electrocatalysts for oxygen reduction, the catalytic performance of which is comparable to that of state-of-the-art Pt/C catalysts and superior to that of most manganese oxide-based catalysts reported.

摘要

自组装纳米晶体(NC)超晶格作为一类具有合理调制性能的重要材料正在出现。工程化组成构建块的纳米尺度结构以及 NC 超晶格的介观形态是拓宽其应用范围的关键步骤。在这里,我们报告了一种模板辅助的外延组装策略,能够生长出独立的、碳涂层的管状单层超晶格(TMSL)。具体来说,我们通过利用 MnO NCs 的结构演化来设计和构建空心 MnO NCs(h-MnO-TMSLs)的管状超晶格。所获得的管状超晶格具有许多在传统 NC 超晶格中不可用的独特和有利的结构特征,这使得它们特别适合用于能量转换应用。我们通过将 h-MnO-TMSLs 用作氧还原的电催化剂来证明这一点,其催化性能可与最先进的 Pt/C 催化剂相媲美,优于大多数报道的基于氧化锰的催化剂。

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