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Scalable Mesoporous Platinum Diselenide Nanosheet Synthesis in Water

机译:水中可扩展的介孔二硒化铂二硒化物纳米片的合成

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Newly discovered two-dimensional (2D) atomic crystals (nanosheet) of platinum diselenide (PtSe_(2)) have progressively attracted attention due to their expected high performance in catalysis, sensing, electronics, and optoelectronics applications. Further extraordinary physicochemical properties are expected if these nanosheets of platinum diselenide can possess mesoporosity as this may enable a high range of molecular adsorption, enhancing their functionalities in catalysis, batteries, supercapacitors, and sensing. Here, we present for the first time a straightforward, aqueous-phase synthetic strategy for the preparation of scalable nanosheets of platinum diselenide with mesoporous structure via a surfactant-templated self-assembly followed by a thermal annealing phase-transformation process. We used hexamethylenetetramine as a hexagonal honeycomb (sp~(2)–sp~(3) orbital) scaffold for assembling the Pt and Se organic complexes to form the nanosheet structure, which is stable, preserving the 2D structure and mesoporosity during a thermal annealing at 500 °C. Density functional theory analysis then indicated that the mesoporous nanosheets of platinum diselenide exhibit a high free-energy and large density of π electrons crossing the Fermi level, inferring a high-catalytic performance. This effortless strategy is currently being extended to the synthesis of other transition metal dichalcogenides, including the preparation of multi-metal atomic dichalcogenide nanosheets, for a wide variety of scientific and technological applications.
机译:二硒化铂(PtSe_(2))的新发现的二维(2D)原子晶体(纳米片)由于其在催化,传感,电子和光电应用中的预期高性能而逐渐受到关注。如果这些二硒化铂纳米片可以具有介孔性,则将有望获得更多非凡的理化性质,因为这可以实现大范围的分子吸附,从而增强其在催化,电池,超级电容器和传感方面的功能。在这里,我们首次提出了一种直接的水相合成策略,该方法可通过表面活性剂模板化的自组装,然后进行热退火相转化工艺,制备具有介孔结构的可扩展的二硒化铂二烯化物纳米片。我们使用六亚甲基四胺作为六角形蜂窝(sp〜(2)–sp〜(3)轨道)组装Pt和Se有机配合物以形成纳米片结构,该结构稳定,在热退火过程中保留2D结构和介孔性在500°C下。密度泛函理论分析表明,二硒化铂的介孔纳米片表现出较高的自由能和穿过费米能级的π电子的较大密度,从而具有较高的催化性能。目前,这种不费吹灰之力的策略正在扩展到其他过渡金属二卤化二锑化物的合成,包括用于多种科学和技术应用的多金属原子二卤化二锑纳米片的制备。

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