首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Ultrathin Sheets of Metal or Metal Sulfide from Molecularly Thin Sheets of Metal Thiolates in Solution
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Ultrathin Sheets of Metal or Metal Sulfide from Molecularly Thin Sheets of Metal Thiolates in Solution

机译:从溶液中的金属硫醇盐分子薄片中超薄的金属或金属硫化物薄片

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摘要

Materials that exist as single molecule thick two-dimensional sheets are in great demand because they hold promise as precursors for synthesis of layered functional materials. We demonstrate that metal thiolates, that exist as lamellar assemblies in the neat state, can be disassembled into individual molecular sheets simply by dilution in apolar organic solvents and that these can form ultrathin metallic layers on substrates upon heat treatment. We establish the pathway to the disassembly of metal thiolates in solution using a combination of techniques, including X-ray diffraction, light scattering, FTIR, and TEM. Our results indicate that the lamellar structure of Pd-thiolates is preserved in toluene up to a concentration of 300% w/v and the average intersheet distance is unchanged. Interestingly, the dynamics of the Pd-thiolate sheets remain correlated even on diluting them up to 30% w/v, though the disorder within the lamellar stacks increases with a decrease in their coherence length. Finally, at dilutions less than about 5% w/v, individual sheets of these structures can be accessed that are isolated and directly observed using TEM. Heat treatment of the ultrathin films of metal thiolates deposited on appropriate substrates resulted in the formation of metal or metal sulfides with retention of sheetlike morphologies.
机译:存在作为单分子厚的二维片的材料的需求很大,因为它们有望作为合成层状功能材料的前体。我们证明了金属硫醇盐(以层状组件形式存在于纯净状态中)可以简单地通过在非极性有机溶剂中稀释而分解成单独的分子片,并且这些经过热处理可以在基材上形成超薄金属层。我们使用包括X射线衍射,光散射,FTIR和TEM在内的多种技术建立了溶液中金属硫醇盐分解的途径。我们的结果表明,Pd-硫醇盐的层状结构在甲苯中的浓度高达300%w / v时都保持不变,平均层间距离不变。有趣的是,尽管将片状叠层内的无序性随着其相干长度的减小而增加,但即使将其稀释至高达30%w / v,Pd-硫醇盐片的动力学仍保持相关性。最后,在小于约5%w / v的稀释度下,这些结构的单个薄片可以被分离出来,并使用TEM直接观察。热处理沉积在适当基材上的金属硫醇盐超薄膜,导致形成金属或金属硫化物,并保留了片状形态。

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