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Large-scale self-assembly of uniform submicron silver sulfide material driven by precise pressure control

机译:通过精确的压力控制驱动的均匀亚微米硫化银材料的大规模自组装

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The controllable self-assembly of nanosized building blocks into larger specific structures can provide an efficient method of synthesizing novel materials with excellent properties. The self-assembly of nanocrystals by assisted means is becoming an extremely active area of research, because it provides a method of producing large-scale advanced functional materials with potential applications in the areas of energy, electronics, optics, and biologics. In this study, we applied an efficient strategy, namely, the use of 'pressure control' to the assembly of silver sulfide (Ag2S) nanospheres. with a diameter of approximately 33 nm into large-scale, uniform Ag2S sub-microspheres with a size of about 0.33 mu m. More importantly, this strategy realizes the online control of the overall reaction system, including the pressure, reaction time, and temperature, and could also be used to easily fabricate other functional materials on an industrial scale. Moreover, the thermodynamics and kinetics parameters for the thermal decomposition of silver diethyldithiocarbamate (Ag(DDTC)) are also investigated to explore the formation mechanism of the Ag2S nanosized building blocks which can be assembled into uniform sub-micron scale architecture. As a method of producing sub-micron Ag2S particles by means of the pressure-controlled self-assembly of nanoparticles, we foresee this strategy being an efficient and universally applicable option for constructing other new building blocks and assembling novel and large functional micromaterials on an industrial scale.
机译:纳米结构块的可控自组装成较大的特定结构可以提供一种合成具有优异性能的新型材料的有效方法。通过辅助手段的纳米晶体的自组装正在成为一个极其活跃的研究领域,因为它提供了一种生产大规模高级功能材料的方法,其具有能量,电子,光学和生物学领域的潜在应用。在这项研究中,我们应用了有效的策略,即使用“压力控制”到硫化银(Ag2S)纳米球的组装。直径为大约33nm的大规模,均匀的Ag2s亚微球,尺寸为约0.33μm。更重要的是,该策略实现了对整个反应系统的在线控制,包括压力,反应时间和温度,并且也可用于容易地制造在工业规模上的其他功能材料。此外,还研究了用于银二乙基二硫代氨基甲酰胺的热分解的热力学和动力学参数(Ag(DDTC)),以探讨Ag2s纳米结构块的形成机制,其可以组装成均匀的亚微米尺度架构。作为通过纳米颗粒的压力控制的自组装制备亚微米Ag2S颗粒的方法,我们预见了该策略是一种高效且普遍适用的选择,用于构建工业上的其他新建筑物和组装新颖和大型功能性微材料规模。

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