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From Flasks to Applications: Combinatorial Chemistry and High-Throughput Synthesis of High-Performance Complex Nanomaterials using Automated Synthesis

机译:从烧瓶到应用:使用自动合成的高性能复杂纳米材料的组合化学和高通量合成

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Highly emissive nanoparticles are extremely attractive options for a variety of applications, including, but not limited to, solid state lighting, optoelectronics, and sensing. However, to utilize these and other nanoparticle materials on a commercially viable scale to meet demand, the design, synthesis, optimization, and scale up of the material must be extremely efficient and consistent across batches. It has been suggested that from development of design to optimized production, more than 100 reactions may need to be completed before the material can be used, which requires time and manpower. We present our Fully Automated Batch Reactor System (FABRS) which drastically cuts down on the time required for both materials discovery and optimization.
机译:高度发光纳米颗粒对于各种应用是极具吸引力的选择,包括但不限于固态照明,光电子和感测。然而,利用这些和其他纳米颗粒材料在商业上可行的规模上满足需求,设计,合成,优化和尺度的材料必须非常有效,跨批次一致。已经提出,从设计的开发到优化的生产中,在可以使用材料之前可能需要完成超过100个反应,这需要时间和人力。我们介绍了我们全自动批量反应堆系统(FABR),这对材料发现和优化所需的时间大幅下降。

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