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Micro-Fluidic and Lab-on-a-Chip Technology,e, but also access a range of unique characteristics, which are not achievable in conventional macro-scale systems. This chapter will discuss the unique properties of miniaturised systems based on micro-fluidic and Lab-on-a-Chip technology and consider how these may influence the overall performance小教堂 发表于 2025-3-22 02:36:37
Microreactors as New Tools for Drug Discovery and Development,me than is achievable with large-scale batch reactors. With monitoring of output flow, microreactors can be adjusted exquisitely to give enhanced and inherently safer protocols. Bulk production can be achieved through long run times or parallel reactors. However, microreactors can also be used advan字谜游戏 发表于 2025-3-22 05:05:14
Microchemical Systems for Discovery and Development,iphase catalytic systems to microsystems for multistep chemical synthesis. The latter systems involve extraction and gas–liquid separation processes designed to take advantage of the dominance of surface tension effects in microfluidic devices. Integration of physical sensors (e.g., for pressure, te分散 发表于 2025-3-22 10:32:35
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An Integrated Approach to Developing Chemoenzymatic Processes at the Industrial Scale,protein expression, high-throughput screening, and enzyme evolution technologies. To truly impact chemical synthesis at the industrial scale, biotransformations and chemical research and development must be integrated to develop cost-effective and environmentally friendly solutions for drug manufact刚开始 发表于 2025-3-22 23:40:19
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Solid-Phase Supported Synthesis: A Possibility for Rapid Scale-Up of Chemical Reactions,ed hydroxamic acid derivative as examples. These compounds were obtained through combinatorial chemistry and solution-phase synthesis was used in parallel to provide a comparison. By applying highly loaded polystyrene-derived resins as the solid support, a good ratio between the product and the star