在连续流量条件下自组装
Liqun Guo1, Qiang Zhu1, Anna G Slater1
1Department of Chemistry and Materials Innovation Factory, University of Liverpool, Liverpool L69 7ZD, UK. Liqun.Guo2@liverpool.ac.uk.
概括
流化学增强了自组装,用于创建先进的材料. 这种方法可以更好地控制超分子结构的可扩展生产,选择性,结晶性和粒子特性.
科学领域:
- 材料科学 材料科学 材料科学
- 超分子化学 超分子化学
- 化学工程是化学工程的重要组成部分.
背景情况:
- 自组装对于层次的超分子结构和功能性材料来说是至关重要的.
- 与批量工艺相比,流体化学可以更好地控制自组装.
- 混合,温度和停留时间等关键参数在流量系统中被精确调节.
研究的目的:
- 审查最近在流量条件下自组装方面的进展.
- 突出流化学在超分子材料制造中的优势.
- 为了证明基于流的技术在先进材料科学中的价值.
主要方法:
- 关于流体化学中的自我组装的文献综述.
- 分析可扩展生产,选择性,结晶性和粒子形成方面的优势.
- 讨论精选的案例研究,包括作者的工作.
主要成果:
- 流化学使复杂分子架构的可扩展和可控合成成为可能.
- 加强对选择性,产品结晶性和颗粒大小/形态的控制.
- 流系统在制造超分子结构时的证明价值.
结论:
- 流化学是自组装过程中的强大工具.
- 它为生产先进的超分子材料提供了显著的优势.
- 基于流的技术代表了材料科学的一个有前途的方向.
相关概念视频
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During this process, the momentum of the fluid within the control volume remains constant over the time interval dt. By applying the...
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The mass flow rate is expressed as:
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A system is defined as a collection of unchanging contents, and the conservation of mass states that a system's mass is constant.
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