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相关概念视频

Crystal Growth: Principles of Crystallization01:25

Crystal Growth: Principles of Crystallization

4.6K
Crystallization is a phase transformation process in which crystals are precipitated from a supersaturated solution or formed from other sources. During crystallization, atoms or molecules arrange themselves into a well-defined, rigid crystal lattice to minimize energy.
Initiating crystallization involves manipulating the concentration of the solute and the temperature of the solution. Since crystal growth occurs when the ratio of concentration and solubility of the solute in the solvent...
4.6K
Recrystallization: Solid–Solution Equilibria01:10

Recrystallization: Solid–Solution Equilibria

2.0K
Recrystallization is a purification technique used to separate impurities from solid compounds. In this technique, no chemical reactions occur. Instead, it exploits physical properties only, specifically, the solubility differences between the desired compound and impurities, either at a single temperature or at different temperatures, and under other selected conditions. The solid-solution equilibrium (solubility equilibrium) of each component in the solution represents a binary phase...
2.0K
Precipitate Formation and Particle Size Control01:16

Precipitate Formation and Particle Size Control

5.0K
In precipitation gravimetry, the precipitating agent should react specifically or selectively with the analyte. While a specific reagent reacts with the analyte alone, a selective reagent can react with a limited number of chemical species.
The obtained precipitate should be either a pure substance of known composition or easily converted to one by a simple process, such as ignition or drying. In addition, the precipitate should be insoluble and easily filterable. In general, filterability...
5.0K

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相关实验视频

Updated: Jan 7, 2026

Growing Protein Crystals with Distinct Dimensions Using Automated Crystallization Coupled with In Situ Dynamic Light Scattering
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Growing Protein Crystals with Distinct Dimensions Using Automated Crystallization Coupled with In Situ Dynamic Light Scattering

Published on: August 14, 2018

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通过可编程播种进行3D可控结晶.

Guofeng Liu1,2, Pengcheng Xia3, Bokun Li2,4

  • 1School of Artificial Intelligence, Shaoxing Institute of Technology, Shaoxing, China.

Small (Weinheim an der Bergstrasse, Germany)
|December 31, 2025
PubMed
概括
此摘要是机器生成的。

研究人员开发了可编程播种,以控制三酸三水合物的3D结晶. 晶体成长垂直于播种模板,使新的制造技术和功能性材料成为可能.

关键词:
3D可控制的结晶 3D可控制的结晶可编程的播种方式沃罗诺伊图表的图表

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Improving the Success Rate of Protein Crystallization by Random Microseed Matrix Screening
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Derivatization of Protein Crystals with I3C using Random Microseed Matrix Screening
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科学领域:

  • 材料科学 材料科学 材料科学
  • 化学工程是化学工程的重要组成部分.
  • 晶体学 晶体学是指结晶学.

背景情况:

  • 结晶在制药,半导体和金中至关重要.
  • 控制3D结晶仍然是一个未经探索的研究领域.
  • 了解结晶原理是先进材料开发的关键.

研究的目的:

  • 开发一种用于3D可控结晶的新策略.
  • 调查结晶原理从受限到不受限制的空间.
  • 探索制造和功能性材料中的应用.

主要方法:

  • 使用超和酸三水合物进行可编程播种.
  • 在封闭的通道和不受限制的平面/3D空间中研究结晶.
  • 采用沃罗诺伊图来分析和预测晶体模式.

主要成果:

  • 道中的几何约束影响了晶体对齐.
  • 在不受限制的条件下,晶体成长垂直于播种模板 (点,线,平面).
  • 成功预测了晶体图案和制造的3D生物结构.

结论:

  • 建立了一个晶体生长的通用原则,垂直于播种模板.
  • 证明可控制的结晶用于路径规划和3D结构制造.
  • 开辟了制造技术和功能材料的新途径.