灵活的体晶体中的刺激响应DNA键的收缩和扩张
Jarad A Mason1, Christine R Laramy1, Cheng-Tsung Lai1
1Department of Chemistry, ‡International Institute for Nanotechnology, §Department of Chemical and Biological Engineering, and ∥Department of Materials Science and Engineering, Northwestern University , Evanston, Illinois 60208, United States.
Journal of the American Chemical Society
|July 13, 2016
概括
DNA 键可以控制纳米粒子超级网. 添加乙醇可以动态调整键的长度和稳定性,使得具有可调节体积和增强热性能的刺激响应格子成为可能.
科学领域:
- 材料科学
- 纳米技术
- 生物化学
背景情况:
- DNA表面连接器使得纳米颗粒可编程组装成晶体超级网格.
- 在先进的材料应用中,动态控制超级晶格结构至关重要.
研究的目的:
- 调查DNA键对局部介电常数变化的反应.
- 探索乙醇 (EtOH) 作为动态调节纳米粒子超级晶格结构的刺激剂.
主要方法:
- 研究对介电常数变化的DNA键反应.
- 使用乙醇添加来改变DNA键的长度和稳定性.
- 使用体积膨胀/收缩测量分析超级晶格结构变化.
主要成果:
- 乙醇可控制调节的DNA键长度为16至3纳米.
- DNA结合稳定性增加了40°C以上.
- 在临界乙醇度下,超级格子表现出高达75%的合作体积变化.
结论:
- DNA 键本质上对介电常数的变化有反应,为超级晶格结构提供动态控制.
- 乙醇添加提供了一个易于创建响应刺激的纳米粒子格子的方法.
- 这种方法提高了热稳定性,并允许访问高体积分数.
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