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Assembly of Cytoskeletal Filaments01:18

Assembly of Cytoskeletal Filaments

Cytoskeletal filaments are polymeric forms of smaller protein subunits. However, individual cytoskeletal filaments may easily disassemble or associate with other similar filaments to form rigid structures. Microfilaments, made of actin monomers, rely on actin-binding proteins to form bundles and create networks of individual actin filaments. Microtubules rely on microtubule-associated proteins (MAPs) to form sturdy cylindrical structures. However, the proteins involved in forming complex...

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相关实验视频

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Origami Inspired Self-assembly of Patterned and Reconfigurable Particles
12:33

Origami Inspired Self-assembly of Patterned and Reconfigurable Particles

Published on: February 4, 2013

复杂的α-MoO(3) 纳米结构具有外部粘合能力,可自组装.

Xiong Wen Lou1, Hua Chun Zeng

  • 1Department of Chemical and Environmental Engineering, Faculty of Engineering, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260.

Journal of the American Chemical Society
|February 27, 2003
PubMed
概括

研究人员开发了一种创新方法,可以创建复杂的α-三氧化物 (α-MoO(3)) 纳米结构. 这些纳米结构可以自组装,并作为创建有形二氧化 (TiO(2)) 纳米晶体的模板.

科学领域:

  • 材料科学 材料科学 材料科学
  • 纳米技术纳米技术
  • 晶体工程公司 晶体工程公司

背景情况:

  • 阿尔法-三氧化物 (alpha-MoO(3)) 是一种具有有趣性质的材料.
  • 控制纳米结构形态对于高级应用至关重要.
  • 自组装为复杂的材料架构提供了一条途径.

研究的目的:

  • 为复杂的α-MoO(3) 纳米结构开发一种多功能合成方法.
  • 研究这些纳米结构的自我组织能力.
  • 探索使用α-MoO(3) 纳米结构作为其他纳米晶体的模板.

主要方法:

  • 操纵晶体生长方向以制造α-MoO(3) 纳米结构.
  • 使用四臂叉式的alpha-MoO(3) 作为自组装的构建块.
  • 采用超声波处理来修改纳米结构形态.
  • 使用alpha-MoO(3) 作为合成有形二氧化 (TiO(2)) 纳米晶体的模板.

主要成果:

  • 成功制造出具有外部粘合能力的复杂α-MoO(3) 纳米结构.
  • 组装了各种形态,包括中央孔的纳米棒,三角棒和画笔.
  • 通过超声波处理证明了原始晶体的转化为不太武装的结构.

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  • 使用alpha-MoO(3) 模板生产了方形和马形解剖酶TiO(2) 纳米晶体.
  • 结论:

    • 开发的方法为复杂的α-MoO(3) 纳米结构提供了一条多功能途径.
    • 阿尔法-MoO(3) 纳米结构表现出自我组织的能力.
    • 这些纳米结构是生产精确形状的纳米晶体的有效模板,如TiO.