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折纸运动学综述 被引量:2
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作者 陈焱 顾元庆 《力学进展》 EI CSCD 北大核心 2023年第1期154-197,共44页
随着21世纪折纸工程学的发展,折纸不再仅仅是一项民间艺术,一方面数学家前期的大量工作随之浮出水面,另一方面工程应用对折纸结构折叠过程的描述与分析都提出了新的挑战.同时,折纸的对象也不再局限于简单的纸张,工程中存在大量的厚度不... 随着21世纪折纸工程学的发展,折纸不再仅仅是一项民间艺术,一方面数学家前期的大量工作随之浮出水面,另一方面工程应用对折纸结构折叠过程的描述与分析都提出了新的挑战.同时,折纸的对象也不再局限于简单的纸张,工程中存在大量的厚度不可忽略的平板结构,他们的折叠展开问题一直困扰着相关的工程应用.近几年超材料的发展给模块化折纸带来了一次从玩具到高科技的飞跃,然而如何协调地安排这些折纸模块使得整体结构展现出超常且可变化调控的性能是折纸领域的新热点.由此可见,折纸运动学在诸多应用与探索方面都起到了决定性的基础作用.本文重点介绍了已有的机构学理论与方法及其在各种折纸结构分析设计中的应用,旨在为折纸工程学的发展提供坚实的理论技术基础. 展开更多
关键词 折纸 折纸运动学 刚性折纸 厚板折纸 模块化折纸
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DNA Nano Devices as a Biased Random Walk Process: A Case Study of Isothermal Ratchet?
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作者 Jean-Pierre Aimé Juan Elezgaray 《Materials Sciences and Applications》 2015年第5期401-419,共19页
Computation and amplification processes based on Networks of Chemical Reactions are at the heart of our understanding of the regulation and error correction of life systems. The recent advances in DNA nanotechnology, ... Computation and amplification processes based on Networks of Chemical Reactions are at the heart of our understanding of the regulation and error correction of life systems. The recent advances in DNA nanotechnology, with the creation of the modular structures origamis and the development of dynamical networks using the toe hold mediated strand displacement, open fertile areas to construct Hierarchical Cascades of Chemical Reactions with an increasing complexity inspired from systems in biology. DNA strands have the great advantage to design autonomous and homogeneous Networks of Chemical Reactions leaving aside companion chemical reactions as it occurs in biological systems. In the present paper, we use the Fokker Planck equation to extract predictions that address a wider class of systems beyond the case of diluted solutions. We introduce the concept of toehold strength and output strength that leads to an exponential square dependence of the toehold strength divided by the output strength on the escape rate and the probability for the output strand to leave the gate. We highlight the influence of the boundary conditions that may have an important consequence in confined environment when modular structures like origamis are employed. 展开更多
关键词 DNA NANOTECHNOLOGY ISOTHERMAL RATCHET CONFINED Chemical Reactions DNA Logical Gate DNA origami modular Algorithm
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