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磁性偶极胶体的自我复制

Self-replication with magnetic dipolar colloids.

作者信息

Dempster Joshua M, Zhang Rui, Olvera de la Cruz Monica

机构信息

Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60208, USA.

Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042305. doi: 10.1103/PhysRevE.92.042305. Epub 2015 Oct 8.

DOI:10.1103/PhysRevE.92.042305
PMID:26565238
Abstract

Colloidal self-replication represents an exciting research frontier in soft matter physics. Currently, all reported self-replication schemes involve coating colloidal particles with stimuli-responsive molecules to allow switchable interactions. In this paper, we introduce a scheme using ferromagnetic dipolar colloids and preprogrammed external magnetic fields to create an autonomous self-replication system. Interparticle dipole-dipole forces and periodically varying weak-strong magnetic fields cooperate to drive colloid monomers from the solute onto templates, bind them into replicas, and dissolve template complexes. We present three general design principles for autonomous linear replicators, derived from a focused study of a minimalist sphere-dimer magnetic system in which single binding sites allow formation of dimeric templates. We show via statistical models and computer simulations that our system exhibits nonlinear growth of templates and produces nearly exponential growth (low error rate) upon adding an optimized competing electrostatic potential. We devise experimental strategies for constructing the required magnetic colloids based on documented laboratory techniques. We also present qualitative ideas about building more complex self-replicating structures utilizing magnetic colloids.

摘要

胶体自复制是软物质物理学中一个令人兴奋的研究前沿领域。目前,所有已报道的自复制方案都涉及用刺激响应分子包覆胶体颗粒,以实现可切换的相互作用。在本文中,我们介绍了一种利用铁磁偶极胶体和预编程外部磁场创建自主自复制系统的方案。粒子间的偶极 - 偶极力与周期性变化的弱 - 强磁场共同作用,将胶体单体从溶质驱赶到模板上,将它们结合成复制品,并溶解模板复合物。我们从对一个极简的球体 - 二聚体磁系统的重点研究中得出了自主线性复制器的三个通用设计原则,在该系统中单个结合位点允许形成二聚体模板。我们通过统计模型和计算机模拟表明,我们的系统呈现出模板的非线性增长,并且在添加优化的竞争静电势后会产生近乎指数级的增长(低错误率)。我们根据已记录的实验室技术设计了构建所需磁性胶体的实验策略。我们还提出了关于利用磁性胶体构建更复杂自复制结构的定性想法。

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Self-replication with magnetic dipolar colloids.磁性偶极胶体的自我复制
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