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Hierarchies of networked phases induced by multiple liquid–liquid critical points

机译:多个液-液临界点诱发的网络相层次

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摘要

Nanoparticles and colloids functionalized by four single strands of DNA can be thought of as designed analogs to tetrahedral network-forming atoms and molecules, with a difference that the attached DNA strands allow for control of the length scale of bonding relative to the core size. We explore the behavior of an experimentally realized model for nanoparticles functionalized by four single strands of DNA (a tetramer), and show that this single-component model exhibits a rich phase diagram with at least three critical points and four thermodynamically distinct amorphous phases. We demonstrate that the additional critical points are part of the Ising universality class, like the ordinary liquid–gas critical point. The dense phases consist of a hierarchy of interpenetrating networks, reminiscent of a woven cloth. Thus, bonding specificity of DNA provides an effective route to generate new nano-networked materials with polyamorphic behavior. The concept of network interpenetration helps to explain the generation of multiple liquid phases in single-component systems, suggested to occur in some atomic and molecular network-forming fluids, including water and silica.
机译:可以认为由四根单链DNA官能化的纳米粒子和胶体是四面体网络形成原子和分子的设计类似物,所不同的是所连接的DNA链可控制键合相对于核心尺寸的长度尺度。我们探索了由DNA的四个单链(四聚体)功能化的纳米颗粒的实验实现模型的行为,并表明该单组分模型显示出具有至少三个临界点和四个热力学上不同的非晶相的富相图。我们证明了其他临界点与常规的液化气临界点一样,属于Ising通用性类别。密相由相互渗透的网络层次组成,让人联想到编织布。因此,DNA的结合特异性为产生具有多态行为的新型纳米网络材料提供了一条有效途径。网络互穿的概念有助于解释单组分系统中多种液相的产生,建议在某些形成原子和分子网络的流体(包括水和二氧化硅)中发生这种现象。

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