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Mechanical Structure-Property Relationships for 2D Polymers Comprised of Nodes and Bridge Units

机译:由节点和桥接单元组成的2D聚合物的机械结构 - 性质关系

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2D polymers have emerged as an infinitely-tailorable material with remarkable, tunable response and density-normalized mechanical properties far exceeding structural materials such as steel, high-performance fibers or reinforced composites. It is critical that the vast material design space of 2D polymers be mapped in order to achieve optimal mechanical performance, since hundreds of permutations of one class of 2D polymers known as covalent organic frameworks have already been synthesized in the decade since the introduction of these materials. To this end, this work establishes a general structure-property relationship for elastic modulus and strength for a common 2D polymer motif consisting of nodes linked by linear bridge polymer chains to form a two-dimensional network. The length of the bridge chains are parametrically varied to study the impact of chain compliance on stiffness and strength. The density-normalized isotropic strength of the graphene/polyethylene hybrid material known as graphylene begins at 0.015 GPa/kg·m~3 (50% higher than that of perfect crystalline Kevlar) and the density-normalized isotropic stiffness is 0.143 GPa/kg·m~3 (31% higher than Kevlar) and decreases non-monotonically with increasing bridge chain length. The mechanical response is mapped and correlated to the inherent molecular structure of these general 2D polymer as a framework for designing 2D polymer molecules for mechanical applications from the ground up.
机译:2D聚合物作为无限制的材料,具有显着的可调谐响应和密度标准化的机械性能远远超过诸如钢,高性能纤维或增强复合材料的结构材料。重要的是,将2D聚合物的巨大材料设计空间被映射以实现最佳的机械性能,因为自从引入这些材料以来已经合成了称为共价有机框架的一类2D聚合物的数百个2D聚合物的排列。为此,该工作建立了一种用于弹性模量和强度的通用结构性质关系,其用于由线性桥聚合物链连接的节点组成的常见的2D聚合物基序来形成二维网络。桥接链的长度是参数变化的,以研究链符合刚度和强度的影响。称为亚基丙烷的石墨烯/聚乙烯杂化材料的密度归一化各向同性强度以0.015gPa / kg·m〜3(比完美结晶Kevlar的50%高),密度归一化各向同性刚度为0.143 gpa / kg· M〜3(比Kevlar高31%),随着桥链长度的增加而非单调地减小。机械响应被映射到与这些通用2D聚合物的固有分子结构相关的框架,作为用于设计2D聚合物分子的框架,用于从地上的机械应用。

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