共价键
反应性(心理学)
化学
网络共价键合
财产(哲学)
表征(材料科学)
工作(物理)
聚合物
纳米技术
拓扑(电路)
化学物理
生化工程
统计物理学
热力学
材料科学
有机化学
物理
病理
哲学
工程类
组合数学
认识论
替代医学
医学
数学
作者
Vivian Zhang,Boyeong Kang,Joseph V. Accardo,Julia A. Kalow
摘要
Polymer networks built out of dynamic covalent bonds offer the potential to translate the control and tunability of chemical reactions to macroscopic physical properties. Under conditions at which these reactions occur, the topology of covalent adaptable networks (CANs) can rearrange, meaning that they can flow, self-heal, be remolded, and respond to stimuli. Materials with these properties are necessary to fields ranging from sustainability to tissue engineering; thus the conditions and time scale of network rearrangement must be compatible with the intended use. The mechanical properties of CANs are based on the thermodynamics and kinetics of their constituent bonds. Therefore, strategies are needed that connect the molecular and macroscopic worlds. In this Perspective, we analyze structure–reactivity–property relationships for several classes of CANs, illustrating both general design principles and the predictive potential of linear free energy relationships (LFERs) applied to CANs. We discuss opportunities in the field to develop quantitative structure–reactivity–property relationships and open challenges.
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