热致变色
合理设计
材料科学
反向
共聚物
配对
链条(单位)
块(置换群论)
材料设计
光子学
聚合物
工作(物理)
纳米技术
光电子学
非线性光学
领域(数学)
化学物理
分子工程
侧链
非线性系统
分子
设计要素和原则
薄膜
生物系统
计算机科学
反问题
作者
Dong Yang,Heyi Liang,Chengjie Zhang,Peipei Shao,Qin Li,Yun Huang,Yi Dan,Cheng Zeng,Rui‐Tao Wen,Long Jiang,Ming Xiao
标识
DOI:10.1038/s41467-025-66015-0
摘要
Abstract Precisely controlling structural colours in polymeric materials remains a major challenge, with current approaches often relying on trial-and-error synthesis. Here, we develop a colour design model, enabling inverse design of structural colours in bottlebrush block copolymers (BBCPs). The model can quantitatively link BBCP molecular structures to macroscopic colours through the integration of a strong segregation self-consistent field theory model with a multilayer optical framework. We first validate its predictive capability by synthesising and assembling BBCPs with varied chain architectures to produce a full colour spectrum, and then demonstrate its generalisability to other BBCP chemistries. In addition, we observe reversible, nonlinear thermochromism in systems combining a crystalisable block with a soft, low–glass transition temperature segment, while similar BBCPs lacking this pairing show no such response. Our work establishes a predictive platform for designing structurally coloured, thermoresponsive polymeric materials and advances the rational engineering of photonic soft matter.
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