作者
Niamh Willis‐Fox, Etienne Rognin, Christoph Baumann, Talal A Aljohani, Robert Göstl, Ronan Daly
发表日期
2020/7
期刊
Advanced Functional Materials
卷号
30
期号
27
页码范围
2002372
简介
Mechanical forces can drive chemical transformations in polymers, directing reactions along otherwise inaccessible pathways, providing exciting possibilities for developing smart, responsive materials. The state‐of‐the‐art test for solution‐based polymer mechanochemistry development is ultrasonication. However, this does not accurately model the forces that will be applied during device fabrication using processes such as 3D printing or spray coating. Here, a step is taken toward predictably translating mechanochemistry from molecular design to manufacturing by demonstrating a highly controlled nozzle flow setup in which the shear forces being delivered are precisely tuned. The results show that solvent viscosity, fluid strain rate, and the nature of the breaking bond can be individually studied. Importantly, it is shown that the influence of each is different to that suggested by ultrasonication (altered quantity of …
引用总数
2020202120222023202449893
学术搜索中的文章
N Willis‐Fox, E Rognin, C Baumann, TA Aljohani… - Advanced Functional Materials, 2020