Zhan Yuanyuan, Calierno Serena, Peixoto Jacques, Mitzer Lars, Broer Dirk J, Liu Danqing
Department of Chemical Engineering and Chemistry, Eindhoven University of Technology, Groene Loper 3, 5612 AE, Eindhoven, The Netherlands.
Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, Groene Loper 3, 5612 AE, Eindhoven, The Netherlands.
Angew Chem Int Ed Engl. 2022 Sep 19;61(38):e202207468. doi: 10.1002/anie.202207468. Epub 2022 Jul 19.
Liquid manipulation at solid surfaces has attracted plenty of interest yet most of them are limited to one or two direction(s), while transport in three dimensions is largely unexplored. Here, we demonstrate three-dimensionally steered dynamic liquid mobility at nanoporous liquid crystal polymer coatings. To this end, we orchestrate liquid motion via sequential triggers of light and/or electric field. Upon a primary flood exposure to UV light, liquid is ejected globally over the entire coating surfaces. We further reallocate the secreted liquid by applying a secondary electric field stimulus. By doing so, the liquid is transported and collected at pre-set positions as determined by the electrode positions. We further monitor this process in real-time and perform precise analysis. Interestingly, when applying those two triggers simultaneously, we discover a UV-gated liquid-release effect, which decreases threshold voltage as well as threshold frequency.
固体表面的液体操控已引起了广泛关注,但其中大多数仅限于一个或两个方向,而三维传输在很大程度上尚未得到探索。在此,我们展示了纳米多孔液晶聚合物涂层上的三维可控动态液体流动性。为此,我们通过光和/或电场的顺序触发来精心安排液体运动。在初次暴露于紫外光下时,液体会在整个涂层表面全局喷射。我们通过施加二次电场刺激进一步重新分配分泌的液体。通过这样做,液体被运输并收集到由电极位置确定的预设位置。我们进一步实时监测这一过程并进行精确分析。有趣的是,当同时应用这两种触发方式时,我们发现了一种紫外门控液体释放效应,该效应降低了阈值电压以及阈值频率。