A flexible topo-optical sensing technology with ultra-high contrast

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作者
Cong Wang
Ding Wang
Valery Kozhevnikov
Xingyi Dai
Graeme Turnbull
Xue Chen
Jie Kong
Ben Zhong Tang
Yifan Li
Ben Bin Xu
机构
[1] Northumbria University,Department of Mechanical and Construction Engineering, Faculty of Engineering and Environment
[2] Northumbria University,Department of Applied Sciences, Faculty of Health and Life Science
[3] Northwestern Polytechnical University,MOE Key Laboratory of Material Physics and Chemistry under Extraordinary, Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering
[4] The Hong Kong University of Science and Technology,Department of Chemistry, The Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction and Institute for Advanced Study
[5] Clear Water Bay,undefined
[6] Kowloon,undefined
来源
Nature Communications | / 11卷
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摘要
Elastic folding, a phenomenon widely existing in nature, has attracted great interests to understand the math and physical science behind the topological transition on surface, thus can be used to create frontier engineering solutions. Here, we propose a topo-optical sensing strategy with ultra-high contrast by programming surface folds on targeted area with a thin optical indicator layer. A robust and precise signal generation can be achieved under mechanical compressive strains (>0.4). This approach bridges the gap in current mechano-responsive luminescence mechanism, by utilizing the unwanted oxygen quenching effect of Iridium-III (Ir-III) fluorophores to enable an ultra-high contrast signal. Moreover, this technology hosts a rich set of attractive features such as high strain sensing, encoded logic function, direct visualisation and good adaptivity to the local curvature, from which we hope it will enable new opportunities for designing next generation flexible/wearable devices.
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