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Template-Assisted Preparation of Micrometric Suspended Membrane Lattices of Photoluminescent and Non-Photoluminescent Polymers by Capillarity-Driven Solvent Evaporation: Application to Microtagging

机译:毛细管驱动溶剂蒸发的模板辅助制备光致发光和非光致发光聚合物的微米级悬浮膜晶格:在微标签中的应用

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摘要

In this work, the bottom-up template-assisted preparation of high-density lattices (up to 11 · 106 membranes/cm2) of suspended polymer membranes with micrometric size (in the order of few μm2) and sub-micrometric thickness (in the order of hundreds of nm) is demonstrated for both photoluminescent and non-photoluminescent polymers by capillarity-driven solvent evaporation. Solvent evaporation of low concentration polymer solutions drop-cast on an array of open-ended micropipes is shown to lead to polymer membrane formation at the inlet of the micropipes thanks to capillarity. The method is proven to be robust with high-yield (>98%) over large areas (1 cm2) and of general validity for both conjugated and non-conjugated polymers, e.g. poly(9,9-di-n-octylfluorene-alt-benzothiadiazole (F8BT), poly[2-methoxy-5-(3′,7′-dimethyloctyloxy)-1,4-phenylenevinylene] (MDMO-PPV), polystyrene (PS), thus breaking a new ground on the controlled preparation of polymer micro and nanostructures. Angle dependence and thermal stability of photoluminescence emission arising from F8BT membrane lattices was thorough investigated, highlighting a non-Lambertian photoluminescence emission of membrane lattices with respect to F8BT films. The method is eventually successfully applied to the preparation of both photoluminescent and non-photoluminescent micro Quick Response (μQR) codes using different polymers, i.e. F8BT, MDMO-PPV, PS, thus providing micrometric-sized taggants suitable for anti-counterfeiting applications.
机译:在这项工作中,自底向上模板辅助制备了微米尺寸的悬浮聚合物膜的高密度晶格(高达11·10 6 膜/ cm 2 )通过毛细作用驱动的溶剂蒸发,证明了光致发光和非光致发光聚合物的厚度(约为2μm 2 )和亚微米级厚度(约为数百nm)。滴落在一系列开放式微管上的低浓度聚合物溶液的溶剂蒸发显示,由于毛细管作用,会导致在微管入口处形成聚合物膜。事实证明,该方法在大面积(1 cm 2 )上具有高收率(> 98%)的鲁棒性,并且对于共轭和非共轭聚合物(例如聚合物)均具有普遍有效性。聚(9,9-二正辛基芴-alt-苯并噻二唑(F8BT),聚[2-甲氧基-5-(3',7'-二甲基辛氧基)-1,4-亚苯基亚乙烯基](MDMO-PPV),聚苯乙烯(PS),从而在聚合物微结构和纳米结构的可控制备方面开辟了新的天地,深入研究了F8BT膜晶格引起的光致发光的角度依赖性和热稳定性,强调了F8BT膜晶格的非朗伯光致发光该方法最终成功地应用于使用不同的聚合物(例如F8BT,MDMO-PPV,PS)制备光致发光和非光致发光微快速响应(μQR)代码,从而提供适用于防伪应用的微米级标签剂。 。

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