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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A biodegradable polymer- based common chemical avenue for optimizing switchable, chemically reactive and tunable adhesive superhydrophobicity
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A biodegradable polymer- based common chemical avenue for optimizing switchable, chemically reactive and tunable adhesive superhydrophobicity

机译:基于可生物的聚合物的常见化学途径,用于优化可切换,化学反应性和可调粘合剂超细纤维性

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摘要

The development of different extreme water wettability properties, including tunable adhesion and stimuli-responsive superhydrophobicity, has emerged as an important avenue with enormous prospects for diverse applications, addressing real-life problems. Various approaches and designs have been adopted for optimizing these different super-water-wettability properties separately. In this current report, a common and robust chemical approach is introduced for creating chemically reactive, tunable adhesion and stimuli-responsive superhydrophobicity, where a chitosan-based covalently cross-linked material with dual chemically reactive functionality is synthesized following a facile 1,4-conjugate addition reaction between amine and acrylate groups. The synthesized polymeric material, which was loaded with residual acrylate and primary amine groups, provided a facile basis for both single and dual post-functionalization with a wide range of chemical moieties through the rational use of Michael addition reactions and nucleophilic substitution processes. Depending on the selection of appropriate post-chemical functionalization, chemically reactive, tunable adhesion and pH-responsive switchable superhydrophobicity was optimized. The embedded pH-responsive superhydrophobicity was extended further to develop self-cleaning prints; examples of such materials are rare in the literature. Such materials would be of utmost importance for various potential applications, including patterned wettability, smart microfluidic devices, customized drug delivery systems, etc. Moreover, the naturally abundant and biodegradable polymer-based less-adhesive superhydrophobicity was capable of withstanding various types of chemical and physical exposure without any significant alteration in the embedded extreme water wettability. Designing such simple and single synthetic method for developing various (tunable adhesion and stimuli-responsive) super-water repellent interfaces, using naturally abundant and biodegradable raw materials, is challenging and is important for various prospective applications in diverse and extreme settings.
机译:不同的极端水润湿性特性的发展,包括可调粘连和刺激响应性超水性,作为具有巨大应用程序的重要大道,用于多样化的应用,解决现实生活问题。已经采用了各种方法和设计来分别优化这些不同的超级水润湿性特性。在本研究报告中,引入了一种常见的和稳健的化学方法,用于产生化学反应性,可调谐粘附和刺激响应性超水性,其中壳聚糖的共价交联材料具有双化学反应性官能度,在容易1,4-中合成胺和丙烯酸酯基团之间的共轭添加反应。由残留丙烯酸酯和伯胺基加载的合成聚合物材料为单一和双后官能化提供了较大的化学部分,通过合理使用迈克尔添加反应和亲核代替方法。取决于选择适当的后化学官能化,优化化学反应性,可调谐粘附和pH-响应可切换的超散液性。进一步延伸嵌入的pH响应性超疏水性以开发自清洁印刷品;这些材料的实例在文献中是罕见的。这种材料对于各种潜在应用至关重要,包括模式润湿性,智能微流体装置,定制的药物递送系统等。此外,这种基于自然和可生物降解的聚合物的较低粘性超细纤维性能够承受各种类型的化学品和物理曝光,没有任何显着改变的嵌入式极低水润湿性。设计这种简单和单一的合成方法,用于使用天然丰富和可生物降解的原料开发各种(可调谐粘合和刺激)超级防水界面,这对于各种潜在的环境中的各种前瞻性应用是有挑战性的,并且对于各种预期应用是重要的。

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