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Aggregation-induced-active Stimuli-responsive Cellulose-based Nano-objects for Wastewater Treatment Application

Aggregation-induced-active Stimuli-responsive Cellulose-based Nano-objects for Wastewater Treatment Application
聚集诱导活性刺激响应纤维素基纳米物体在废水处理中的应用
批准号:
EP/X022781/1
负责人:
Rachel O'Reilly
金额:
$26.0万
依托单位:
依托单位国家:
英国
项目类别:
Fellowship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
近年来,控制刺激响应纳米物体(包括胶束、囊泡、蠕虫等)在不同条件下的自组装行为被认为是聚合物界的一个相关挑战。本项目旨在合成聚合诱导活性(AIE)刺激响应的纤维素基聚合物纳米物体,以控制所制备纳米物体的自组装形态。由于其响应性,受控自组装将被应用于废水中的硝基酚类化合物(npc)吸附剂。此外,所制备的纳米物体的荧光活性部分不仅可以方便地实时监测形成的形态,而且在水溶液中NPCs的检测中也起着关键作用。该项目将重点放在对人类、动物和生态系统具有严重和持久影响的有毒污染物的去除和检测上,是欧盟(EU)题为“水框架指令(WFD)”的立法政策框架内的项目,旨在解决废水处理挑战,这被认为是21世纪的主要环境问题之一,特别是在欧盟。该项目将在国际著名化学家O'Reilly教授的指导下,在伯明翰大学(UoB)进行,作为将聚合物合成及其自组装应用于废水处理的适用项目。拟建项目的概念化基于主办者和研究者之间的双向知识转移,研究对象将通过这种知识转移实现。我将在项目中利用O'Reilly教授在聚合物化学和自组装方面的深厚知识,考虑到我的背景,在O'Reilly的小组中增加新的生产线,合成纤维素基聚合物吸附剂用于废水处理。
英文摘要
In the last years, controlling the self-assembly behavior of stimuli-responsive nano-objects, including micelles, vesicles, worm-like, etc., at different conditions is considered a pertinent challenge in the polymer community. This project aims to synthesize aggregation-induced-active (AIE) stimuli-responsive cellulose-based polymeric nano-objects to control the self-assemblies morphologies of the prepared nano-objects. The controlled self-assemblies will be applied as nitrophenolic compounds (NPCs) adsorbents from wastewater, thanks to their responsive behavior. Moreover, the fluorescence-active part of the prepared nanoobjects not only will lead to easy monitoring of formed morphologies in real-time but also play a key role in the detection of the NPCs at the aqueous solution. This project, by focusing on the removal and detection of NPCs, as toxic pollutants with both severe and long-lasting effects on humans, animals, and ecosystems, is in the framework of the European Union (EU) legislation Policy titled "Water Framework Directive (WFD)," to address the wastewater treatment challenges, which is considered one of the main environmental issues in the twenty-first century, particularly in the EU. The proposed project as an applicable project for using the polymer synthesis and their self-assemblies for wastewater treatment application will carry out at the University of Birmingham (UoB) under the guidance of leading international chemist Prof. O'Reilly. The conceptualization of the proposed project is based on the two-way transfer of knowledge between host and researcher, and research objects will achieve through this knowledge transfer. I will use Prof. O'Reilly's deep knowledge in polymer chemistry and selfassemblies during the project and add the new line in O'Reilly's group, considering my background, by synthesis of the cellulosebased polymeric adsorbent for wastewater treatment.
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