Materials World Network: Collaborative Research: Nanoscale Self-Assembly of Well-Defined Binary Mixed Homopolymer Brushes Grafted on Inorganic Particles
Materials World Network: Collaborative Research: Nanoscale Self-Assembly of Well-Defined Binary Mixed Homopolymer Brushes Grafted on Inorganic Particles
批准号:
1007986
负责人:
Bin Zhao
金额:
$29.7万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-07-15 至 2015-06-30
中文摘要
该合作项目旨在了解由两种不同的均聚物随机或通过共价键在无机颗粒上交替固定的二元混合刷的相行为,并探索其在聚合物纳米复合材料中的应用。混合刷是一种有趣的环保材料。为了充分挖掘它们在各种技术应用中的潜力,有必要了解它们在不同环境条件下的相行为。为了应对这一需求,一个国际合作团队已经成立,由赵斌(美国田纳西大学的聚合物化学家)、朱磊(凯斯西储大学的聚合物物理学家)、邱峰和唐平(中国复旦大学的理论家)组成。通过结合两种不同的“活性”/可控聚合技术,pi将从固定在各种无机颗粒上的不对称双功能端引发剂自组装单层制备具有预定分子量、窄多分散度和可控制接枝密度的混合刷。混合电刷的相形态将采用实验和计算机模拟两种方法进行系统研究。研究了分子量、接枝密度等分子参数对反应的影响。混合电刷接枝颗粒将用于制造性能改善的高级聚合物/无机纳米复合材料。从这项工作中获得的知识可以为新型纳米结构杂化材料的制备和二元混合聚合物刷的技术应用开辟新的机会。这个合作项目汇集了一群来自中美三所大学的具有不同背景和专业知识的科学家、研究生和本科生。两国教师和学生之间的交流使他们接触到不同的研究环境和文化,使他们获得国际经验和全球视野的科学。本研究为培养学生在高分子与有机合成、表面化学、高分子物理等方面的能力提供了良好的机会。pi致力于通过与当地高中教师合作,在科学和技术课上开发新的模块和实验室实验,重点是聚合物表面化学,从而帮助K-12教育中的科学和工程教学。高中教师和未被充分代表的少数民族高中生将在夏季举办,目的是提高高中教师的水平,提高教学成绩,提高学生对科学和工程的兴趣。
英文摘要
This collaborative project seeks to understand the phase behavior of binary mixed brushes composed of two distinct homopolymers randomly or alternately immobilized via covalent bonds on inorganic particles and to explore their applications in polymer nanocomposites. Mixed brushes are an intriguing class of environmentally responsive materials. To tap into their full potentials in various technological applications, it is necessary to understand their phase behaviors under different environmental conditions. In response to this need, an international collaborative team has been assembled and consists of Bin Zhao (a polymer chemist at University of Tennessee), Lei Zhu (a polymer physicist at Case Western Reserve University), and Feng Qiu and Ping Tang (theoreticians at Fudan University, China). By combining two different "living"/controlled polymerization techniques, the PIs will prepare mixed brushes with predetermined molecular weights, narrow polydispersities and controlled grafting densities from asymmetric difunctional initiator-terminated self-assembled monolayers immobilized on a variety of inorganic particles. The phase morphologies of mixed brushes will be systematically studied using both experimental and computer simulation approaches. The effects of various molecular parameters such as molecular weight and grafting density will be elucidated. The mixed brush-grafted particles will be used to make advanced polymer/inorganic nanocomposites with improved properties. The knowledge gained from this work could open up new opportunities in the preparation of novel nanostructured hybrid materials and the applications of binary mixed polymer brushes in technological uses.This collaborative project brings together a group of scientists, graduate and undergraduate students with various backgrounds and expertise from three universities in the U.S. and China. Exchange of faculty and students between the two countries exposes them to different research environments and cultures, and enables them to gain international experience and global visions in science. This research provides a good opportunity to train students in polymer and organic synthesis, surface chemistry, as well as polymer physics. The PIs are committed to help science and engineering teaching in K-12 education by working with local high school teachers to develop new modules and lab experiments in science and technology classes with an emphasis on polymer surface chemistry. High school teachers and underrepresented, minority high school students will be hosted in the summer with the goals of improving high school teachers, teaching performance and enhancing student interest in science and engineering.
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会议论文
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批准号:2004564
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项目类别:Standard Grant
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批准号:1206385
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财政年份:2012
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批准号:81942001
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依托单位: