New Approaches Towards Highly Stretchable and Self-Healable Conjugated Polymers
New Approaches Towards Highly Stretchable and Self-Healable Conjugated Polymers
批准号:
RGPIN-2017-06611
负责人:
RondeauGagné, Simon
金额:
$1.53万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2019
资助国家:
加拿大
项目状态:
已结题
起止时间:
2019-01-01 至 2020-12-31
中文摘要
共轭材料,尤其是半导体聚合物,是一类有趣的化合物,有着广泛的应用。更具体地说,这些材料具有适用于有机电子产品的性能,并且它们还具有高溶解度,可以通过大规模印刷方法进行器件制造和制造。此外,良好的机械和光学性能使半导体聚合物成为开发可拉伸和自修复设备的理想平台,在可穿戴电子和医疗保健领域具有巨大潜力。在大多数有机电子器件中,由于形态问题,性能主要受到限制。鉴于共轭聚合物的高结晶度和刚性,必须对其机械性能进行优化,以提高其应变容限和性能。因此,获得能够承受极端环境条件(应变、穿刺、热等)的有序和纳米结构共轭聚合物的新方法对于该技术的扩展是非常可取的。******本研究计划的统一主题是利用超分子化学提供的独特机会来设计和制备坚固且可自我修复的半导体聚合物材料。为了达到这一目标,将进行共轭聚合物和有机材料的合理设计。通过结合各种类型的功能,允许超分子相互作用,仔细控制聚合物形态的调制是可能的。由此产生的有序和定义良好的聚合物网络将增强电荷传输和机械性能。我们还建议加入共轭交联基团,这些交联基团将连接、固定和刚性聚合物链网络,从而改善材料内的整体电荷传输。为此,在共轭聚合物链的超分子自组装之后,将使用一种新颖有效的交联方法,通过聚二乙炔形成来获得结构创新和机械坚固的可拉伸共轭聚合物。从广义上看,可拉伸和自愈有机材料的合成和发展,以及新的交联方法,是开发新型创新有机功能材料的重要方向。开发的材料和策略将引领和促进革命性技术的发展,如可穿戴和柔性电子产品。******这个独特的研究项目也将有助于培养在化学、物理和工程领域拥有多种技能的高素质科学家,这将有利于加拿大的私人和公共研究。这些项目还将教育和培训材料科学中的化学合成和分子设计的研究生和本科生。
英文摘要
Conjugated materials, especially semiconducting polymers, are an interesting class of compounds for a wide variety of applications. More specifically, these materials have suitable properties for use in organic electronics and they also possess a high solubility that allows for device fabrication and manufacturing via large-scale printing methods. Moreover, good mechanical and optical properties make semiconducting polymers an ideal platform for the development of stretchable and self-healing devices with great potential in wearable electronics and healthcare. In most organic electronic devices, the performance is mainly limited due to morphological issues. Given their high crystallinity and rigidity, the mechanical properties of conjugated polymers have to be optimized in order to increase their strain tolerance and performance. Thus, novel methods to obtain ordered and nanostructured conjugated polymers that can tolerate extreme environmental conditions (strain, puncture, heat, etc.) are highly desirable for the expansion of this technology.******The unifying theme of this research program is to exploit the unique opportunity given by supramolecular chemistry to design and prepare robust and self-healable semiconducting polymeric materials. To reach this goal, a rational design of the conjugated polymers and organic materials will be performed. By incorporating various types of functionalities allowing supramolecular interactions, a carefully controlled modulation of the polymer morphology is possible. The resulting ordered and well-defined polymer networks will enhance the charge-transport and mechanical properties. We also propose to incorporate conjugated crosslinking moieties that will link, fix and rigidify the polymer chain network, thereby improving the overall charge transport within the materials. To this end, after supramolecular self-assembly of the conjugated polymer chains, a novel and efficient crosslinking methodology will be used via polydiacetylene formation to give access to structurally innovative and mechanically robust stretchable conjugated polymers. From a broad perspective, the synthesis and development of stretchable and self-healable organic materials, as well as new crosslinking methodologies, are of great interest for the development of new innovative organic functional materials. The materials and strategies developed will lead and contribute to the evolution of revolutionary technologies such as wearable and flexible electronics.******This unique research program will also contribute to the training of highly qualified scientists with a diverse set of skills at the interface of chemistry, physics and engineering which will benefit Canadian private and public research. These projects will also educate and train graduate and undergraduate students in chemical synthesis and molecular design in materials science.
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New Approaches Towards Highly Stretchable and Self-Healable Conjugated Polymers
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.53万
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New Approaches Towards Highly Stretchable and Self-Healable Conjugated Polymers
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.52万
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New Approaches Towards Highly Stretchable and Self-Healable Conjugated Polymers
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批准号:RGPIN-2017-06611
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.53万
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