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聚合物刷在可持续能源应用中的实际应用:用于高效器件的界面纳结构。

Practical use of polymer brushes in sustainable energy applications: interfacial nanoarchitectonics for high-efficiency devices.

机构信息

Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, CONICET, Diagonal 113 y 64 (1900), La Plata, Argentina.

出版信息

Chem Soc Rev. 2019 Feb 4;48(3):814-849. doi: 10.1039/c8cs00705e.

Abstract

The discovery and development of novel approaches, materials and manufacturing processes in the field of energy are compelling increasing recognition as a major challenge for contemporary societies. The performance and lifetime of energy devices are critically dependent on nanoscale interfacial phenomena. From the viewpoint of materials design, the improvement of current technologies inevitably relies on gaining control over the complex interface between dissimilar materials. In this sense, interfacial nanoarchitectonics with polymer brushes has seen growing interest due to its potential to overcome many of the limitations of energy storage and conversion devices. Polymer brushes offer a broad variety of resources to manipulate interfacial properties and gain molecular control over the synergistic combination of materials. Many recent examples show that the rational integration of polymer brushes in hybrid nanoarchitectures greatly improves the performance of energy devices in terms of power density, lifetime and stability. Seen in this light, polymer brushes provide a new perspective from which to consider the development of hybrid materials and devices with improved functionalities. The aim of this review is therefore to focus on what polymer brush-based solutions can offer and to show how the practical use of surface-grafted polymer layers can improve the performance and efficiency of fuel cells, lithium-ion batteries, organic radical batteries, supercapacitors, photoelectrochemical cells and photovoltaic devices.

摘要

在能源领域发现和开发新方法、材料和制造工艺正引起当代社会的广泛关注,这是一个重大挑战。能源器件的性能和寿命严重依赖于纳米尺度的界面现象。从材料设计的角度来看,当前技术的改进不可避免地依赖于对不同材料之间复杂界面的控制。从这个意义上说,由于聚合物刷在克服储能和转换器件许多限制方面具有潜在优势,因此其界面纳米结构受到越来越多的关注。聚合物刷为操纵界面性能提供了广泛的资源,并为材料协同组合提供了分子控制。许多最新实例表明,合理整合聚合物刷在混合纳米结构中极大地提高了能量器件在功率密度、寿命和稳定性方面的性能。从这个角度来看,聚合物刷为考虑具有改进功能的混合材料和器件的发展提供了新的视角。因此,本篇综述的目的是重点关注基于聚合物刷的解决方案能够提供什么,并展示如何实际使用接枝到表面的聚合物层来提高燃料电池、锂离子电池、有机自由基电池、超级电容器、光电化学电池和光伏器件的性能和效率。

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