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梳状聚合物中超分子纳米通道增强无水质子传输。

Enhancement of anhydrous proton transport by supramolecular nanochannels in comb polymers.

机构信息

Department of Chemistry, University of Massachusetts, Amherst, Massachusetts 01003, USA.

出版信息

Nat Chem. 2010 Jun;2(6):503-8. doi: 10.1038/nchem.629. Epub 2010 Apr 25.

Abstract

Transporting protons is essential in several biological processes as well as in renewable energy devices, such as fuel cells. Although biological systems exhibit precise supramolecular organization of chemical functionalities on the nanoscale to effect highly efficient proton conduction, to achieve similar organization in artificial systems remains a daunting challenge. Here, we are concerned with transporting protons on a micron scale under anhydrous conditions, that is proton transfer unassisted by any solvent, especially water. We report that proton-conducting systems derived from facially amphiphilic polymers that exhibit organized supramolecular assemblies show a dramatic enhancement in anhydrous conductivity relative to analogous materials that lack the capacity for self-organization. We describe the design, synthesis and characterization of these macromolecules, and suggest that nanoscale organization of proton-conducting functionalities is a key consideration in obtaining efficient anhydrous proton transport.

摘要

在多个生物过程以及可再生能源设备(如燃料电池)中,质子的传输是至关重要的。尽管生物系统在纳米尺度上表现出精确的化学功能的超分子组织,以实现高效的质子传导,但在人工系统中实现类似的组织仍然是一个艰巨的挑战。在这里,我们关注的是在无水条件下(即在没有任何溶剂,特别是水的辅助下)在微米尺度上传输质子。我们报告说,具有组织化超分子组装的面两亲聚合物衍生的质子传导系统相对于缺乏自组织能力的类似材料,在无水电导率方面有显著提高。我们描述了这些大分子的设计、合成和表征,并提出质子传导功能的纳米级组织是获得高效无水质子传输的关键考虑因素。

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