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纳米孔晶体聚合物的分子传感。

Molecular sensing by nanoporous crystalline polymers.

机构信息

Optoelectronic Division, Engineering Department, University of Sannio, Benevento 82100, Italy; E-Mails:

出版信息

Sensors (Basel). 2009;9(12):9816-57. doi: 10.3390/s91209816. Epub 2009 Dec 3.

Abstract

Chemical sensors are generally based on the integration of suitable sensitive layers and transducing mechanisms. Although inorganic porous materials can be effective, there is significant interest in the use of polymeric materials because of their easy fabrication process, lower costs and mechanical flexibility. However, porous polymeric absorbents are generally amorphous and hence present poor molecular selectivity and undesired changes of mechanical properties as a consequence of large analyte uptake. In this contribution the structure, properties and some possible applications of sensing polymeric films based on nanoporous crystalline phases, which exhibit all identical nanopores, will be reviewed. The main advantages of crystalline nanoporous polymeric materials with respect to their amorphous counterparts are, besides a higher selectivity, the ability to maintain their physical state as well as geometry, even after large guest uptake (up to 10-15 wt%), and the possibility to control guest diffusivity by controlling the orientation of the host polymeric crystalline phase. The final section of the review also describes the ability of suitable polymeric films to act as chirality sensors, i.e., to sense and memorize the presence of non-racemic volatile organic compounds.

摘要

化学传感器通常基于合适的敏感层和换能机制的集成。虽然无机多孔材料可能有效,但由于其易于制造、成本更低和机械灵活性,人们对聚合物材料的应用产生了浓厚的兴趣。然而,多孔聚合物吸收剂通常是无定形的,因此表现出较差的分子选择性和由于大的分析物吸收而导致的机械性能的不期望变化。在这篇综述中,将回顾基于纳米多孔结晶相的传感聚合物膜的结构、性质和一些可能的应用,这些结晶相表现出所有相同的纳米孔。与无定形对应物相比,结晶纳米多孔聚合物材料的主要优点除了更高的选择性外,还在于即使在大量客体吸收(高达 10-15wt%)后,仍能保持其物理状态和几何形状的能力,以及通过控制主体聚合物结晶相的取向来控制客体扩散性的能力。综述的最后一部分还描述了合适的聚合物膜作为手性传感器的能力,即感应和记忆非外消旋挥发性有机化合物的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb42/3267198/313f6a53d522/sensors-09-09816f1.jpg

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