Resines-Urien Esther, Burzurí Enrique, Fernandez-Bartolome Estefania, García García-Tuñón Miguel Ángel, de la Presa Patricia, Poloni Roberta, Teat Simon J, Costa Jose Sanchez
IMDEA Nanociencia , C/Faraday 9, Campus de Cantoblanco , Madrid , 28049 , Spain . Email:
Instituto de Cerámica y Vidrio , CSIC , C/Kelsen s/n , Madrid , 28240 , Spain.
Chem Sci. 2019 Jun 20;10(27):6612-6616. doi: 10.1039/c9sc02522g. eCollection 2019 Jul 21.
Efficient and low cost detection of harmful volatile organic compounds (VOCs) is a major health and environmental need in industrialized societies. For this, tailor-made porous coordination polymers are emerging as promising molecular sensing materials thanks to their responsivity to a wide variety of external stimuli and could be used to complement conventional sensors. Here, a non-porous crystalline 1D Fe(ii) coordination polymer acting as a porous acetonitrile host is presented. The desorption of interstitial acetonitrile is accompanied by magneto-structural transitions easily detectable in the optical and electronic properties of the material. This structural switch and therefore its (opto)electronic readout are reversible under exposure of the crystal to acetonitrile vapor. This simple and robust iron-based coordination polymer could be ideally suited for the construction of multifunctional sensor devices for volatile acetonitrile and potentially for other organic compounds.
在工业化社会中,高效且低成本地检测有害挥发性有机化合物(VOCs)是一项重大的健康和环境需求。为此,量身定制的多孔配位聚合物正作为有前景的分子传感材料崭露头角,这得益于它们对多种外部刺激的响应性,并且可用于补充传统传感器。在此,展示了一种作为多孔乙腈主体的无孔晶体一维铁(II)配位聚合物。间隙乙腈的解吸伴随着磁结构转变,这在材料的光学和电子性质中易于检测到。在晶体暴露于乙腈蒸气的情况下,这种结构转变及其(光)电子读出是可逆的。这种简单且坚固的铁基配位聚合物可能非常适合构建用于挥发性乙腈以及潜在地用于其他有机化合物的多功能传感装置。