General Electric Company, Global Research Center, Niskayuna, New York 12309, United States.
ACS Comb Sci. 2012 Mar 12;14(3):170-8. doi: 10.1021/co200112s. Epub 2012 Feb 8.
We have implemented high-throughput spectroscopic screening tools for the investigation of vapor-selectivity of CdSe semiconductor nanocrystals of different size (2.8- and 5.6-nm diameter) upon their incorporation in a library of rationally selected polymeric matrices. This library of resulting sensing materials was exposed to polar and nonpolar vapors in air. Each of the sensing materials demonstrated its own photoluminescence vapor-response patterns. Two criteria for the evaluation of vapor responses of the library of sensing materials included the diversity and the magnitude of sensing responses. We have found several polymer matrices that simultaneously meet these criteria. Our new sensing materials based on polymer-embedded semiconductor nanocrystal reagents of different size promise to overcome photobleaching and short shelf life limitations of traditional fluorescent organic reagent-based sensing materials.
我们已经开发出高通量光谱筛选工具,用于研究不同尺寸(2.8nm 和 5.6nm 直径)的 CdSe 半导体纳米晶体在被纳入一系列合理选择的聚合物基质后的蒸气选择性。该系列传感材料在空气中暴露于极性和非极性蒸气中。每种传感材料都表现出自己的荧光蒸气响应模式。评估传感材料库蒸气响应的两个标准包括响应的多样性和幅度。我们已经找到了几种同时满足这些标准的聚合物基质。我们的新型基于聚合物嵌入不同尺寸半导体纳米晶体试剂的传感材料有望克服传统基于荧光有机试剂的传感材料的光漂白和短保质期限制。