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- W246077851 abstract "Publisher Summary This chapter examines how Si-containing nanoporous solids can be used to improve the performance of gas sensors. The two most important qualities of a gas sensor are its sensitivity and its selectivity. In view of the molecular recognition properties that nanoporous solids can afford, the strategy followed by many research groups to increase sensor selectivity involves the use of nanoporous solids as added elements on already existing platforms of sufficient sensitivity. The added nanoporous materials may be in the form of isolated entities or be a fully grown film completely coating the sensor surface. Materials containing micro- and mesopores, such as silicon-based nanoporous solids, are attracting substantial interest in the gas sensing field. Considerable improvements of sensor selectivity have been achieved through the deployment of (often functionalized) Si-based films as targets for the desired gas phase analytes, or as barriers to avoid the effect of interfering molecules. Adding to this are the considerable refinements occurred during the last decade on the synthesis of porous silicon-based films. The full potential of hybrid materials comprising organic (or bioorganic) functional groups and nanoporous inorganic structures has not yet been realized in the sensor field. In the case of Si-based materials such as silica and zeolites, the porous structure of the solid combined with the rich chemistry related to the presence of hydroxyl surface groups will allow the hosting/grafting of specific molecules, opening up a wealth of sensing possibilities." @default.
- W246077851 created "2016-06-24" @default.
- W246077851 creator A5019717738 @default.
- W246077851 creator A5062998067 @default.
- W246077851 creator A5082647127 @default.
- W246077851 date "2009-01-01" @default.
- W246077851 modified "2023-09-27" @default.
- W246077851 title "Gas Sensing with Silicon-Based Nanoporous Solids" @default.
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