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Sensors industrial

Narayanaswamy R., Wolfbeis O.S. (Eds.), Optical Sensors Industrial, Environmental and Diagnostic Applications, Springer Series on Chemical Sensors and Biosensors Vol. [Pg.113]

Orellana G, Garcia-Fresnadillo D (2004) Environmental and industrial optosens-ing with tailored luminescent Ru(II) polypyridyl complexes. In Narayanaswamy R, Wolfbeis OS (eds) Optical sensors industrial, enviromental and diagnostic applications. Springer series on chemical sensors and biosensors vol 1. Springer, Berlin Heidelberg New York, p 309-357... [Pg.87]

Electrochemistry of the triple-phase-boundary (TPB) gas-electrolyte-semiconductor electrode is as yet not entirely understood. Unfortunately, in the gas sensors industry as well as in the advanced materials development field, the inalterable methods used early in the 21st century are still nothing more than anpirical. [Pg.312]

Optical Sensors Industrial, Environmental and Diagnostic Applications Volume Editors ... [Pg.485]

Another variation on solution casting is spin coating. This technique borrows from the methods developed by the semiconductor industry to deposit very thin and uniform layers of photoresist onto silicon wafers. This method has been successfully used in the sensor industry to deposit polymer electrolyte membranes onto silicon-based gas sensors [21]. Some main advantages of spin coating are that very thin and reproducible films can be produced, and that an entire array of sensors can be coated simultaneously using batch fabrication methods. In addition, spin coating equipment is readily available fi"om the semiconductor industry. [Pg.361]

N. de Mas, et al. Scaled-out multilayer gas-liquid microreactor with integrated velocimetry sensors. Industrial and Engineering Chemistry Research, 2005, 44, 8997-9013. [Pg.321]

Nakahara T (2004) Development of gas sensors and cultivation of new markets for air queility. In Proceedings of the 38th chemical sensor symposium, Tokyo, 24-26 Mar, pp 73-75 Narayanaswamy R, Wolfbeis OS (eds) (2004) Optical sensors—industried, environmenteil and diagnostic applications, vol 1, Chemical sensors and biosensors. Springer, Berlin... [Pg.45]

Narayanaswamy R, Wolfbeis O (2004) Optical sensors. Industrial, environmental and diagnostic applications. Springer, Berlin... [Pg.432]

It is very difficult to obtain cmiductance by quantum mechanical calculation as it will be very much CPU intensive, but measurement of conductance is an utmost important parameter to prove the efficiency of the nanotubes as gas sensors, which is the experimental way of measuring sensors. Thus, a method was developed by calculating the change in the reactivity index before and after the application of the reaction held. The reactivity index provides information about the activity of the gas molecules over SWNT, if the activity changes then the sensing behavior will change [113]. This is a simplistic approach, which is cost-effective to new material design for the sensor industry. [Pg.177]

R. Narayanaswamy, and O.S. Wolfbeis, eds., Optical sensors Industrial, environmental and diagnostic applications, in Springer Series on Chemical Sensors and Biosensors, Vol. 1, Berfin-Heidelberg, Germany, Springer, 2004. [Pg.350]


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See also in sourсe #XX -- [ Pg.2 ]




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