© 2009
Custom Sensor
Solutions, Inc.
Published Papers and Other Documents That
Mention the Model 1010 Precision Gas Diluter

Disclaimer: This is a list of publications describing work in which the Model 1010 has been used for experiments, or where it is mentioned as part of a review. Few or none of these publications specifically endorse the Model 1010 relative to other products.

Aguilar, A. D, Forzani, E. S., Nagahara, L. A., Amlani, I., Tsui, R., and Tao, N. J, 2008. A breath ammonia sensor based on conducting polymer nanojunctions. IEEE Sensors Journal 8, 269-273.

Westerhoff, P., and 5 others, January 2008. Proof-of-concept development of a microfabricated tuning-fork based sensor for disinfection by-products in drinking water. Unreferenced working paper, extensive illustrations and examples.
www.azwaterinstitute.org/media/AWI701westerhoff.pdf

Kruger, K.C.C., Formation and novel sensing of trihalomethanes in drinking water. PhD Thesis, Arizona State University, 2007.

Shekarriz, A., Allen, L.W., Faulkner, D.J.; Ward, C M. and Gilbuena, D M., Electrocatalytic chemical sensor and method for removing target chemicals from a gas stream, World Pat. App. WO/2007/149471

Oberg, K.I., Hodyss, R., Beauchamp, J.L., 2006. Simple optical sensor for amine vapors based
on dyed silica microspheres Sensors and Actuators B 115 79-85.

Hodyss, R., Methods for the Analysis of Chemistry on Titan, PhD Thesis, California Institute of Technology, 2006.

Gabriel, J-C.P., Gruner, G., Star, A., and Stetter, J.R. Carbon dioxide nanoelectronic sensor. United States Patent Application 20050129573.

Star, A., Joshi, V., Skarupo, S, Thomas, D. and Gabriel, J-C. P., 2006. Gas Sensor Array Based on Metal-Decorated Carbon Nanotubes, J. Phys. Chem. B 110, 21014-21020. 

Fang, W. Buchholz, D. B., Bailey, R. C., Hupp, J. T., Chang, R. Ph. H., and Cao, H., 2004.
Detection of chemical species using ultraviolet microdisk lasers. Applied Physics Letters 85, 3666-3668.

Star, A., Han, T.-R., Joshi, V., and Stetter, J. R., 2004. Sensing with Nafion coated carbon nanotube field-effect transistors. Electroanalysis 16, 108-112.

Bailey, R. T., and Hupp, J. T., 2003. Micropatterned polymeric gratings as chemoresponsive volatile organic compound sensors: implications for analyte detection and identification via diffraction-based sensor arrays. Anal. Chem. 75, 2392-2398

Bakken, G. A., Kauffman, G. W., Jurs, P. C., Albert, K. J, and Stitzel, S. S., 2001. Pattern recognition analysis of optical sensor array data to detect nitroaromatic compound vapors. Sensors and Actuators B 79, 1-10. 

Keith J. Albert and David R. Walt, 2000. High-Speed Fluorescence Detection of
Explosives-like Vapors. Anal. Chem. 72, 1947-1955.