Organic polymer-metal nano-composites for opto-electronic sensing of chemicals in agriculture

被引:0
作者
Sarkisov, Sergey S. [1 ]
Czarick, Michael, III [2 ]
Fairchild, Brian D. [2 ]
Liang, Yi [3 ]
Kukhtareva, Tatiana [4 ]
Curley, Michael J. [4 ]
机构
[1] SSS Opt Technol LLC, 515 Sparkman Dr, Huntsville, AL 35816 USA
[2] Univ Georgia, Athens, GA 30602 USA
[3] Univ Arkansas, Fayetteville, AR 72701 USA
[4] Alabama A&M Univ, Normal, AL 35762 USA
来源
ORGANIC PHOTONIC MATERIALS AND DEVICES XV | 2013年 / 8622卷
关键词
organic nano-composite; ammonia sensor; polymer nano-composite; indicator dye; opto-electronic chemical sensor; metal nano-colloid; WAVE-GUIDE; AMMONIA; SENSOR;
D O I
10.1117/12.999314
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Recent research findings led the team to conclude that a long lasting and inexpensive colorimetric sensor for monitoring ammonia emission from manure in confined animal feeding operations could eventually become feasible. The sensor uses robust method of opto-electronic spectroscopic measurement of the reversible change of the color of a sensitive nano-composite reagent film in response to ammonia. The film is made of a metal (gold, platinum, or palladium) nanocolloid in a polymer matrix with an ammonia-sensitive indicator dye additive. The response of the indicator dye (increase of the optical absorption in the region 550 to 650 nm) is enhanced by the nano-particles (similar to 10 nm in size) in two ways: (a) concentration of the optical field near the nano-particle due to the plasmon resonance; and (b) catalytic acceleration of the chemical reaction of deprotonization of the indicator dye in the presence of ammonia and water vapor. This enhancement helps to make a miniature and rugged sensing element without compromising its sensitivity of less than 1 ppm for the range 0 to 100 ppm. The sensor underwent field tests in commercial broiler farms in Georgia, Alabama, and Arkansas and was compared against a commercial photoacoustic gas analyzer. The sensor output correlated well with the data from the photoacoustic analyzer (correlation coefficient not less than 0.9 and the linear regression slope after calibration close to 1.0) for several weeks of continuous operation. The sources of errors were analyzed and the conclusions on the necessary improvements and the potential use of the proposed device were made.
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页数:15
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