2009
DOI: 10.1088/0957-0233/20/4/042002
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Recent developments in electrochemical sensor application and technology—a review

Abstract: The review describes different developments of electrochemical sensors, which are used for measurements in a broad range of temperatures and concentrations of gases and dissolved ions in situ. The current approaches in sensor technology are targeted on miniaturization of electrochemical cells, application of multi-sensor setups, extensions of sensor application respecting pressure, temperature and aggressive media and on the use of dynamic methods.

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Cited by 212 publications
(127 citation statements)
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“…such as highly sensitive and selective detection, goes up to femto level detection, quick analysis, easy to handle, reduces manual errors, suitable for field analysis and can be automated. 2 The electrochemical sensors have already been used to detect biological molecules, 3 volatile gases (hazardous to humans and environment), 4 analyzing the thermal condition 5 and contamination in food samples. 6 Another use for electrochemical sensors is to detect molecules produced in the human body.…”
mentioning
confidence: 99%
“…such as highly sensitive and selective detection, goes up to femto level detection, quick analysis, easy to handle, reduces manual errors, suitable for field analysis and can be automated. 2 The electrochemical sensors have already been used to detect biological molecules, 3 volatile gases (hazardous to humans and environment), 4 analyzing the thermal condition 5 and contamination in food samples. 6 Another use for electrochemical sensors is to detect molecules produced in the human body.…”
mentioning
confidence: 99%
“…Therefore, it is important to monitor the impact of chloride on the environmental conditions and detect any fluctuation caused by this pollutant. To detect the contamination of natural water sources and soil a network of early warning systems consisting of in-situ miniaturised electrochemical sensors are required as a simple alternative to the current methods of detection of pollution [1]. This approach enables the localization of pollution sources and better control of the environment but requires larger numbers of miniaturised, rugged and biodegradable devices suitable for field deployment [2,3].…”
Section: Introductionmentioning
confidence: 99%
“…In present organic acids, tartaric acid belongs to important organic biomolecules which is widely used in the fields of food, pharmacology and chemistry industry (Kvaratskhelia and Kvaratskhelia, 2008;Guth et al, 2009]. Therefore, it is of great significance to develop convenient, rapid and facile method to the determination of tartaric acid for food, chemistry industry, pharmaceutical quality and safety.…”
Section: Introductionmentioning
confidence: 99%