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Nanocomposite based flexible ultrasensitive resistive gas sensor for chemical reactions studies.


ABSTRACT: Room temperature operation, low detection limit and fast response time are highly desirable for a wide range of gas sensing applications. However, the available gas sensors suffer mainly from high temperature operation or external stimulation for response/recovery. Here, we report an ultrasensitive-flexible-silver-nanoparticle based nanocomposite resistive sensor for ammonia detection and established the sensing mechanism. We show that the nanocomposite can detect ammonia as low as 500 parts-per-trillion at room temperature in a minute time. Furthermore, the evolution of ammonia from different chemical reactions has been demonstrated using the nanocomposite sensor as an example. Our results demonstrate the proof-of-concept for the new detector to be used in several applications including homeland security, environmental pollution and leak detection in research laboratories and many others.

SUBMITTER: Pandey S 

PROVIDER: S-EPMC3694287 | biostudies-other | 2013

REPOSITORIES: biostudies-other

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Nanocomposite based flexible ultrasensitive resistive gas sensor for chemical reactions studies.

Pandey Sadanand S   Goswami Gopal K GK   Nanda Karuna K KK  

Scientific reports 20130101


Room temperature operation, low detection limit and fast response time are highly desirable for a wide range of gas sensing applications. However, the available gas sensors suffer mainly from high temperature operation or external stimulation for response/recovery. Here, we report an ultrasensitive-flexible-silver-nanoparticle based nanocomposite resistive sensor for ammonia detection and established the sensing mechanism. We show that the nanocomposite can detect ammonia as low as 500 parts-per  ...[more]

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