Conjugated
Polymer/Nanoparticles Nanocomposites for High Efficient and Real-Time
Volatile Organic Compounds Sensors
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Abstract
The
present work demonstrates a high efficient and low cost volatile organic
compounds (VOCs) sensor. Nowadays, VOCs, which are typically toxic,
explosive, flammable, and an environmental hazard, are extensively
used in R&D laboratories and industrial productions. Real-time
and accurately monitoring the presence of harmful VOC during the usage,
storage, or transport of VOCs is extremely important which protects
humans and the environment from exposure in case of an accident and
leakage of VOCs. The present work utilizes conducting polymer/nanoparticles
blends to sense various VOCs by detecting the variation of optical
properties. The novel sensor features high sensitivity, high accuracy,
quick response, and very low cost. Furthermore, it is easy to fabricate
into a sensing chip and can be equipped anywhere such as a laboratory
or a factory where the VOCs are either used or produced and on each
joint between transporting pipes or each switch of VOC storage tanks.
Real-time sensing is achievable on the basis of the instant response
to VOC concentrations of explosive limits. Therefore, an alarm can
be delivered within a few minutes for in time remedies. This research
starts from investigating fundamental properties, processing adjustments,
and a performance test and finally extends to real device fabrication
that practically performs the sensing capability. The demonstrated
results significantly advance the current sensor technology and are
promising in commercial validity in the near future for human and
environmental safety concerns against hazardous VOCs