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Recently developed methods and materials for the detection of nerve agents are based on enzymes[17], interferometry[2], fluorescence[18], single-walled carbon nanotube[19], organic polymers[20], and quantum dots[21].
Moreover, the obtaining of uniformly ordered N-doped carbon polyhedron could shed light on the preparation of other heteroatom-doped electrode modifying materials for the detection of heavy metal ions.
As a next step, we herein designed a smartphone operated chloridometer that optimizes the analytical performance of the citrate-derived sensor materials for the detection of chloride in sweat.
This chapter discusses detectors that use superconducting materials for the detection of infrared, optical and x-ray photons, focusing on signal generation and noise sources of cryogenic detectors such as superconducting tunnel junctions and bolometer/calorimeter.
Especially, fabricating fluorescent materials for the detection of Zinc cation has drawn much more attention [9 13], as Zinc not only plays important roles in human bodies [14, 15], but also closely relates to severe pathological diseases such as Alzheimer's and Parkinson's diseases [16].
Owing to the superior intrinsic properties of III-nitride materials for the detection of photons with short wavelengths λ<340 nm, and the recent improvement of materials and device technologies, III-nitride photodetectors have great potential to be of practical and commercial importance for various sensing, monitoring, and control applications.
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This phenomenon can be utilized to construct a material for the detection of metal ions based on MWNTs (Scheme 2).
It has been demonstrated to be a highly sensitive material for the detection of many toxic gases.
Subsequently, the PANI/CMC/cellulose nanofibrous mat modified with laccase (Lac) was used as biosensor substrate material for the detection of catechol.
Here, we proposed ZnO composite nanorods as a sensor material for the detection of phenyl hydrazine by electrochemical method to overcome the lower over potential of the conventional electrode and show good performance in terms of sensitivity by improving electrochemical oxidations.
The different PrPc content in the three tissues of the CNS would be in accordance with the spatiotemporal appearance of PrPSc aggregates and would also support the idea that the obex is the best source of material for the detection of PrPSc in TSE rapid tests analyses.
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