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The same linear response range from 1.00 × 10−6 to 1.00 × 10−2 mol L−1 and similar detection limits, 6.3 × 10−7 mol L−1 for graphite-epoxy sensor and 9 × 10−7 mol L−1 for carbon paste sensor, are obtained.
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This paper presents an electromechanical modeling of the Direct Current (DC) electrical resistance of CNT reinforced cement paste sensors based on a piezoelectric/piezoresistive lumped circuit.
Potentiometric sensors constructed with [bmim]BF4 and MWCNTs show better sensitivity, selectivity, response time, and response stability compared to Er III) carbon paste sensors.
Carbon paste sensors were constructed by mixing the molecularly imprinted, ordered mesoporous silica with graphite powder and paraffin oil, and they were found to detect bisphenol A (BPA) with enhanced selectivity due to their ordered mesoporous structure and their successful molecular imprinting.
Carbon fiber cement paste piezoresistive sensors (CFCPS) are made of piezoresistivity of carbon fiber cement paste and mainly used for local monitoring of concrete structures.
NSP was used as a sensing material during construction of carbon paste Er III) sensors.
The linear concentration range for the proposed electrodes was between 10−11 and 10−4 mol L−1, with the lowest detection limit (2.46 pmol L−1) obtained using the diamond paste dot-sensor modified with zinc-5,10,15,20-tetra(4-sulfophenyl)porphyrin. 4-sulfophenyl porphyrin
The most reliable design is that of carbon paste based sensors; this design was adopted for the construction of potentiometric, enantioselective membrane electrodes as well as for the construction of the amperometric biosensors, and immunosensors.
Medicine/health - as in anti-cancer drugs, implants, dental pastes, diagnostic sensors.
The modified carbon-paste electrochemical sensors were compared, and the MCPE prepared from SDS/polyglycine/flake-shaped CuO nanoparticles exhibited better performance than the MCPE prepared from CTAB/polyglycine/flake-shaped CuO nanoparticles.
Tartrazine dye Na3TZ in foodstuff products was determined by a new modified carbon paste electrode, encoded sensor A, and a coated silver wire electrode, encoded sensor B, based on tartrazine TZ- cetryltrimethyl ammoniumbromide CTAB as a chemical modifier TZ-CTA.
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