2019
DOI: 10.1016/j.bios.2018.10.015
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Molecularly-imprinted chloramphenicol sensor with laser-induced graphene electrodes

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Cited by 145 publications
(93 citation statements)
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References 34 publications
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“…Due to the precise combination between recognition elements and targeted chemicals, the sensors often show extraordinary sensing sensitivity. Cardoson et al prepared LIG electrode combined with a biorecognition element to detect chloramphenicol (CAP) [ 48 ]. Figure 3 a shows the fabrication of three electrodes by one-step and mask-free LIG technology and the modification of the working electrode.…”
Section: Lig-based Chemical Sensorsmentioning
confidence: 99%
“…Due to the precise combination between recognition elements and targeted chemicals, the sensors often show extraordinary sensing sensitivity. Cardoson et al prepared LIG electrode combined with a biorecognition element to detect chloramphenicol (CAP) [ 48 ]. Figure 3 a shows the fabrication of three electrodes by one-step and mask-free LIG technology and the modification of the working electrode.…”
Section: Lig-based Chemical Sensorsmentioning
confidence: 99%
“…A particular frequency showed that the reactance values were different for the five chemicals for all the tested concentrations. Other works on the use of laser-induced graphene for the detection of biomolecules in food are [ 116 , 117 ]. A summary of the above-mentioned research works on graphene-based sensors has been provided in Table 4 .…”
Section: Type Of Impedimetric Sensors Utilized For the Inspection mentioning
confidence: 99%
“…Vanadium pentaoksida pergerakannya di dalam laruta cukup reaktif,karena adanya unsur (21)(22)(23)(24)(25) asam yang berlebih. Ketika dicampurkan di dalam senyawa lain, vanadium pentaoksida ini akan membentuk senyawa asam (26) bersama dengan larutannya.…”
Section: Pendahuluanunclassified