2018
DOI: 10.1016/j.jtice.2018.01.051
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Study on nanocrystalline silicon thin films grown by the filtered cathodic vacuum arc technique using boron doped solid silicon for fast photo detectors

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Cited by 14 publications
(7 citation statements)
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“…Interestingly, the absolute value of the slope increases as the polarity is enhanced, indicating the fluorescence quenches more dramatically in solvent of higher polarity. This response of optical/electric signal over external stimuli usually implies a sensor [32][33][34]. The relationship between solvent polarity and fluorescence quenching rate is shown in figure 3 ( )…”
Section: Resultsmentioning
confidence: 99%
“…Interestingly, the absolute value of the slope increases as the polarity is enhanced, indicating the fluorescence quenches more dramatically in solvent of higher polarity. This response of optical/electric signal over external stimuli usually implies a sensor [32][33][34]. The relationship between solvent polarity and fluorescence quenching rate is shown in figure 3 ( )…”
Section: Resultsmentioning
confidence: 99%
“…Also, p-type nc-Si:H has been used as window layer in a-Si:H solar cells. [14,15] Different techniques have been used for the synthesis of nc-Si:H films, such as plasma enhanced chemical vapor deposition [PE-CVD], micro waves PE CVD, [17] electron beam evaporation, [18] electron cyclotron resonance PE CVD, [19] RF magnetron sputtering, [20] hot wire CVD, [21] Si ion implantation, [22] cathodic vacuum arc [23] etc. Out of these techniques PE-CVD has been extensively used for industrial applications.…”
Section: : Introductionmentioning
confidence: 99%
“…[21][22][23][24][25] Nowadays the photodetection properties are also thoroughly investigated together with the humidity sensing behaviour. [26][27][28][29] Some of the nanomaterials show the extraordinary behaviour of responding to both humidity as well as acting as a photodetector. In recent years to minimize the wastage of energy and improve the energy-saving practices, photoconduction has been studied for different nanomaterials.…”
Section: Introductionmentioning
confidence: 99%