2014
DOI: 10.1088/0268-1242/29/4/045012
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Effect of hydrogen on ZnO films and Au/ZnO Schottky contacts

Abstract: The structural, optical and electrical properties of ZnO films for different amounts of incorporated hydrogen (H), as well as the electrical characteristics of Au Schottky contacts based on these ZnO layers have been investigated. The films were deposited with the dc-magnetron sputtering technique, varying the H flow rate in the Ar/H sputtering gas. We found a significant improvement of the crystallinity (as obtained from x-ray diffraction spectra), Hall mobility and resistivity as the H concentration per vol.… Show more

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Cited by 9 publications
(4 citation statements)
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“…However, this dependence is observed, except of the cases with EG exceeding 0.1% (w/v). This observation is also in agreement with C Tsiarapas et al , [ 35 ]. They correlated the best results for Schottky diodes to a certain amount (33.3%) of hydrogen.…”
Section: Resultssupporting
confidence: 93%
“…However, this dependence is observed, except of the cases with EG exceeding 0.1% (w/v). This observation is also in agreement with C Tsiarapas et al , [ 35 ]. They correlated the best results for Schottky diodes to a certain amount (33.3%) of hydrogen.…”
Section: Resultssupporting
confidence: 93%
“…This observation is also in agreement with Tsiarapas et al 145 They correlated the best results for Schottky diodes to a certain amount (33.3%) of hydrogen. Therefore, one can infer that, a low amount of PEG introduces hydrogen, which acts as impurities and lead to increase the passivation of nonradioactive defect.…”
Section: Dopamine Wide Range Detection Sensor Based On Modified Co3o4supporting
confidence: 92%
“…36 Moreover, several experimental studies have conrmed that hydrogen improves electrical conductivity mainly by increasing the free carrier concentration and/or the carrier mobility. [37][38][39][40] Also, it is benecial for decreasing the recombination rate of the lightinduced e À /h + pairs and stabilizing the charge carriers on the surface of photocatalyst, eventually elevating the photocatalytic reaction efficiency. Adhering to this idea, several researchers have also obtained high photoconductivity and infrared absorption with hydrogen-related impurity in ZnO structures.…”
Section: Introductionmentioning
confidence: 99%