High stability and photocatalytic activity of N-doped ZrO2 thin films

被引:0
|
作者
Mita, Carmen [1 ]
Frenti, Mariana [2 ]
Cornei, Nicoleta [1 ]
Bulai, Georgiana [3 ]
Dobromir, Marius [4 ]
Doroshkevich, Alexandr [5 ]
Mezentseva, Zhanna, V [5 ]
Mardare, Diana [2 ]
机构
[1] Alexandru Ioan Cuza Univ, Fac Chem, 11 Carol 1Blvd, Iasi 700506, Romania
[2] Alexandru Ioan Cuza Univ, Fac Phys, 11 Carol 1Blvd, Iasi 700506, Romania
[3] Alexandru Ioan Cuza Univ, Integrated Ctr Environm Sci, Studies North East Dev Reg CERNESIM, 11 Carol 1Blvd, Iasi 700506, Romania
[4] Alexandru Ioan Cuza Univ, Inst Interdisciplinary Res, Res Ctr Adv Mat & Technol, Dept Exact & Nat Sci, Iasi 700506, Romania
[5] Joint Inst Nucl Res, Str Joliot Curie 6, Dubna 141980, Russia
关键词
N-doped ZrO 2; Optical band gap; Wettability; Photocatalysis; RhB; ITO and ZrO 2 allowed band edges; RHODAMINE-B; TIO2; FILMS; DEGRADATION; DYES; MICROSTRUCTURE; NANOCOMPOSITES; FABRICATION; MECHANISMS; NITRIDE; REMOVAL;
D O I
10.1016/j.jallcom.2024.175134
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Undoped and nitrogen-doped ZrO 2 thin films were obtained by HiPIMS on ITO/glass substrates. To stabilize their structure, the films were subjected to a heat treatment. The properties of the heat-treated films (structure, morphology, elemental composition of the atomic species at the films surface, optical band gap, wettability and oxidation performance of Rhodamine B) were correlated. Some properties of the studied films were compared with the ones of the as-deposited films previously reported. By nitrogen doping, zirconia thin film modifies its fundamental absorption edge, becoming absorbent in the visible domain. The heat treatment improves the hydrophilic properties of both undoped and N-doped films, the last one becoming super-hydrophilic. The photocatalytic activity under UV was investigated for three RhB concentrations. The degradation efficiency is higher than 90 % for both undoped and N-doped ZrO 2 films, being better for the N-doped film. The studied films are exceptionally stable, keeping their oxidation properties almost unchanged after five degradation cycles, with a special remark for the N-doped film (the degradation efficiency around 93 %). The role of ITO substrate in charge carriers separation was investigated, based on the allowed band edges values, determined both for the films and ITO.
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页数:10
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