102   Artículos

 
en línea
Huizhong Ma, Liandi Wang, Na Li, Junpu Li and Lan Zhang    
Diamond-like carbon (DLC) has attracted much attention due to its unique properties such as high chemical inertness, optical transparency, and high biocompatibility. In this study, the total gas flow rate was kept constant, while the ratio of reactive ga... ver más
Revista: Applied Sciences    Formato: Electrónico

 
en línea
Vanja Fontenele Nunes, Manuel Pedro Fernandes Graça, Imen Hammami, Ana Fabíola Leite Almeida and Francisco Nivaldo Aguiar Freire    
Electrophoretic deposition is a straightforward, environmentally friendly, and cost-effective technique for depositing and synthesizing nanomaterials, particularly nanofilms of semiconductors. Key parameters in electrophoresis include deposition time and... ver más
Revista: Applied Sciences    Formato: Electrónico

 
en línea
Baek-Ju Lee, Kyu-Beom Lee, Min-Ho Cheon, Dong-Won Seo and Jae-Wook Choi    
In this study, we conducted research on manufacturing molybdenum (Mo) thin films by a thermal atomic layer deposition method using solid MoO2Cl2 as a precursor. Mo thin films are widely used as gate electrodes and electrodes in metal-oxide semiconductor ... ver más
Revista: Coatings    Formato: Electrónico

 
en línea
May Zin Toe, Wai Kian Tan, Hiroyuki Muto, Go Kawamura, Atsunori Matsuda and Swee-Yong Pung    
As compared to other deposition techniques such as atomic layer deposition, chemical vapour deposition and sputtering, aerosol deposition (AD) is a simple and cost-effective technique to produce ZnO thin films. In this work, the effect of deposition cycl... ver más
Revista: Applied Sciences    Formato: Electrónico

 
en línea
Elena Kalinina, Larisa Ermakova and Elena Pikalova    
In this study, the formation of thin-film barrier coatings based on a highly conductive Bi1.60Er0.4O3 (EDB) solid electrolyte on supporting Ce0.8Sm0.2O1.9 (SDC) electrolyte substrates was implemented for the first time using electrophoretic deposition (E... ver más
Revista: Coatings    Formato: Electrónico

 
en línea
Vitali A. Grinberg, Victor V. Emets, Alexander D. Modestov, Aleksey A. Averin and Andrei A. Shiryaev    
Thin-film nanocrystalline zinc oxide electrodes were fabricated by electrochemical deposition of ZnO on FTO-coated glass slides. ZnO electrodes were promoted by CdO coating on top of ZnO in amounts corresponding to 0.8, 0.1, and 0.05 C cm-2 in electric u... ver más
Revista: Coatings    Formato: Electrónico

 
en línea
Jiyoon Choi, Jiha Seong, Sangbin Park, Hyungmin Kim, Sangmo Kim, Kyung Hwan Kim and Jeongsoo Hong    
Ag2O thin films have been applied in various devices, such as photodetectors, photocatalysts, and gas sensors, because of their excellent thermal stability, strong electrical properties, and stable structures. However, because various phases of silver ox... ver más
Revista: Coatings    Formato: Electrónico

 
en línea
Guanglu Zhang, Jindong Huang, Luoshu Wang, Zhenbo Geng, Dequan Zhang and Juncheng Liu    
Space solar cell glass covers require high radiation resistance and wide-spectrum high light transmittance. The existing research on the preparation of thin films or special optical structures on the surface of solar cells rarely involves systematic rese... ver más
Revista: Coatings    Formato: Electrónico

 
en línea
Ali Khalfallah and Zohra Benzarti    
This paper investigates the mechanical properties and creep behavior of undoped and Mg-doped GaN thin films grown on sapphire substrates using metal?organic chemical vapor deposition (MOCVD) with trimethylgallium (TMG) and bis(cyclopentadienyl)magnesium ... ver más
Revista: Coatings    Formato: Electrónico

 
en línea
Carlos Ocampo-Ortega, Ines Riech, Arturo Abelenda, Ricardo Mis-Fernández, Patricia Rodríguez-Fragoso and Julio Mendoza-Alvarez    
Tin sulfide (SnS) thin films were deposited by the chemical bath deposition technique. The used procedure allows us to obtain orthorhombic SnS in 3.5 h and achieve thicknesses of 390 nm. We study the influence of deposition times, percentage of Sn precur... ver más
Revista: Coatings    Formato: Electrónico

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