1)  ITO Ag ITO flexible thin film
					 
	
					
				
				 
	
					
				ITO-Ag-ITO柔性薄膜
			
					2)  ITO/Ag/ITO multilayer film
					 
	
					
				
				 
	
					
				ITO/Ag/ITO复合薄膜
			
					3)  Ag-ITO composite films
					 
	
					
				
				 
	
					
				Ag-ITO复合薄膜
				1.
					In this investigation, Ag-ITO composite films of different thicknesses were pre.
					 
					
						
						 
					
						研究目的在于探索新的、结构性能优异的透反射式高电导光电功能薄膜材料,推进Ag-ITO复合薄膜在新型透反射式LCD显示技术中的应用。
					
					4)  ITO films
					 
	
					
				
				 
	
					
				ITO薄膜
				1.
					Transparent conductive ITO films (5 wt%~20wt% Sn-doped) were fabricated on soda lime float glass substrate by a colloid technique.
						
						以金属铟和锡盐为原料采用胶体法制备Sn掺杂三氧化二铟(ITO)前驱物浆料,通过提拉法在镀有SiO2薄层的浮法玻璃基片上制备透明导电ITO薄膜。
					2.
					High quality ITO films were deposited on glass substrates by sol-gel method in the solution composed of indium metal(In) and stannic chloride (SnCl 4·5H 2O).
						
						以In金属和SnCl4·5H2 O作为原材料 ,采用溶胶一凝胶法在玻璃基体上制备了高质量的ITO薄膜 ,并分析了Sn掺杂时、热处理温度、热处理时间三种工艺参数对ITO薄膜电学性能的影响 ,确定了ITO薄膜的相组
					3.
					Zirconium-doped ITO films were deposited on glass substrate by co-sputtering technology with two targets.
						
						利用双靶共溅法在玻璃衬底上沉积了Zr掺杂ITO薄膜,对比研究了在不同氧流量下ITO和ITO∶Zr薄膜性能的变化。
					
					5)  ITO film
					 
	
					
				
				 
	
					
				ITO薄膜
				1.
					Influence of nitrification methods upon optical and electrical properties of ITO films;
					 
					
						
						 
					
						氮化处理对ITO薄膜光电特性影响
					2.
					Experimental studies on thermal shielding and saving energy of the coated ITO film for automobile front windshield;
						
						汽车前挡风玻璃用ITO薄膜的隔热及节能实验研究
					3.
					The experimental results showed that it is absolutely feasible to fabricate ITO film on the quartz matrix by sol-gel techni.
						
						ITO薄膜具有由多个粒子堆积而成的多孔微观结构,其晶体结构为立方锰铁矿结构,[111]为明显的择优取向,经过5次镀膜后其厚度在150nm以下,薄膜的方电阻为110Ω,其电阻率约为1。
					
					6)  ITO thin films
					 
	
					
				
				 
	
					
				ITO薄膜
				1.
					Progress in preparation of ITO thin films by Sol-Gel process;
					 
					
						
						 
					
						溶胶-凝胶法制备ITO薄膜研究进展
					2.
					The XRD, SEM and EDS are used to characterize the ITO thin films.
					 
					
						
						 
					
						以铟锡氯化物为原料,采用水热法在玻璃基片上制备了氧化铟锡(ITO)薄膜,并利用X射线衍射 (XRD)、能谱分析(EDS)、扫描电子显微镜(SEM)等手段对薄膜的相结构、化学组成及形貌进行了表征,研究了水热温度和时间等条件对ITO薄膜光吸收特性的影响。
					3.
					The phase composition and morphology properties of ITO thin films were characterized by the techniques of X-ray diffraction(XRD)and scanning electron microscope(SEM).
						
						结果表明,采用溶胶-凝胶旋涂法制备的ITO薄膜是由立方相纳米颗粒构成,随涂层增加,薄膜表面变得平滑。
					补充资料:Ito导电膜玻璃
		 
			ito导电膜玻璃
ito导电膜玻璃
氧化铟锡(indium-tin oxide)透明导电膜玻璃,多通过ito导电膜玻璃生产线,在高度净化的厂房环境中,利用平面磁控技术,在超薄玻璃上溅射氧化铟锡导电薄膜镀层并经高温退火处理得到的高技术产品。
产品广泛地用于液晶显示器(lcd)、太阳能电池、微电子ito导电膜玻璃、光电子和各种光学领域。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。