1)  electrodeposition
电[淀]积
2)  electro deposition (ED)
电淀积
1.
The authors firstly described the advantages of the selected semiconductor photovoltaic active material CuIn 1-x Ga xSe 2 (CIGS) and the novel thin film precursor solution electro deposition (ED) technology used in this project for obtaining low cost high efficiency thin-film solar cells.
该文叙述了发展低成本、高效率太阳电池光伏有源材料CuIn1 xGaxSe2 (CIGS)和新式薄膜电[淀]积技术的优点。
3)  electrostatic precipitation
静电淀积
4)  Electro-deposition
电 [淀]积
5)  electricity
1.
Introduced reducing basic electrical bill,enhancing power factor,increasing voltage rank,eliminating high energy consumption equipment,rearranged production by using the difference electrovalence with peak,plane and vale,used frequency conversion control,adopted new electricity saving measure and electricity saving technology so on.
介绍了降低基本电费、提高功率因数、提高电压等级、淘汰高能耗设备、利用电价的峰平谷差价安排生产、使用变频控制、采用新型节电技术等节电措施。
2.
It is pointed out:the unity with electrochemical enterprises is necessary for existing of chlorate enterprises, and purchasing electricity with net connecting is the way for them to develop and strengthen.
电是生产氯酸盐的主要原料。
6)  electric
1.
The anatomic basis and the clinical treatment of the elbow joint stiffness after electric injury;
电烧伤后肘关节纤维性强直的解剖学基础与临床治疗
2.
Mechanism of the role of electrical field in electrical injury;
电场在电损伤中的作用机制
7)  electrical
1.
Early transplantation of double rectus abdominis musculo-cutaneous flaps from upper abdomen for the repair of patients with electrical injury in the wrist;
早期应用上腹部腹直肌双肌皮辦修复腕部电烧伤创面
2.
Establishment of a rabbit model of non-thermal high voltage electrical injury;
兔高压电非热性损伤模型的建立
3.
Morphological changes in canine heart after electrical injury.;
电烧伤犬心脏组织的形态观察
8)  elec
9)  eletricity
10)  electric
电;电动;带电
补充资料:化学气相淀积(chemicalvapourdeposition(CVD))
化学气相淀积(chemicalvapourdeposition(CVD))

化学气相淀积是一种气体反应过程。在这个过程中,由某些选定气体的热诱导分解在衬底上形成某种介质层。在硅平面器件及集成电路中最常用的是淀积SiO2,Si3N4和多晶硅。化学气相淀积也广泛用于半导体单晶薄膜的外延生长,特别是多层膜的外延生长。在光电子器件和微波器件的制作中尤其常用。CVD方法视工作时反应室中气体压强不同分为常压、低压和超低压CVD。根据化学反应能量提供方式不同可分为热分解、光加热、射频加热、热丝、光、等离子体增强和微波等离子体增强CVD。按反应气源不同又分为卤化物、氢化物和金属有机化合物CVD(MOCVD)。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条