1、

The spherical powder product is obtained with particle size about 0.05 μ m and well-distributed, excellent flowability and suitable for preparation of ITO target material with high density.

产品平均粒径0.05μm左右,颗粒为球形,分布较均匀,流动性好,适于制备高密度的ITO靶材。

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2、

Comparing the different graphs of XRD of powder and bulk, we obtain that the ITO crystal size can be minimized after explosion consolidation, which contributes to controlling the crystal size of the ITO target development during the following sintering.

通过粉末和压实后样品的XRD图及SEM照片的比较,发现在爆炸冲击压实纳米ITO陶瓷粉末时,能够使晶粒度减小,有助于后续烧结密实过程中控制ITO靶材的晶粒度的过分长大;

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3、

ITO conductive films respectively with ITO target and In-Sn target were deposited on glass substrates by DC magnetron sputtering method.

采用直流磁控溅射法,分别用ITO陶瓷靶、In-Sn合金靶,在玻璃基片上镀膜。

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4、

Al-doped ZnO ( AZO) films have become alternative materials to ITO because of their low cost, non-toxicity and stability in hydrogen plasma.

铝掺杂氧化锌(AZO)薄膜因具备成本低廉、无毒和在氢等离子体中稳定性高等优点而成为ITO薄膜的替代者。

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5、

And then, photolithography and wet etching were used to pattern the ITO films for electrical measurement, which involved the measurement of temperature coefficient of resistance and the gauge factor.

然后用光刻和刻蚀的方法制作电学测试所需的图形。对于ITO薄膜的电学测试包括对其电阻温度系数和响应因子的测量两部分。

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6、

A Glass/ ITO/ CdS/ CdTe/ Cu thin film solar cell is also prepared in the thesis.

此外,实验上制备出玻璃/ITO/CdS/CdTe/Cu金属背电极薄膜太阳能电池,并得到了一些有益的结果。

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7、

The uses of light emitting material with high fluorescent efficiency, the multilayer structure controlling exciton recombination and interfacial modification through metal cathode or ITO anode, have been proven to be a very effective method to improve the efficiency of the device.

利用荧光效率较高的有机发光分子,设计局限激子的多层器件结构及采用金属阴极和ITO阳极的界面修饰等手段,已经被证明是提高器件效率非常有效的方法。

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8、

In addition the paper through the wet milling and combined ultrasonic oscillation prepared high dispersion and high stability of ITO slurry, from cost control, technical indicators, and economic benefits in terms of the application of nano-ITO powder play a promotional role.

另外本论文中通过湿法球磨及超声振荡相结合方法制备高分散、高稳定的ITO浆料,从成本控制、技术指标及经济效益等方面对纳米ITO粉体的应用起到推广作用。

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9、

Joi ITO, director of MIT Media Lab

伊藤穰一,麻省理工学院大学媒体实验室(MIT Media Lab)董事

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10、

ITO thin films on glass substrates have been prepared by hydrothermal treating a mixed solution of the indium tin chloride and ammonia.

本研究的重点是以铟锡氯化物水溶液为前驱物,氨水为沉淀剂,采用水热法在载玻片衬底上制备了ITO薄膜。

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11、

Tin doped indium oxide ( ITO) films were deposited on glass substrates by reactive magnetron sputtering using a metallic alloy target ( In Sn, 90 10).

采用铟锡合金靶(铟锡,90-10),通过直流反应磁控溅射在玻璃基片上制备出ITO薄膜,并在大气环境下高温退火处理。

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12、

The recovery of indium from waste ITO target is a problem to be dealt with urgently in production.

从ITO废靶中回收铟是生产中亟待解决的问题。

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13、

In this case, ITO precursor slurries were prepared by organic and inorganic sol-gel methods using metal indium and tin salt as raw materials. A dip-coating process was performed to deposit ITO precursor slurry on the substrate.

本文以锡的无机盐和金属铟为原料,分别通过有机法和无机法制备出ITO前驱物浆料,采用浸渍提拉法在玻璃基片上涂覆薄膜并经过热处理得到ITO薄膜样品。

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14、

The stable precursor slurry of indium-tin-oxide ( ITO) was prepared using metal In and crystalloid tin tetrachloride as raw materials by adding different additives.

以金属铟和结晶四氯化锡为原料,通过加入各种添加剂制备了稳定的ITO前驱物浆料。

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15、

The Study for the ECL Behavior of Luminol on the Surface of ITO Glass

鲁米诺在ITO玻璃上的电化学发光行为研究

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16、

But some critical factors, such as chemical and thermal instability and lower surface energy, limit the wider application of ITO films, and optical-electrical properties also should be further improved.

但是ITO薄膜的化学和热不稳定性以及低表面能限制了ITO薄膜的应用,同时其光电性能也需要进一步改善,提高ITO薄膜的综合性能是当前研究的一个重要方向。

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17、

Abrasion resistance and thermal insulating properties of waterborne polyurethane coating film were improved by adding nano-Al 2 O 3 and nano-ITO respectively.

分别将纳米氧化铝(Al2O3)和纳米氧化铟锡(ITO)加入到水性聚氨酯树脂中,改善了水性聚氨酯涂膜的耐磨性能和隔热性能。

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18、

ITO films with low sheet resistance can be obtained by raising the substrate temperature during deposition or annealing in the inert gases at high temperature.

低电阻率的ITO膜可以通过提高沉积时的衬底温度或高温退火来获得。

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19、

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

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