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wangkt
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clwang(½ð±Ò+5,VIP+0):·Ç³£¸Ðл¹Ø×¢ 8-10 20:02
clwang(½ð±Ò+5,VIP+0):·Ç³£¸Ðл¹Ø×¢ 8-10 20:02
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2Â¥2009-08-10 10:54:09
clwang
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- ×¢²á: 2008-06-20
- ÐÔ±ð: GG
- רҵ: ¹âѧ

3Â¥2009-08-10 15:42:55
wangkt
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- Ó¦Öú: 0 (Ó×¶ùÔ°)
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- ³æºÅ: 689100
- ×¢²á: 2009-01-07
- ÐÔ±ð: MM
- רҵ: ÉúÎïÎÞ»ú»¯Ñ§
4Â¥2009-08-11 01:18:20
monitor2885
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5Â¥2009-08-11 09:02:56
monitor2885
ÖÁ×ðľ³æ (Ö°Òµ×÷¼Ò)
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- Ó¦Öú: 6 (Ó×¶ùÔ°)
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- ½ð±Ò: 39490
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- Ìû×Ó: 4996
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zap65535(½ð±Ò+29,VIP+0):²¹·¢ 12-23 13:22
zap65535(½ð±Ò+4,VIP+0):²¹·¢ 12-23 13:22
zap65535(½ð±Ò+29,VIP+0):²¹·¢ 12-23 13:22
zap65535(½ð±Ò+4,VIP+0):²¹·¢ 12-23 13:22
| When ITO thin film is taken as PTCDA/Si-- organic/inorganic photodetector anode, the substrate material is organic substance that can not withstand high temperature. ITO thin film deposition at low temperature is required. In this paper, RF magnetron sputtering on glass substrate surface is used to deposit ITO transparent conductive film. Then, through four-point probe and ultraviolet visible near-infrared spectroscopy measurement are applied to test conductivity and light transmission rate. The experimental results show that with the increasing pressure in sputtering process, film transmittance and resistivity will gradually deteriorate. While as sputtering power increases, resistivity of thin film will become a good performance but transmittance deteriorated. However, the increase in oxygen partial pressure to some extent, can contribute to improvement of transmittance, at the same time lead resistivity of film increases. But under high-temperature film annealing will reduce resistivity greatly. |

6Â¥2009-08-11 16:19:38
monitor2885
ÖÁ×ðľ³æ (Ö°Òµ×÷¼Ò)
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- ·ÒëEPI: 15
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- Ìû×Ó: 4996
- ÔÚÏß: 2174.3Сʱ
- ³æºÅ: 701577
- ×¢²á: 2009-02-15
- ÐÔ±ð: GG
- רҵ: Éú̬ϵͳÉú̬ѧ

7Â¥2009-08-11 16:21:32
smithnancy
Òø³æ (ÕýʽдÊÖ)
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8Â¥2009-08-12 13:46:24














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