红外技术, 2019, 41 (10): 895, 网络出版: 2019-12-05  

TiO2薄膜基底上制作多碱光电阴极的探索研究

Analysis of Multi Alkali Photocathode Deposition on TiO2 Film
作者单位
1 北方夜视技术股份有限公司, 云南昆明 650217
2 微光夜视技术重点实验室, 陕西西安 710065
引用该论文

赵伟林, 赵恒, 曾进能, 赵学峰, 常乐, 李廷涛, 李晓峰. TiO2薄膜基底上制作多碱光电阴极的探索研究[J]. 红外技术, 2019, 41(10): 895.

ZHAO Weilin, ZHAO Heng, ZENG Jinneng, ZHAO Xuefeng, CHANG Le, LI Tingtao, LI Xiaofeng. Analysis of Multi Alkali Photocathode Deposition on TiO2 Film[J]. Infrared Technology, 2019, 41(10): 895.

参考文献

[1] 李晓峰, 张云昆,,许有毅, 等. 多碱碱光电阴极光电发发射过程研究[J]. 红 外技术, 2012, 344(8): 435-440. LI Xiaofeng, ZHHANG Yunkun, XUU Youyi, et al. Stuudy on photoemisssion process of multi-alkali cathode[JJ]. Infrared Technnology, 2012, 34(8): 435-440.

[2] 李晓峰, 杨文波波, 王俊, 等. 用光光致荧光研究多碱碱阴极光电发射机机理 [J].光子学报 , 22012, 41(12): 14355-1440. LI Xiaofeng, YYANG Wenbo, WANG Jun, ett al. Photoemisssion mechanism of mmulti-alkali photoccathode by photoluuminescence[J]. AActa Photonica Sinicaa, 2012, 41(12): 14435-1440.

[3] 常本康. 多碱阴阴极光学监控原 理研究[J].真空 14(1): 41-46. CHANG Benkanng. A study of suurvey and control principles on opttical information of multi-alkali phootocathode[J]. Vaacuum Science aand Technology (CHIINA), 1994, 14(1): 41-46.

[4] Beguchev V P, SShefova I A, Mussatov A L. Opticaal and photo-emisssive properties of mmultialkali photo-ccathode[J]. APPLL. Phys., 1993,26: 1499-1502.

[5] 常本康 . 碱金属锑锑化物阴极氧敏化化机理的探讨 [J]. 云光技术 , 1984 (4): 24-27.CHANG Benkanng. Research on thhe oxygen sensitizzation of alkali mmetal antimonide cathoode surfaces[J]. YUUNGUANG JISHUU, 1984(4): 24-27.

[6] 常本康. 多碱阴极极表层浅氧敏化初初探[J].应用光学学, 1985(4): 16-21. CHANG Benkanng. A preliminaryy study on the oxxygen sensitizationn of multi-alkaline caathode surfaces[J]. Journal of Appllied Optics, 1985(4): 16-21.

[7] 常本康, 刘元震震, 果玉忱 . 半透明明多碱阴极浅氧敏敏化研究 [J].南京京理工大学学报, 19990(4): 29-33.CHANG Benkang, LIU Yuanzhen, GUO Yuchen. Investigation of superficially oxidized semitransparent multialkali photocathode[J]. Journal of Nanjing University of Science and Technology, 1990(4): 29-33.

[8] 赵恒, 常乐, 李廷涛, 等. 多碱光电阴极激活技术研究 [J].红外技术 , 2018, 40(7): 695-700. ZHAO Heng, CHANG Le, LI Tingtao, et al. Study on Cs-O activation technology of multi-alkali photocathode[J]. Infrared Technology, 2018, 40(7): 695-700.

[9] 李晓峰, 李燕红 , 石峰, 等. Na2KSb与 GaAs光电阴极比较研究 [J].红外技术, 2013, 35(3): 173-179.LI Xiaofeng, LI Yanhong, SHI Feng, et al. Study on the difference between GaAs cathode and Na2KSb cathode[J]. Infrared Technology, 2013, 35(3): 173-179.

[10] 李丹, 何愿华 , 柳清菊. TiO2薄膜光学性质研究[J].大学物理 , 2005, 24(7): 36. LI Dan, HE Yuanhua, LIU Qingju. Study on optical properties of TiO2 film[J]. College Physics, 2005, 24(7): 36

[11] 赵宝星, 周继承 , 荣林艳 , 等. 二氧化钛太阳能电池减反膜结构和光学特性[J].中南大学学报 , 2011, 42(7): 2147-2151. ZHAO Baoxing, ZHOU Jicheng, RONG Linyan, et al. Structure and optical properties of titanium dioxide antireflection thin films for solar cell[J]. Journal of Central South University: Science and Technology, 2011, 42(7): 2147-2151.

[12] 张王乐, 冯昊. 原子层沉积制备纳米 TiO2薄膜研究进展 [J].化工新型材料, 2016, 44(9): 28-32. ZHANG Wangle, FENG Hao. Research progress of TiO2 thin film by atomic layer deposition[J]. New Chemical Materials, 2016, 44(9): 28-32.

[13] 于秋明, 曹良良 , 陈燕, 等. 原子层沉积低温制备高取向锐钛矿 TiO2薄膜[J].真空科学与技术学报 , 2016, 36(5): 510-514. SHE Qiuming, CAO Liangliang, CHEN Yan, et al. Synthesis and characterization of highly oriented anatase-phased TiO2 thin film by atomic layer deposition[J]. Chinese Journal of Vacuum Science and Technology, 2016, 36(5): 510-514.

[14] Chiappim W, Testoni G E, Moraes R S, et al. Structural, morphological, and optical properties of TiO2 thin film grown by atomic layer deposition on fluorine doped tin oxide conductive glass[J]. Vacuum, 2016, 123: 91-102.

[15] Hussin R, Choy K L, Hou X H. Deposited TiO2 thin film by atomic layer deposition(ALD) for optical properties[J]. ARPN Journal of Engineering and Applied Sciences, 2016, 11(12): 7529-7533.

[16] Hussin R, Choy K L, HOU X H. The effect of substrate on TiO2 thin film by atomic layer deposition (ALD)[J]. Advanced Materials Research, 2015, 1087(1): 147-151.

[17] Szindle M, Szindle M M, Borylo P, et al. Structure and optical properties of TiO2 thin film deposited by ALD method[J]. Open Physics, 2017, 15(1): 1067-1071.

[18] XU Y, Lotfabad E M, WANG H, et al. Nanocrystalline anatase TiO2: a new anode material for rechargeable sodium ion batteries[J]. Chemical Communications, 2013, 49(79): 8973-8975.

[19] 卢红亮 , 徐敏, 丁士进, 等. 原子层淀积 Al2O3薄膜的热稳定性研究 [J].无机材料学报 , 2006, 21(5): 1217-1222. LU Hongliang, XU Min, DING Shijin, et al. Thermal stability of atomic layer deposition Al2O3 thin films[J]. Journal of Inorganic Materials, 2006, 21(5): 1217-1222.

[20] 何俊鹏 , 章岳光 , 沈伟东 , 等. 原子层沉积制备 Al2O3薄膜的光学性能研究[J].光学学报 , 2010, 30(1): 277-282. HE Junpeng, ZHANG Yueguang, SHEN Weidong, et al. Optical properties of Al2O3 thin films fabricated by atomic layer deposition[J]. Acta Photonica Sinica, 2010, 30(1): 277-282.

赵伟林, 赵恒, 曾进能, 赵学峰, 常乐, 李廷涛, 李晓峰. TiO2薄膜基底上制作多碱光电阴极的探索研究[J]. 红外技术, 2019, 41(10): 895. ZHAO Weilin, ZHAO Heng, ZENG Jinneng, ZHAO Xuefeng, CHANG Le, LI Tingtao, LI Xiaofeng. Analysis of Multi Alkali Photocathode Deposition on TiO2 Film[J]. Infrared Technology, 2019, 41(10): 895.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!