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介绍了各类ZnO基纳米发光材料的发光机制、制备方法和发光特性的研究进展,并对其未来的研究方向进行了展望.

参考文献

[1] 徐叙瑢;苏勉曾.发光学与发光材料[M].北京:化学工业出版社,2004:546.
[2] 马勇,王万录,廖克俊,吕建伟,孙晓楠.ZnO薄膜的光致发光[J].功能材料,2004(02):139-141,144.
[3] Bagnall DM;Chen YF;Zhu Z;Yao T;Koyama S;Shen MY;Goto T .Optically pumped lasing of ZnO at room temperature[J].Applied physics letters,1997(17):2230-2232.
[4] Yu Ping;Tang Z K;Wong G K L.In 23nd Int Conf on the Physics of Semiconductor[M].Singapore:World Scientific Publishing Co.Ptc.Ltd,1996:1453.
[5] Van Dijhen A;Meulenkamp E A;Vanmmaekelbergh D et al.[J].Physical Chemistry B,2000,104(08):1715.
[6] Steigerwald M L;Brus L E .[J].Semiconductor Crystallites,1990,23(01):183.
[7] Meulenkamp E A .[J].Physical Chemistry B,1998,102(29):5566.
[8] Reynolds DC.;Jogai B.;Morkoc H.;Look DC. .SIMILARITIES IN THE BANDEDGE AND DEEP-CENTRE PHOTOLUMINESCENCE MECHANISMS OF ZNO AND GAN[J].Solid State Communications,1997(9):643-646.
[9] Bagnall DM.;Shen MY.;Zhu Z.;Goto T.;Yao T.;Chen YF. .Room temperature excitonic stimulated emission from zinc oxide epilayers grown by plasma-assisted MBE[J].Journal of Crystal Growth,1998(0):605-609.
[10] Vanhensden K;Seager C H;Warren W L et al.[J].Applied Physics Letters,1996,68(03):403.
[11] 杨晓东,张景文,邹玮,侯洵.紫外光电材料ZnO的反应溅射制备及研究[J].光子学报,2002(10):1216-1219.
[12] Meyer N J;Senson F P .[J].Journal of Applied Physics,1996,37(11):4297.
[13] Cho S;Ma J;Sun Y .[J].Applied Physics Letters,1999,75(18):2761.
[14] Mo CM.;Liu YS.;Zhang Y.;Zhang LD.;Li YH. .Enhancement effect of photoluminescence in assemblies of nano-ZnO particles silica aerogels[J].Journal of Applied Physics,1998(8):4389-4391.
[15] Borgohain K.;Mahamuni S. .Luminescence behaviour of chemically grown ZnO quantum dots[J].Semiconductor Science and Technology,1998(10):1154-1157.
[16] Mahamuni S;Borgohain K;Bendre B S et al.[J].Journal of Applied Physics,1999,85:2861.
[17] Wong E M;Searcon P C .[J].Applied Physics Letters,1999,74:2939.
[18] Guo Lin et al.[J].Applied Physics Letters,2000,76:2901.
[19] Studeikin S A;Golego N;Cocivera M .[J].Journal of Applied Physics,1998,84:2287.
[20] Haase M et al.[J].Journal of Physical Chemistry,1988,92:482.
[21] Spanhel L;Anderson M A .[J].Journal of the American Chemical Society,1991,113:2826.
[22] Guo Lin;Yang S H;Yang C L et al.[J].Chemistry of Materials,2000,12:2268.
[23] Vanheusden K;Warren W L;Seager C H et al.[J].Applied Physics Letters,1996,79(03):7983.
[24] 宋国利,梁红,孙凯霞.纳米晶ZnO可见发射机制的研究[J].光子学报,2004(04):485-488.
[25] Liu M Kitaiah;Mascher P .[J].Journal of Luminescence,1992,54:35.
[26] 张喜田 .[D].中国科学院长春光学精密机械与物理研究所,2002.
[27] 孙玉明 .ZnO及其缺陷电子结构的FP-LMTO研究[D].中国科学技术大学,2000.
[28] 林碧霞,傅竹西,贾云波,廖桂红.非掺杂ZnO薄膜中紫外与绿色发光中心[J].物理学报,2001(11):2208-2211.
[29] 赵东旭 .[D].中国科学院长春光学精密机械与物理研究所,2002.
[30] 曹亮亮,叶志镇,张阳,朱丽萍,张银珠,诸葛飞,赵炳辉.脉冲激光沉积法室温下ZnO薄膜的制备与表征[J].真空科学与技术学报,2005(04):256-258,262.
[31] Washington P L;Wong H C;Dai J Y et al.[J].Applied Physics Letters,1998,72(25):3261.
[32] 周新翠,叶志镇,陈福刚,徐伟中,缪燕,黄靖云,吕建国,朱丽萍,赵炳辉.MOCVD法制备磷掺杂p型ZnO薄膜[J].半导体学报,2006(01):91-95.
[33] 沈文娟,王俊,王启元,段垚,曾一平.MOCVD方法在Si衬底上低温生长ZnO薄膜[J].功能材料与器件学报,2006(01):63-66.
[34] Chu Zhengsheng;Li Bingsheng;Liu Chun et al.[J].Journal of Luminescence,2000,21(04):383.
[35] Yu P;Tang Z K;Wong G K L et al.[J].Solite State Comanications,1997,103(08):459.
[36] Yu P.;Wong GKL.;Kawasaki M.;Ohtomo A.;Koinuma H.;Segawa Y.;Tang ZK. .Room-temperature gain spectra and lasing in microcrystalline ZnO thin films[J].Journal of Crystal Growth,1998(0):601-604.
[37] Bagnall DM.;Zhu Z.;Yao T.;Shen MY.;Goto T.;Chen YF. .High temperature excitonic stimulated emission from ZnO epitaxial layers[J].Applied physics letters,1998(8):1038-1040.
[38] Tang ZK.;Yu P.;Kawasaki M.;Ohtomo A.;Koinuma H.;Segawa Y.;Wong GKL. .Room-temperature ultraviolet laser emission from self-assembled ZnO microcrystallite thin films[J].Applied physics letters,1998(25):3270-3272.
[39] 康明,谢克难,卢忠远,藤元成,戴亚堂,孙蓉,熊小利,许丕池.溶胶-凝胶法制备纳米级ZnO:Eu,Li红色荧光材料[J].四川大学学报(工程科学版),2005(01):65-68.
[40] 张德尧.纳米ZnO粉的新水热法制备技术[J].稀有金属快报,2002(06):20-21.
[41] 丁士文,张绍岩,刘树娟,康全影,刘燕朝.水热合成纳米ZnO及其光催化性能研究[J].河北大学学报(自然科学版),2002(03):246-249.
[42] 许宗祥,张健,林敬东,陈鸿博,廖代伟.纳米ZnO粉体的制备及其影响因素[J].厦门大学学报(自然科学版),2002(04):472-475.
[43] 秦秀娟,邵光杰,李慧,谌岩,陈闽子.高品质纳米氧化锌粉体的制备及其表征[J].燕山大学学报,2002(03):236-238,241.
[44] Fujita Y;Nakai R .[J].Journal of Crystal Growth,2004,272(04):795.
[45] Look D C;Claflin B .[J].Physica Status Solidi C,2004,4:624.
[46] Choi I H .[J].Journal of the Korean Physical Society,2005,47(04):696.
[47] Ganesan PG;McGuire K;Kim H;Gothard N;Mohan S;Rao AM;Ramanath G .ZnO nanowires by pulsed laser vaporization: Synthesis and properties[J].Journal of nanoscience and nanotechnology,2005(7):1125-1129.
[48] Kang Hong Seong;Ahn Byung Du;Kim Jong Hoon et al.[J].Applied Physics Letters,2006,88(20):202108.
[49] Mu Hee Choi;Tae Young Ma .[J].Journal of Materials Science,2006,41(02):431.
[50] Wang Buguo;Callahan M J;Bouthillette L O et al.[J].Journal of Crystal Growth,2006,287(02):381.
[51] Xiu F X;Yang Z;Mandalapu L J et al.[J].Mater Res Soc Symposium Proceedings,2006,892:457.
[52] Koayashi;Kenkichiro;Tomita et al.[J].Key Eng Mater Electroceramics in Japan Ⅷ,2006,301:185.
[53] 于磊;娄志东;徐春祥 等.[J].光电子技术,1997,17(02):94.
[54] 刘舒曼,刘峰奇,张志华,郭海清,王占国.ZnO:Tb纳米晶的协同发光现象[J].物理学报,2000(11):2307-2309.
[55] 杨秀健,施朝淑,许小亮.纳米ZnO和ZnO∶Eu3+的表面效应及发光特性[J].物理学报,2002(12):2871-2874.
[56] 林碧霞,傅竹西,刘磁辉,廖桂红,朱俊杰,段理.氧化锌宽禁带半导体薄膜的发光及其P-n结特性[J].固体电子学研究与进展,2002(04):417-420,444.
[57] 刘益春,张喜田,张吉英,吕有明,孔祥贵,申德振,范希武.氧化锌可见区发光机制[J].发光学报,2002(06):563-569.
[58] 张琳丽;郭常新;赵俊静.[A].,2005:144.
[59] 郭书霞,张兴堂,赵慧玲,李蕴才,黄亚彬,杜祖亮.CeOx与ZnO纳米复合粉体的制备及其发光性能[J].光谱学与光谱分析,2005(06):840-843.
[60] 叶志镇,徐伟中,曾昱嘉,江柳,赵炳辉,朱丽萍,吕建国,黄靖云,汪雷,李先杭.MOCVD法制备ZnO同质发光二极管[J].半导体学报,2005(11):2264-2266.
[61] 杜广芬,左健,李福利,张运生,耿玉珍.掺Sb纳米ZnO的光致发光的研究[J].光散射学报,2004(01):63-65.
[62] Wu Changle;Qiao Xueliang;Chen Jianguo.[J].Materials Letters,2006(60):1828.
[63] Wang Yude;Zhang Shuo;Wu Xinghui et al.[J].Materials Chemistry and Physics,2006,98:121.
[64] Xueac S W;Zuab X T;Zheng W G et al.[J].Physica B:Condensed Matter Physics,2006,382:201.
[65] 陈建刚,郭常新,张琳丽,胡俊涛.一步溶液法制备ZnO亚微米晶体棒及其发光性能[J].发光学报,2006(01):59-65.
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