English
新闻公告
More
化学进展 2004, Vol. 16 Issue (05): 820- 前一篇   后一篇

• 综述与评论 •

高密度可录光盘存储材料:金属卟啉配合物*

陈志敏1;左霞1;吴谊群1,2**   

  1. (1.黑龙江大学化学化工学院功能材料实验室 哈尔滨 150080; 2.中国科学院 上海光学精密机械研究所 高密度光存储实验室 上海 201800)
  • 收稿日期:2003-07-01 修回日期:2004-02-01 出版日期:2004-10-14 发布日期:2004-10-14
  • 通讯作者: 吴谊群

High Density Recordable Optical Disk Storage Materials: Metal Porphyrin Complexes

Chen Zhimin1;Zuo Xia1;Wu Yiqun1,2**   

  1. (1.Laboratory of Functional Materials, College of Chemistry and Chemical Engineering, Heilongjiang University, Haerbin 150080,China; 2.Laboratory of High Density Optical Storage, Shanghai Institute of Optical and Fine Mechanics, Chinese Acedemic of Sciences, Shanghai 201800, China)
  • Received:2003-07-01 Revised:2004-02-01 Online:2004-10-14 Published:2004-10-14
  • Contact: Wu Yiqun
金属卟啉配合物在400-650 nm波段具有优良的光学性质,是一类新型高密度可录光盘存储介质材料.本文在总结近年来最新研究成果的基础上,阐述了金属卟啉配合物的结构特点、合成方法和作为高密度可录光盘存储介质的作用机理,讨论了影响卟啉配合物性质和光存储性能的主要因素,并对未来的发展趋势作了展望.
Metal porphyrin complexes possess good optical properties at 400—650 nm, and have been consider as novel high density recordable optical disk storage materials. Based on the summary of latest research results, the structure features, the synthesis methods and the mechanism as high density recordable optical recording media of metal porphyrin complexes are described. The main affecting factors of the complexes on optical storage properties are discussed and the future development are prospected.

中图分类号: 

()

[ 1 ] 干福熹(Gan F X) . 科学通报( Chinese Science Bulletin) ,1999 , 44 (20) : 2236 —2240
[ 2 ] 干福熹(Gan F X) . 物理(Physics) , 1999 , 28 (6) : 323 —332
[ 3 ] 干福熹(Gan F X) . 数字光盘存储技术(Digital Optical Disks and Optical Storage Technologies) . 北京(Beijing) : 科学出版社(Science Press) , 1998. 146 —172
[ 4 ] McKeown N B. Phthalocyanine Materials : Synthesis , Structure and Function. Cambridge University Press , 1998. 3 —7
[ 5 ] Rothemund P. J . Am. Chem. Soc. , 1939 , 61 :2912 —2915
[ 6 ] Adler A D , Longo F R , Finarelli J D , et al . J . Org. Chem. ,1967 , 32 :476
[ 7 ] Lindsey J S , Schreiman I C , Henry C H , et al . J . Org. Chem. ,1987 , 52 (5) :827 —836
[ 8 ] 郭灿城(Guo C C) , 何兴涛(He X T) , 邹纲要(Zou G Y) . 有机化学(J . Org. Chem. ) , 1993 , 11 (4) :416 —419
[ 9 ] Cheng D O , Le Goff E. Tetrahedron Lett . , 1977 , 17 : 1469 —1472
[10] Eisner U , Lichtarowicz A , Linstead R P. J . Chem. Soc. , 1957 ,733 —739
[11] Homma M, Aoyagi K, Aoyama Y, Ogoshi H. Tetrahedron Lett . ,1983 , 24 :4343 —4346
[12] Arsenault G P , Bullock E , McDonald S F. J . Am. Chem. Soc. ,1960 , 82 :4384 —4389
[13] Shanmugathasan S , Edwards C , Boyle R W. Tetrahedron , 2000 ,56 :1025 —1046
[14] Fischer H , Endermann F. Ann. Chem. , 1937 , 531 :245 —250
[15] France H. GB686 395 , 1954
[16] Khelevina O G, Chizhova N V , Stuzhin P A. Journal of Porphyrins and Phthalocyanines , 2000 , 4 :555 —563
[17] Cook A H , Linstead R P. J . Chem. Soc. , 1937 : 929 —933
[18] Elvidge J A. J . Chem. Soc. , Spec. Publ . , 1956 : 28 —46
[19] Linstead R P , Whalley M. J . Chem. Soc. , 1952 :4839 —4846
[20] Baguley M E , France H , Linstead R P , Whalley M. J . Chem.Soc. , 1955 ,3521 —3525
[21] Ficken G E , Linstead R P. J . Chem. Soc. , 1952 , 4846 —4854
[22] Kopranenkov V N , Goncharova L S , Lukpyanets E A. Zh.Obshch. Khim. , 1977 , 47 :2143 —2148
[23] Fitzgerald J P , Taylor W, Owen H. Synthesis , 1991 ,686 —688
[24] Fitzgerald J P , Haggerty B S , Rheingold A L , May L , Brewer G A. Inorg. Chem. , 1992 , 31 :2006 —2013
[25] Kondramenko N V , Movchun V N , Kopranenkov V N , Luk’yanets E A. Zh. Org. Khim. , 1992 , 28 (10) :2149 —2155
[26] Kopranenkov V N , Goncharova L S , Luk’yanets E A. Zh. Org.Khim. , 1979 , 15 (5) :1076 —1082
[27] Shevchenko V I , Kukhar V P. Zh. Obshch. Khim. , 1966 , 36 :735 —738
[28] Cass O W, Niagara F. US2 443 494 , 1948
[29] Cass O W, Pont D. GB601 510 , GB601 511 , 1948
[30] Davison A , Holm R H. Inorg. Synth. , 1967 , 6 :8 —26
[31] Schramm C J , Hoffman B M. Inorg. Chem. , 1980 , 19 :383 —385
[32] Simmons H E , Blomstrom D C , Vest R D. J . Am. Chem. Soc. ,1962 , 84 :4756 —4771
[33] Waritz R S. US3 122 472 , 1964 ; Yamada Y. JP57 056 453 ,1982 ; Yamada Y. JP59 130 265 , 1984 ; Kawada S. JP3 240 768 ,1991
[34] Sausen G N , Endelhardt V A , Middleton W J . J . Am. Chem.Soc. , 1958 , 80 :2815 —2822
[35] Troistskaya V I , Trushanina L I , Kopranenkov V N , Lukyanets E A , Yagupolskii L M. Zh. Org. Khim. , 1989 , 25 :571 —576
[36] Veiazquez C S , Fox G A , Broderick W E , Andersen K A ,Andersen O P , Barrett A G M, Hoffman B M. J . Am. Chem.Soc. , 1992 , 114 :7416 —7424
[37] Kopranenkov V N , Lukpyanets E A. Izv. Akad. Nauk. Ser.Khim. , 1995 , 12 :2320 —2336
[38] Sasa N , Sato T, Tomura T, Ueno Y, Azuma Y, Noguchi S , Neya S , Funazaki N. JP2001 080 217 , 2001
[39] Tomura T, Sato T, Sasa N , Ueno Y, Azuma Y. JP11 116 574 ,1999
[40] 徐海(Xu H) , 于道永(Yu D Y) , 王宗贤(Wang Z X) , 阙国和(Que G H) . 应用化学(J . Appl . Chem. ) , 2001 ,18 (6) :447 —449
[41] Nishimoto T, Misawa T, Sugimoto K, Tsukahara T, Tsuda T,Umehara H , Takuma H. JP11 011 015 , 1999
[42] Masaoka T, Terao H , Kumagai Y, Tsukahara T, Misawa T,Takuma H. JP10 330 632 , 1998
[43] Azuma Y, Sato T, Tomura T, Sasa N , Ueno Y. JP11 078 242 ,1999
[44] Azuma Y, Tomura T. JP2000 158 816 , 2000
[45] Tomura T, Azuma Y. JP2000 289 342 , 2000
[46] Azuma Y, Tomura T, Shimoda M. JP2000 309 165 , 2000
[47] Tomura T, Azuma Y, Shimoda M. JP11 216 953 , 1999
[48] Takano S , Miyamoto A , Hosaka T, Tozaki Y. JP11 058 965 ,1999
[49] Nagao T. JP11 221 964 , 1999
[50] Sasa N. JP2001 138 633 , JP2001 138 634 , 2001
[51] Nagao T, Fujita R. JP11 334 207 , 1999
[52] Miyamoto A , Takano S , Kato T, Hosaka T, Tozaki Y. JP11 034 490 , 1999
[53] Miyamoto A , Takano S , Hashimoto M, Hosaka T, Tozaki Y. JP11 144 312 , 1999

[1] 张建斌,张鹏燕,陈国华,韩芳,魏雄辉. 金属卟啉配合物与气体小分子的仿生作用研究[J]. 化学进展, 2009, 21(04): 771-776.