油溶性CuInS2/ZnS量子点的制备及其温敏性聚丙烯酰胺胶束介导的水相转移

瞿灵芝 程志强 邓大伟 曹洁 金靖 顾月清

引用本文: 瞿灵芝, 程志强, 邓大伟, 曹洁, 金靖, 顾月清. 油溶性CuInS2/ZnS量子点的制备及其温敏性聚丙烯酰胺胶束介导的水相转移[J]. 无机化学学报, 2013, 29(7): 1361-1368. doi: 10.3969/j.issn.1001-4861.2013.00.204 shu
Citation:  QU Ling-Zhi, CHENG Zhi-Qiang, DENG Da-Wei, CAO Jie, JIN Jing, GU Yue-Qing. Oil-Soluble CuInS2/ZnS Quantum Dots and Water Transfer Using Temperature-Sensitive Poly(N-isopropylacrylamide-co-Acrylamide-co-Octadecyl acrylate) Micelle[J]. Chinese Journal of Inorganic Chemistry, 2013, 29(7): 1361-1368. doi: 10.3969/j.issn.1001-4861.2013.00.204 shu

油溶性CuInS2/ZnS量子点的制备及其温敏性聚丙烯酰胺胶束介导的水相转移

  • 基金项目:

    国家自然科学基金(No.30800257 and No.81071194) (No.30800257 and No.81071194)

    江苏省自然科学基金(No.BK2011634) (No.BK2011634)

    中央高校基本科研业务费专项资金(No.JKP2011017) (No.JKP2011017)

    教育部新世纪优秀人才支持计划(No.NCET-12-0974)资助项目。 (No.NCET-12-0974)

摘要: 采用非热注法成功制备了高质量的油溶性CuInS2/ZnS核壳量子点,量子点的荧光发射峰在可见光到近红外范围内可调(550~800 nm),且荧光量子产率最高达80%。本文进一步利用具有温敏特性的聚丙烯酰胺胶束作相转移剂,成功地将油溶性的CuInS2/ZnS核壳量子点转移入水相。水相中自组装形成的CuInS2/ZnS量子点-胶束复合物不仅具有良好的荧光性质,而且胶束原有的灵敏的热响应性被保留。这些研究初步表明,无镉的低毒的CuInS2/ZnS量子点可作为纳米胶束的荧光示踪探针。

English

  • 
    1. [1] Lewinski N, Colvin V, Drezek R. Small, 2008,4(1):26-49[1] Lewinski N, Colvin V, Drezek R. Small, 2008,4(1):26-49

    2. [2] Deng D W, Xia J F, Gu Y Q, et al. J. Colloid Interface Sci., 2012,367:234-240[2] Deng D W, Xia J F, Gu Y Q, et al. J. Colloid Interface Sci., 2012,367:234-240

    3. [3] CHENG Fang(程芳), LIU Zheng(刘贞), HU Yu-Zhu(胡育 筑), et al. Chem. J. Chinese Universities(Gaodeng Xuexiao Huaxue Xuebao), 2012,33(3):475-480[3] CHENG Fang(程芳), LIU Zheng(刘贞), HU Yu-Zhu(胡育 筑), et al. Chem. J. Chinese Universities(Gaodeng Xuexiao Huaxue Xuebao), 2012,33(3):475-480

    4. [4] CAO Mei-Rong(曹美荣), HOU Jie(侯洁), ZHANG Qi(张奇), et al. Chem. J. Chinese Universities(Gaodeng Xuexiao Huaxue Xuebao), 2012,33(3):437-441[4] CAO Mei-Rong(曹美荣), HOU Jie(侯洁), ZHANG Qi(张奇), et al. Chem. J. Chinese Universities(Gaodeng Xuexiao Huaxue Xuebao), 2012,33(3):437-441

    5. [5] WU Jie(吴杰), CHI Yan-Hua(迟燕华), ZHUANG Jia(庄稼). Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2010,26(7): 1199-1206[5] WU Jie(吴杰), CHI Yan-Hua(迟燕华), ZHUANG Jia(庄稼). Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2010,26(7): 1199-1206

    6. [6] Xie R G, Rutherford M, Peng X G. J. Am. Chem. Soc., 2009, 131:5691-5697[6] Xie R G, Rutherford M, Peng X G. J. Am. Chem. Soc., 2009, 131:5691-5697

    7. [7] Alle P M, Liu W, Bawendi M G, et al. J. Am. Chem. Soc., 2010,132:470-471[7] Alle P M, Liu W, Bawendi M G, et al. J. Am. Chem. Soc., 2010,132:470-471

    8. [8] Park J, Dvoracek C, Lee K H, et al. Small, 2011,7(22):3148-3152[8] Park J, Dvoracek C, Lee K H, et al. Small, 2011,7(22):3148-3152

    9. [9] Deng D W, Chen Y Q, Gu Y Q, et al. Chem. Mater., 2012, 24:3029-3037[9] Deng D W, Chen Y Q, Gu Y Q, et al. Chem. Mater., 2012, 24:3029-3037

    10. [10] Zhang J, Xie R G, Yang W S, et al. Chem. Mater., 2011,23: 3357-3361[10] Zhang J, Xie R G, Yang W S, et al. Chem. Mater., 2011,23: 3357-3361

    11. [11] Li L, Daou T J, Reiss P, et al. Chem. Mater., 2009,21:2422-2429[11] Li L, Daou T J, Reiss P, et al. Chem. Mater., 2009,21:2422-2429

    12. [12] Pons T, Pic E,Cassette E, et al. ACS Nano, 2010,4(5):2531-2538[12] Pons T, Pic E,Cassette E, et al. ACS Nano, 2010,4(5):2531-2538

    13. [13] Zhang W J, Zhong X H. Inorg. Chem., 2011,50:4065-4072[13] Zhang W J, Zhong X H. Inorg. Chem., 2011,50:4065-4072

    14. [14] Xue B, Deng D W, Gu Y Q, et al. Dalton Trans., 2012,41: 4935-4947[14] Xue B, Deng D W, Gu Y Q, et al. Dalton Trans., 2012,41: 4935-4947

    15. [15] Cao J, Deng D W, Gu Y Q, et al. J. Biomed. Mater. Res. Part A, 2012:958-968[15] Cao J, Deng D W, Gu Y Q, et al. J. Biomed. Mater. Res. Part A, 2012:958-968

    16. [16] Kakizawa Y, Kataoka K. Adv. Drug Deliv. Rev., 2002,54(2): 203-222[16] Kakizawa Y, Kataoka K. Adv. Drug Deliv. Rev., 2002,54(2): 203-222

    17. [17] Torchilin V P. J. Control Release, 2001,73(2-3):137-172[17] Torchilin V P. J. Control Release, 2001,73(2-3):137-172

    18. [18] Nishiyama N, Kataoka K. Pharmacol. Ther., 2006,3(112): 630-648[18] Nishiyama N, Kataoka K. Pharmacol. Ther., 2006,3(112): 630-648

    19. [19] Cheng C, Wei H, Shi B X, et al. Biomaterials, 2008,4(29): 497-505[19] Cheng C, Wei H, Shi B X, et al. Biomaterials, 2008,4(29): 497-505

    20. [20] Neradovic D, Van Nostrum C F, Hennink W E. Macromole-cules, 2001,22(34):7589-7591[20] Neradovic D, Van Nostrum C F, Hennink W E. Macromole-cules, 2001,22(34):7589-7591

    21. [21] Wei H, Cheng S, Zhang X, et al. Prog. Polym. Sci., 2009,34 (9):893-910[21] Wei H, Cheng S, Zhang X, et al. Prog. Polym. Sci., 2009,34 (9):893-910

    22. [22] DENG Da-Wei(邓大伟), YU Jun-Sheng(于俊生). Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2008,24(5):701-707[22] DENG Da-Wei(邓大伟), YU Jun-Sheng(于俊生). Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2008,24(5):701-707

    23. [23] QI Cui-Cha(齐翠茶), HE Zi-Jian(何子剑), XIE Hai-Yan(谢 海燕). Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2010,26(6):951-956[23] QI Cui-Cha(齐翠茶), HE Zi-Jian(何子剑), XIE Hai-Yan(谢 海燕). Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2010,26(6):951-956

    24. [24] Stuart M A C, Huck W T S, Genzer J, et al. Nature Mater., 2010,9:101-113[24] Stuart M A C, Huck W T S, Genzer J, et al. Nature Mater., 2010,9:101-113

    25. [25] Liu X M, Wang L S, He C B, et al. Biomaterials, 2004,25 (25):5659-5666[25] Liu X M, Wang L S, He C B, et al. Biomaterials, 2004,25 (25):5659-5666

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  • 收稿日期:  2012-11-06
  • 网络出版日期:  2013-03-21
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