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本文用反相微乳液法制备了纳米Ag2S,并用作卤化银乳剂的硫增感剂,研究了其增感效果、增感规律及可能的增感机理.反相微乳液由异辛烷、表面活性剂AOT钠盐和水形成;制得的Ag2S粒径3--5nm;用制得颗粒增感卤化银乳剂,获得的感光性能优越于用Na2S2O3水溶液增感;增感规律的研究表明,随着乳剂中纳米Ag2S浓度的增加,模型乳剂感光度迅速提高、灰雾变化不大,并在100--200ìmol/ìmol/molAg左右获得最佳感光性能,进一步增加浓度则感光度呈下降趋势、灰雾升高;获得最佳感光性能所需的化学增感时间很短,约40分钟,之后感光度不再增加、灰雾上升;用漫反射光谱(DRS)作探针,跟踪记录增感时卤化银微晶表面上纳米Ag2S增感剂颗粒的演变,为新型纳米增感剂的优异增感特性提供了机理性解释.

参考文献

[1] 张志颖 .利用反胶束技术研究纳米卤化银超细粒子的制备和性能[D].中国科学院理化技术研究所,2000.
[2] ErikM .Formafion mture and action of sensitivity centers and latent image specks,part 1:chemical sensitization[J].Photographic Science and Engineering,1981,25(02):45-56.
[3] 彭必先;崔卫东 .增感中心的形成、本质与功能研究进展[J].中国科学院研究生院学报,1997,14(01):133-149.
[4] Tadaaki T .Comprehensive model for sulfur sensitization(2):characterization of sulfur sensitization centers and fog center[J].Journal of Imaging Science and Technology,1998,42(02):135-143.
[5] Farnell G C;Flint R B;Birch D C .Direct observations on the distribution of silver sulphide on sensitized emulsion grains[J].Journal of Photographic Science,1977,25(02):203-207.
[6] 李金培,唐旻骜,王素娥.纳米尺寸ZnS化学增感剂[J].感光科学与光化学,2001(04):241-243.
[7] LI Zhi,ZHENG Tong,CHEN Lijuan,PENG Bixian,YANG Li.Synthesis of Ag2S nano-sized clusters and their chemical sensitizations in AgCl cubic and {100} tabular microcrystal imaging systems[J].中国科学B辑(英文版),2005(06):516-522.
[8] Motte L;Billoudet F;Pileni M P .Self-assembled monolayer of nanosized particles differing by their size[J].Journal of Physical Chemistry,1995,99(44):16425-16429.
[9] Motte L;Billoudet F;Lacaze E;Douin J Pileni M P .Self-organizationinto 2D and 3D super-lattices of nanosized particles differing by their size[J].Journal of Physical Chemistry B,1997,101(02):138-144.
[10] Motte L;Billoudet F;Lacaze E;Douin J Naudom A Pileni M P .Characterization of ordered 3D arrays of Ag2Snanocrystallites[J].Journal of Physical Chemistry,1997,101(05):517-527.
[11] 李智,郑彤,彭必先,陈丽娟.单分散微/纳米卤化银乳剂的光吸收特性研究--立方体乳剂和氯化银{100}面扁平颗粒乳剂[J].化学学报,2006(09):833-838,1.
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