Preparation of cadmium sulfide ultrafine particles surface-modified with thiols in reverse micellar systems and redispersion in non-micellar solvents

被引:34
作者
Shiojiri, S [1 ]
Hirai, T [1 ]
Komasawa, I [1 ]
机构
[1] OSAKA UNIV,DEPT CHEM ENGN,TOYONAKA,OSAKA 560,JAPAN
关键词
reverse micelle; ultrafine particle; cadmium sulfide; surface modification; thiophenol;
D O I
10.1252/jcej.30.86
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Surface modification with thiols and redispersion into non-micellar solvents of CdS ultrafine particles prepared in situ in reverse micellar systems have been investigated. An excellent redispersion in pyridine is observed when the CdS ultrafine particles are prepared with 0.4 < y (= [S2-]/[Cd2+]) < 0.9 owing to the binding of the added thiophenol molecules to the excess Cd2+ ions adsorbed to the surface of the CdS particles. The particle redispersion ratio, R, is defined as the ratio of absorbance of ultrafine particles redispersed in nonmicellar media to that of particles in the same amount of the original reverse micellar solution. As the time after CdS formation until the addition of thiophenol to the micellar solution (t(SH)) increases, the redispersion ratio R into either pyridine or CH2Cl2 decreases. The emission at lambda(em)=570 nm of the formed CdS particles in reverse micellar solutions before adding thiophenol, which has been attributed to surface sulfur vacancies of CdS, also decreases rapidly after the particle formation. This observation suggests that the surface sulfur vacancies of CdS play an important role in the surface modification by thiols, In the redispersion process of CdS ultrafine particles, the added thiophenol molecules are considered to have two functions: destabilizing the reverse micelles and binding to the surface of the particles ejected from the micelles owing to destabilization. Solvent molecules with both ligand parts and hydrophobic groups are favorable for redispersing the particles covered with thiophenol.
引用
收藏
页码:86 / 93
页数:8
相关论文
共 21 条
[1]   PROBING CDS NANOCRYSTAL SURFACES WITH LASER-POLARIZED XENON [J].
BOWERS, CR ;
PIETRASS, T ;
BARASH, E ;
PINES, A ;
GRUBBS, RK ;
ALIVISATOS, AP .
JOURNAL OF PHYSICAL CHEMISTRY, 1994, 98 (38) :9400-9404
[3]  
*CHEM SOC JAP, 1993, KAG BINR KIS, pI602
[4]   SOLID-SOLUTION OF CDYZN1-YS NANOSIZE PARTICLES MADE IN REVERSE MICELLES [J].
CIZERON, J ;
PILENI, MP .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (48) :17410-17416
[5]   SEMICONDUCTOR NANOCRYSTALS COVALENTLY BOUND TO METAL-SURFACES WITH SELF-ASSEMBLED MONOLAYERS [J].
COLVIN, VL ;
GOLDSTEIN, AN ;
ALIVISATOS, AP .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (13) :5221-5230
[6]   SYNTHESIS AND CHARACTERIZATION OF SURFACE-CAPPED, SIZE-QUANTIZED CDS CLUSTERS - CHEMICAL CONTROL OF CLUSTER SIZE [J].
HERRON, N ;
WANG, Y ;
ECKERT, H .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (04) :1322-1326
[7]   MECHANISM OF FORMATION OF LEAD SULFIDE ULTRAFINE PARTICLES IN REVERSE MICELLAR SYSTEMS [J].
HIRAI, T ;
TSUBAKI, Y ;
SATO, H ;
KOMASAWA, I .
JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 1995, 28 (04) :468-473
[8]   PREPARATION OF METAL SULFIDE COMPOSITE ULTRAFINE PARTICLES IN REVERSE MICELLAR SYSTEMS AND THEIR PHOTOCATALYTIC PROPERTY [J].
HIRAI, T ;
SHIOJIRI, S ;
KOMASAWA, I .
JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 1994, 27 (05) :590-597
[9]   DEMONSTRATION OF A SHELL CORE STRUCTURE IN LAYERED CDSE-ZNSE SMALL PARTICLES BY X-RAY PHOTOELECTRON AND AUGER SPECTROSCOPIES [J].
HOENER, CF ;
ALLAN, KA ;
BARD, AJ ;
CAMPION, A ;
FOX, MA ;
MALLOUK, TE ;
WEBBER, SE ;
WHITE, JM .
JOURNAL OF PHYSICAL CHEMISTRY, 1992, 96 (09) :3812-3817
[10]   In-situ EXAFS observation of the surface structure of colloidal CdS nanocrystallites in N,N-dimethylformamide [J].
Hosokawa, H ;
Fujiwara, H ;
Murakoshi, K ;
Wada, Y ;
Yanagida, S ;
Satoh, M .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (16) :6649-6656