BULK AND SURFACE STOICHIOMETRY OF VAPOR-GROWN MERCURIC IODIDE-CRYSTALS

被引:17
作者
SCHIEBER, M
ROTH, M
YAO, H
DEVRIES, M
JAMES, RB
GOORSKY, M
机构
[1] UNIV NEBRASKA,CTR MICROELECTR & OPT MAT RES,LINCOLN,NE 68588
[2] UNIV NEBRASKA,DEPT ELECT ENGN,LINCOLN,NE 68588
[3] SANDIA NATL LABS,DEPT 8347,LIVERMORE,CA 94550
[4] UNIV CALIF LOS ANGELES,DEPT MAT SCI & ENGN,LOS ANGELES,CA 90024
关键词
D O I
10.1016/0022-0248(94)00572-9
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
The stoichiometry of HgI2 is reviewed as a function of the various stages of preparation including synthesis, purification, crystal growth and ending with device fabrication. Original data are presented on surface roughness of free surfaces of HgI2 determined by variable angle spectroscopic ellipsometry (VASE) and atomic force microscopy (AFM) and their relation to stoichiometry. The spread of the ''c'' lattice constant variation in bad HgI2 nuclear detectors was determined by triaxial X-ray diffraction (TAXRD), and the results are discussed in relation with deviation from stoichiometry. It is suggested that crystals purified by open tube sublimation are stoichiometric. However, high temperature purification treatments, such as melting and even growth, may induce a certain dissociation of HgI2 into HgI2 and free iodine. The latter diffuses, through a complex process, out of the crystal leaving a very rough outer surface and inhomogeneous stoichiometry in the bulk, which may be detrimental to device performance as a nuclear radiation detector.
引用
收藏
页码:15 / 22
页数:8
相关论文
共 24 条
[11]   STOICHIOMETRY AND ELECTRICAL CHARGE TRANSPORT IN HGI2 CRYSTALS [J].
HERMON, H ;
ROTH, M ;
NISSENBAUM, J ;
SCHIEBER, M ;
SHAMIR, J .
JOURNAL OF CRYSTAL GROWTH, 1991, 109 (1-4) :376-384
[12]   ON THE PHASE-DIAGRAM OF MERCURIC IODIDE NEAR THE STOICHIOMETRIC COMPOSITION [J].
HERMON, H ;
ROTH, M ;
SCHIEBER, M ;
SHAMIR, J .
MATERIALS RESEARCH BULLETIN, 1993, 28 (03) :229-234
[13]  
JAMES RB, 1990, J APPL PHYS, V67, P251
[14]   LOW-TEMPERATURE PHOTO-LUMINESCENCE OF DETECTOR-GRADE HGI2 [J].
MERZ, JL ;
WU, ZL ;
VANDENBERG, L ;
SCHNEPPLE, WF .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH, 1983, 213 (01) :51-64
[15]   OPTICAL METHODS FOR MEASURING IODINE VAPOR DURING MERCURIC IODIDE CRYSTAL-GROWTH BY PHYSICAL VAPOR TRANSPORT [J].
NASON, D ;
BIAO, Y ;
BURGER, A .
JOURNAL OF CRYSTAL GROWTH, 1995, 146 (1-4) :23-28
[16]   DEVIATION FROM STOICHIOMETRY IN ALPHA-HGI2 [J].
NICOLAU, IF ;
ROLLAND, G .
MATERIALS RESEARCH BULLETIN, 1981, 16 (06) :759-770
[17]   MASS-SPECTROMETRIC INVESTIGATION OF THE VAPOR OF NONSTOICHIOMETRIC AND DOPED MERCURIC IODIDE [J].
PIECHOTKA, M ;
KALDIS, E .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1986, 133 (01) :200-204
[18]   EVAPORATION STUDIES AND PHASE-STABILITY OF MERCURIC IODIDE [J].
PIECHOTKA, M ;
KALDIS, E .
JOURNAL OF CRYSTAL GROWTH, 1986, 79 (1-3) :469-476
[19]   VAPOR GROWTH OF HGI-2 BY PERIODIC SOURCE OR CRYSTAL TEMPERATURE OSCILLATION [J].
SCHIEBER, M ;
SCHNEPPLE, WF ;
VANDENBERG, L .
JOURNAL OF CRYSTAL GROWTH, 1976, 33 (01) :125-135
[20]   CRYSTAL-GROWTH AND APPLICATIONS OF MERCURIC IODIDE [J].
SCHIEBER, M ;
ROTH, M ;
SCHNEPPLE, WF .
JOURNAL OF CRYSTAL GROWTH, 1983, 65 (1-3) :353-364