POWDER DIFFRACTION IN THE RANGE OF MILLISECONDS

被引:15
作者
PENNARTZ, PU
LOCHNER, U
FUESS, H
WROBLEWSKI, T
机构
[1] TH DARMSTADT,FACHBEREICH MAT WISSENSCH,W-6100 DARMSTADT,GERMANY
[2] DESY,HAMBURGER SYNCHROTRONSTRAHLUNGSLAB,W-2000 HAMBURG 52,GERMANY
关键词
D O I
10.1107/S0021889892004102
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Powder diffraction studies with synchrotron radiation were performed on a time scale down to 2.5 ms at the HASYLAB beamline B2 with a commercial 1024 pixel linear photodiode-array detector system (OMA III, EG&G-PARC). The flux rate of 2 x 10(8) photons s-1 at a wavelength of 1.26 angstrom achieved by using a toroidal mirror and a standard double-crystal Si(111) monochromator was measured with an ionization chamber at the focus. With a synthetic multilayer to select the desired wavelength instead of the standard monochromator, a flux rate of 1.5 x 10(10) photons s-1 was measured at a wavelength of 1.31 angstrom. The shortest possible recording times for a complete powder pattern of calcium fluoride were 200 ms with the crystal monochromator and 2.5 ms with the multilayer. The angular resolution for both cases is discussed. The high-speed data collection was successfully applied with the double-crystal and multilayer monochromators to the recording of more-complex patterns and to monitor a phase transformation in order to demonstrate the feasibility of kinetic studies on the millisecond time scale.
引用
收藏
页码:571 / 577
页数:7
相关论文
共 19 条
[1]  
Arnold H., 1986, Materials Science Forum, V9, P47, DOI 10.4028/www.scientific.net/MSF.9.47
[2]   NEW POWDER DIFFRACTOMETER AT HASYLAB/DESY [J].
ARNOLD, H ;
BARTL, H ;
FUESS, H ;
IHRINGER, J ;
KOSTEN, K ;
LOCHNER, U ;
PENNARTZ, PU ;
PRANDL, W ;
WROBLEWSKI, T .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1989, 60 (07) :2380-2381
[3]  
Blanchard F. N., 1989, POWDER DIFFR, V4, P220
[4]  
CHRISTENSEN AN, 1985, AUST J PHYS, V38, P497
[5]   APPLICATION OF SYNCHROTRON RADIATION TO HIGH-RESOLUTION POWDER DIFFRACTION AND RIETVELD REFINEMENT [J].
COX, DE ;
HASTINGS, JB ;
THOMLINSON, W ;
PREWITT, CT .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH, 1983, 208 (1-3) :573-578
[6]  
EYSEL W, 1973, AM MINERAL, V58, P736
[7]   GRAZING-INCIDENCE OPTICS FOR SYNCHROTRON RADIATION X-RAY BEAMLINES [J].
HEALD, SM ;
HASTINGS, JB .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH, 1981, 187 (2-3) :553-561
[8]   A GRAPHITE DOUBLE-CRYSTAL MONOCHROMATOR FOR X-RAY SYNCHROTRON RADIATION [J].
HOHLWEIN, D ;
SIDDONS, DP ;
HASTINGS, JB .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1988, 21 (06) :911-915
[9]   HIGH-RESOLUTION SYNCHROTRON X-RAY-POWDER DIFFRACTION WITH A LINEAR POSITION-SENSITIVE DETECTOR [J].
LEHMANN, MS ;
CHRISTENSEN, AN ;
NIELSEN, M ;
FEIDENHANSL, R ;
COX, DE .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1988, 21 :905-910
[10]  
NIEMANN W, 1989, HASYLAB JAHRESBERICH, P573