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1.
2.
A. P. Prishivalko 《Journal of Applied Spectroscopy》1997,64(1):94-100
A method for finding the optimum sizes of pigment particles, their volume concentration, and the paint coating thickness that
provide the covering power and the required coloristic characteristics of reflected light for the minimum flow rate of pigments
is based on using a four-flow approximation of the solution to the equation of radiation transfer in dispersion media and
is extended to coatings of complex composition. The capabilities of the method are demonstrated by examples of coatings of
mixtures of hematite and rutile particles in a binder with n=1.5 for variations of the modal size and the half-width of the
size distribution of the pigment particles.
B. I. Stepanov Institute of Physics, Academy of Sciences of Belarus, 70, F. Skorina Ave., Minsk, 220072, Belarus. Translated
from Zhurnal Prikladnoi Spektroskopii, Vol. 64, No. 1, pp. 90–96, January–February, 1997. 相似文献
3.
K. Jaques W. Buda L. Dumortier J. Van der Eycken Arnold Venema Pat Sandra 《Journal of separation science》1994,17(2):72-73
Capillary GC on permethyl α-, β-, and γ-cyclodextrins has been applied to separate and quantify the enantiomers of some 2,3-iso-propylidene-1,2,3-cyclohexanetriol derivatives. Quantitative CGC data are compared to those obtained with chiral shift 1H NMR. 相似文献
4.
荧光光度法直接测定高纯氧化钕中的痕量镨和铈 总被引:2,自引:0,他引:2
李义久 《理化检验(化学分册)》1998,34(5):198-199,201
使用P-ELS50荧光光谱仪,在盐酸介质中,用同一激发波长激发,分别测定Pr(Ⅲ)(nm)和Ce(Ⅲ)(356nm)发射峰强度。 相似文献
5.
用铜(Ⅱ)—L—精氨酸配体交换薄层色谱拆分氨基酸对映体 总被引:2,自引:0,他引:2
报道了一种新的配体交换薄层色谱拆分氨基酸对映体的方法。以醋酸铜-L-精氨酸的络合物为配体交换剂,用浸渍的方法吸附在硅胶薄层板上,制成配体交换薄层,用PRISMA优化法选择出展开剂的最佳组成为:甲醇/乙腈/四氢呋喃/水=80:8.2:5.8:6,在此色谱条件下,十对氨基酸对映体得到良好的分离,D-和L-氨基酸的相对比移值在1.09-2.40之间。文中对配体交换薄层的制备方法,样品的分子结构及色谱行为 相似文献
6.
7.
化学光谱法测定5N氧化钆中14个稀土杂质元素 总被引:2,自引:0,他引:2
报道了化学光谱法测定5N高纯氧化钆中14个稀土杂质元素,在P507萃淋树脂色层柱上分离氧化钆中稀土杂质元素,分别采用定量分离La-Sm及Tb-Lu+Y和部份分离Eu的方法,并相应地采用碳粉吸附法和碳粉粉末法进行光谱测定。分离时间为3.5h,测定下限为1.2μg/g(RE)。 相似文献
8.
A chiral liquid chromatographic method for determination of the enantiomeric purity of both l-carnitine and acetyl-l-carnitine is described. Separation of the enantiomers of dl-carnitine and acetyl-dl-carnitine was achieved on a commercial chiral column (Chiralcel OD-R) after derivatization with (alpha-bromo)methyl phenyl ketone. Introduction of this lipophilic UV chromophoric group to the carnitine and acetylcarnitine molecules improved their retention, resolution, and UV detection. The mobile phase was 74:26 (v/v) 0.5 mol L-1 sodium perchlorate–acetonitrile, pH 3.8, and the flow rate was 0.4 mL min-1. Detection was performed at 235 nm. The method is selective and reliable for determination of the enantiomeric purity of bulk drug substances l-carnitine and acetyl-l-carnitine. 相似文献
9.
Michael Eyer Karl Schlögl Michael Widhalm 《Monatshefte für Chemie / Chemical Monthly》1984,115(12):1429-1442
Chiral title compounds have been resolved by medium pressure liquid chromatography (MPLC) on triacetylcellulose in ethanol. Whereas a quantitative separation was achieved for16 and20, a recycling technique had to be applied to1,4,6,10 and15 leading to a 100% e.e. for1,6 and15 and to ca. 60% e.e. for4 and10.An unambiguous assignment of the chirality (+)-(R)
a
-(S)
m
for tricarbonylchromium-6,6-dimethyl-diphenicacid dimethylester (4) was deduced both from the photochemical decomplexation to (-)-5 with the known chirality (R)
a
(whose e.e. was determined by MPLC on triacetylcellulose) and by comparison of the1H-n.m.r. spectra of4 and5 thereby proving the structure 4 for the former.Other chiralities both for mono and bis(tricarbonylchromium)biphenyl complexes were established by chemical correlations and comparison of the CD spectra with those of key compounds.
Herrn Prof. Dr.H. Tuppy mit besten Wünschen zum 60. Geburtstag gewidmet. 相似文献
10.
Q. Zhong L. He T. E. Beesley W. S. Trahanovsky P. Sun C. Wang D. W. Armstrong 《Chromatographia》2006,64(3-4):147-155
The comparisons of five different chiral stationary phases (CSPs) based on 2,6-dinitro-4-trifluoromethylphenyl (DNP-TFM) ether substituted β-cyclodextrin are presented. The five CSPs differ from each other in the linkage/spacer chemistry, or on the position of the substituents on β-cyclodextrin, or in the sequence of the synthetic procedure. The results show that there are two optimum combinations: (1) DNP-TFM randomly substituted on the β-cyclodextrin as the chiral selector along with a carbamate linkage chain bonding it to the silica support; and (2) β-cyclodextrin derivatized by DNP-TFM substituents only on the C-2 and C-3 positions of the cyclodextrin with an ether linkage chain anchoring it to the silica gel. These two combinations show complementary separations for some enantiomers. The spacer chain effect is much more pronounced for the CSP based on the β-cyclodextrin derivatives with DNP-TFM substituents only on C-2 and C-3 positions than its randomly substituted counterpart. The sequence of derivatizing the cyclodextrin and attaching it to silica gel also affects its selectivity and efficiency. The β-cyclodextrin should be derivatized before it is linked to the silica gel. 相似文献