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Primeverin | CAS:154-60-9
Primeverin
  • 名称:樱草苷 | Primeverin
  • CAS号:154-60-9
  • 别名:
  • 分子式:C20H28O13
  • 分子量:476.43
  • EINESC号:

产品描述

物理化学性质

熔点 206 ºC**
密度 1.56±0.1 g/cm3 (20 ºC

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The rationale for the optimum efficiency of columns packed with new 1.9μm fully porous Titan-C18 particles-a detailed investigation of the intra-particle diffusivity.Fabrice Gritti et al.Journal of chromatography. A, 1355, 164-178 (2014-06-28) Molecular determinants of hERG channel block by terfenadine and cisapride.Kaichiro Kamiya et al.Journal of pharmacological sciences, 108(3), 301-307 (2008-11-07) The quantitative impact of the mesopore size on the mass transfer mechanism of the new 1.9μm fully porous Titan-C18 particles. I: analysis of small molecules.Fabrice Gritti et al.Journal of chromatography. A, 1384, 76-87 (2015-02-11) Achieving a Peak Capacity of 1800 Using an 8 m Long Pillar Array Column.Martyna Baca et al.Analytical chemistry, 91(17), 10932-10936 (2019-08-15) Sortase A-mediated crosslinked short-chain dehydrogenases/reductases as novel biocatalysts with improved thermostability and catalytic efficiency.Kunpeng Li et al.Scientific reports, 7(1), 3081-3081 (2017-06-10) On the performance of conically shaped columns: Theory and practice.Fabrice Gritti et al.Journal of chromatography. A, 1593, 34-46 (2019-02-02) Inhibitors of tick-borne flavivirus reproduction from structure-based virtual screening.Dmitry I Osolodkin et al.ACS medicinal chemistry letters, 4(9), 869-874 (2014-06-06) Photochemistry of valerophenone in solid solutionsKlan P, et al. Journal of Photochemistry and Photobiology A: Chemistry, 134(1-2), 37-44 (2000) Impact of instrument and column parameters on high-throughput liquid chromatography performance.Martin Gilar et al.Journal of chromatography. A, 1523, 215-223 (2017-07-25) Study of peak capacities generated by a porous layered radially elongated pillar array column coupled to a nano-LC system.Shunta Futagami et al.The Analyst, 144(5), 1809-1817 (2019-01-24) Lipophilicity of porphyrins and their retention in IAM, C8-C18 and HILIC chromatographic systems.D Essaid et al.Journal of pharmaceutical and biomedical analysis, 114, 227-240 (2015-06-24) Synthesis of selective SRPK-1 inhibitors: novel tricyclic quinoxaline derivatives.Zsolt Székelyhidi et al.Bioorganic & medicinal chemistry letters, 15(13), 3241-3246 (2005-06-01) Evaluation of three temperature- and mobile phase-dependent retention models for reversed-phase liquid chromatographic retention and apparent retention enthalpy.Anthony R Horner et al.Journal of chromatography. A, 1589, 73-82 (2019-01-11) Particle size distribution and column efficiency. An ongoing debate revived with 1.9μm Titan-C18 particles.Fabrice Gritti et al.Journal of chromatography. A, 1355, 179-192 (2014-07-09) Combining linear retention index and electron ionization mass spectrometry for a reliable identification in nano liquid chromatography.Francesca Rigano et al.Journal of chromatography. A, 1610, 460581-460581 (2019-10-16) Simulation of elution profiles in liquid chromatography - IV: Experimental characterization and modeling of solute injection profiles from a modulation valve used in two-dimensional liquid chromatography.Shelby L Weatherbee et al.Journal of chromatography. A, 1626, 461373-461373 (2020-08-17) Wide injection zone compression in gradient reversed-phase liquid chromatography.Martin Gilar et al.Journal of chromatography. A, 1390, 86-94 (2015-03-10) Efficiency of short, small-diameter columns for reversed-phase liquid chromatography under practical operating conditions.Yan Ma et al.Journal of chromatography. A, 1383, 47-57 (2015-02-05) Gradient method transfer after changing the average pore diameter of the chromatographic stationary phase I - One-dimensional sample mixture.Fabrice Gritti Journal of chromatography. A, 1597, 119-131 (2019-03-25) Repetitive injection method: a tool for investigation of injection zone formation and its compression in microfluidic liquid chromatography.Martin Gilar et al.Journal of chromatography. A, 1381, 110-117 (2015-01-22)
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