Search results for "BrO"

showing 10 items of 7753 documents

CCDC 113545: Experimental Crystal Structure Determination

2000

Related Article: U.Stalmach, D.Schollmeyer, H.Meier|1999|Chem.Mater.|11|2103|doi:10.1021/cm990033h

(4-Bromo-4'-methyl-25:2'5'-tetrapropoxy)stilbeneSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1873718: Experimental Crystal Structure Determination

2019

Related Article: Peipei Cen, Xiangyu Liu, Jesús Ferrando-Soria, Yi-Quan Zhang, Gang Xie, Sanping Chen, Emilio Pardo|2018|Chem.-Eur.J.|25|3884|doi:10.1002/chem.201805608

(5-bromo-22'-bipyridine)-tris(2266-tetramethylheptane-35-dionato)-dysprosiumSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Józef Wacław Dąbrowski (1797–1862). Wołynianin w armii Królestwa Polskiego

2021

W artykule, w oparciu o nieznane i tym samym niewykorzystywane dotąd przez historyków wspomnienia, przedstawione zostały dzieciństwo i młodość Józefa Wacława Dąbrowskiego, oficera wojska Królestwa Polskiego, dowódcę w randze kapitana i majora oddziałów powstańczych jesienią 1830 – latem 1831 r. Koleje jego losów i kariera wojskowa są tak typowe, jak i odbiegające od znanych i omawianych w literaturze przedmiotu schematów. Typowe, gdyż dzięki wywodzeniu się z kręgów średnio zamożnego ziemiaństwa rozpoczął służbę wojskową od stopnia kadeta, aby przed upływem roku awansować na podchorążego i uzyskać skierowanie do szkoły podchorążych, stanowiącej niezbędny etap służby potrzebny do awansu ofice…

(Congress) Kingdom of Polandpowstanie listopadoweWołyńDąbrowski familyKrólestwo Polskie (kongresowe)Volhyniaarmy of the Kingdom of PolandPolish landed gentry of the 19th centurypolskie ziemiaństwo początku XIX w.Generals of the Kingdom of Polandwojsko Królestwa PolskiegoNovember Uprisingrodzina Dąbrowskichgeneralicja Królestwa PolskiegoEcha Przeszłości
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CCDC 2124204: Experimental Crystal Structure Determination

2022

Related Article: Wenhua Lin, Ming Liu, Lei Xu, Yanping Ma, Liping Zhang, Zygmunt Flisak, Xinquan Hu, Tongling Liang, Wen‐Hua Sun|2022|Appl.Organomet.Chem.|36|e6596|doi:10.1002/aoc.6596

(N2-dimesityl-67-dihydroquinolin-8(5H)-imine)-dibromo-nickel(ii) unknown solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 250963: Experimental Crystal Structure Determination

2005

Related Article: J.F.Schneider, M.Nieger, K.Nattinen, B.Lewall, E.Niecke, K.H.Dotz|2005|Eur.J.Org.Chem.|2005|1541|doi:10.1002/ejoc.200400800

(RS)-1013-Dibromo-44-di-t-butyl-dinaphtho(21-d:1'2'-f)(132)-dioxasilepinSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 153040: Experimental Crystal Structure Determination

2002

Related Article: E.Kolehmainen, B.Osmialowski, M.Nissinen, R.Kauppinen, R.Gawinecki|2000|J.Chem.Soc.,Perkin Trans.2||2185|doi:10.1039/b006879i

(Z)-2-(2-Hydroxy-2-(4-bromophenyl)vinyl)pyridineSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 751046: Experimental Crystal Structure Determination

2010

Related Article: J.Vicente, I.Saura-Llamas, J.Turpin, D.Bautista, C.R.de Arellano, P.G.Jones|2009|Organometallics|28|4175|doi:10.1021/om9002895

(eta^2^-4-(2-(Aminomethyl)-5-chlorophenyl)-1234-tetraphenylbuta-13-dien-1-yl)-(bromo)-palladium dimethylsulfoxide solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 883708: Experimental Crystal Structure Determination

2013

Related Article: Julia R. Shakirova, Elena V. Grachova, Alexei S. Melnikov, Vladislav V. Gurzhiy, Sergey P. Tunik, Matti Haukka, Tapani A. Pakkanen, and Igor O. Koshevoy|2013|Organometallics|32|4061|doi:10.1021/om301100v

(mu~3~-tris(Diphenylphosphino)methane)-bis(mu~2~-eta^2^-3-hydroxy-33-diphenylprop-1-yn-1-yl)-bromo-(3-hydroxy-33-diphenylprop-1-yn-1-yl)-copper-tri-gold acetone solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Band gap of corundumlike α−Ga2O3 determined by absorption and ellipsometry

2017

The electronic structure near the band gap of the corundumlike $\ensuremath{\alpha}$ phase of ${\mathrm{Ga}}_{2}{\mathrm{O}}_{3}$ has been investigated by means of optical absorption and spectroscopic ellipsometry measurements in the ultraviolet (UV) range (400--190 nm). The absorption coefficient in the UV region and the imaginary part of the dielectric function exhibit two prominent absorption thresholds with wide but well-defined structures at 5.6 and 6.3 eV which have been ascribed to allowed direct transitions from crystal-field split valence bands to the conduction band. Excitonic effects with large Gaussian broadening are taken into account through the Elliott-Toyozawa model, which y…

010302 applied physicsMaterials scienceValence (chemistry)Physics and Astronomy (miscellaneous)Band gap02 engineering and technologyElectronic structure021001 nanoscience & nanotechnologymedicine.disease_cause01 natural sciencesMolecular physicsGaussian broadeningEllipsometryAttenuation coefficient0103 physical sciencesmedicineGeneral Materials ScienceThin film0210 nano-technologyUltravioletPhysical Review Materials
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Guiding and splitting Lamb waves in coupled-resonator elastic waveguides

2018

Abstract We investigate experimentally Lamb wave propagation in coupled-resonator elastic waveguides (CREWs) formed by a chain of cavities in a two-dimensional phononic crystal slab with cross holes. Wide complete bandgaps, extending from 53 to 88 kHz, are first measured in a finite phononic crystal slab sample. A straight waveguide and a wave splitting circuit with 90° bends are then designed, fabricated and measured. Elastic Lamb waves are excited by a piezoelectric patch attached to one side of the phononic slab and detected using a scanning vibrometer. Strongly confined guiding and splitting at waveguide junctions are clearly observed for several guided waves. Numerical simulations are …

010302 applied physicsMaterials sciencebusiness.industryPhysics::Optics02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesPiezoelectricitylaw.inventionCrystalResonatorLamb wavesOpticslaw0103 physical sciencesDispersion (optics)Ceramics and CompositesSlab0210 nano-technologybusinessLaser Doppler vibrometerWaveguideCivil and Structural EngineeringComposite Structures
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