Iridi (Vietnamese Wikipedia)

Analysis of information sources in references of the Wikipedia article "Iridi" in Vietnamese language version.

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  • Jung, D.; Demazeau, Gérard (1995). “High Oxygen Pressure and the Preparation of New Iridium (VI) Oxides with Perovskite Structure: Sr
    2
    MIrO
    6
    (M = Ca, Mg)”. Journal of Solid State Chemistry. 115 (2): 447–455. Bibcode:1995JSSCh.115..447J. doi:10.1006/jssc.1995.1158.
  • Gong, Y.; Zhou, M.; Kaupp, M.; Riedel, S. (2009). “Formation and Characterization of the Iridium Tetroxide Molecule with Iridium in the Oxidation State +VIII”. Angewandte Chemie International Edition. 48: 7879–7883. doi:10.1002/anie.200902733.Quản lý CS1: nhiều tên: danh sách tác giả (liên kết)
  • Gulliver, D. J; Levason, W. (1982). “The chemistry of ruthenium, osmium, rhodium, iridium, palladium and platinum in the higher oxidation states”. Coordination Chemistry Reviews. 46: 1–127. doi:10.1016/0010-8545(82)85001-7.
  • Černý, R.; Joubert, J.-M.; Kohlmann, H.; Yvon, K. (2002). “Mg
    6
    Ir
    2
    H
    11
    , a new metal hydride containing saddle-like IrH5−
    4
    and square-pyramidal IrH4−
    5
    hydrido complexes”. Journal of Alloys and Compounds. 340 (1–2): 180–188. doi:10.1016/S0925-8388(02)00050-6.
  • Renner, H.; Schlamp, G.; Kleinwächter, I.; Drost, E.; Lüschow, H. M.; Tews, P.; Panster, P.; Diehl, M.; và đồng nghiệp (2002). “Platinum group metals and compounds”. Ullmann's Encyclopedia of Industrial Chemistry. Wiley. doi:10.1002/14356007.a21_075.
  • Vaska, L.; DiLuzio, J.W. (1961). “Carbonyl and Hydrido-Carbonyl Complexes of Iridium by Reaction with Alcohols. Hydrido Complexes by Reaction with Acid”. Journal of the American Chemical Society. 83 (12): 2784–2785. doi:10.1021/ja01473a054.
  • Crabtree, R. H. (1979). “Iridium compounds in catalysis”. Accounts of Chemical Research. 12 (9): 331–337. doi:10.1021/ar50141a005.
  • Audi, G.; Bersillon, O.; Blachot, J.; Wapstra, A.H. (2003). “The NUBASE Evaluation of Nuclear and Decay Properties”. Nuclear Physics A. Atomic Mass Data Center. 729: 3–128. Bibcode:2003NuPhA.729....3A. doi:10.1016/j.nuclphysa.2003.11.001.
  • Ogden, J. M. (1976). “The So-Called 'Platinum' Inclusions in Egyptian Goldwork”. The Journal of Egyptian Archaeology. 62: 138–144. doi:10.2307/3856354. JSTOR 3856354.
  • Griffith, W. P. (2004). “Bicentenary of Four Platinum Group Metals. Part II: Osmium and iridium – events surrounding their discoveries”. Platinum Metals Review. 48 (4): 182–189. doi:10.1595/147106704X4844.
  • Tennant, S. (1804). “On Two Metals, Found in the Black Powder Remaining after the Solution of Platina”. Philosophical Transactions of the Royal Society of London. 94: 411–418. doi:10.1098/rstl.1804.0018. JSTOR 107152.
  • Mössbauer, R. L. (1958). “Gammastrahlung in Ir191”. Zeitschrift für Physik A (bằng tiếng Đức). 151 (2): 124–143. Bibcode:1958ZPhy..151..124M. doi:10.1007/BF01344210.
  • Scott, E. R. D.; Wasson, J. T.; Buchwald, V. F. (1973). “The chemical classification of iron meteorites—VII. A reinvestigation of irons with Ge concentrations between 25 and 80 ppm”. Geochimica et Cosmochimica Acta. 37 (8): 1957–1983. Bibcode:1973GeCoA..37.1957S. doi:10.1016/0016-7037(73)90151-8.
  • Xiao, Z.; Laplante, A. R. (2004). “Characterizing and recovering the platinum group minerals—a review”. Minerals Engineering. 17 (9–10): 961–979. doi:10.1016/j.mineng.2004.04.001.
  • R. J. Seymour & O'Farrelly, J. I. (2001). “Platinum-group metals”. Kirk Othmer Encyclopedia of Chemical Technology. Wiley. doi:10.1002/0471238961.1612012019052513.a01.pub2.Quản lý CS1: sử dụng tham số tác giả (liên kết)
  • Alvarez, L. W.; Alvarez, W.; Asaro, F.; Michel, H. V. (1980). “Extraterrestrial cause for the Cretaceous–Tertiary extinction”. Science. 208 (4448): 1095–1108. Bibcode:1980Sci...208.1095A. doi:10.1126/science.208.4448.1095. PMID 17783054.
  • Hildebrand, A. R.; Penfield, Glen T.; Kring, David A.; Pilkington, Mark; Zanoguera, Antonio Camargo; Jacobsen, Stein B.; Boynton, William V. (1991). “Chicxulub Crater; a possible Cretaceous/Tertiary boundary impact crater on the Yucatan Peninsula, Mexico”. Geology. 19 (9): 867–871. Bibcode:1991Geo....19..867H. doi:10.1130/0091-7613(1991)019<0867:CCAPCT>2.3.CO;2.
  • Toutain, J.-P.; Meyer, G. (1989). “Iridium-Bearing Sublimates at a Hot-Spot Volcano (Piton De La Fournaise, Indian Ocean)”. Geophysical Research Letters. 16 (12): 1391–1394. Bibcode:1989GeoRL..16.1391T. doi:10.1029/GL016i012p01391.
  • Gilchrist, Raleigh (1943). “The Platinum Metals”. Chemical Reviews. 32 (3): 277–372. doi:10.1021/cr60103a002.
  • Ohriner, E. K. (2008). “Processing of Iridium and Iridium Alloys”. Platinum Metals Review. 52 (3): 186–197. doi:10.1595/147106708X333827.
  • Egorova, R. V.; Korotkov, B. V.; Yaroshchuk, E. G.; Mirkus, K. A.; Dorofeev N. A.; Serkov, A. T. (1979). “Spinnerets for viscose rayon cord yarn”. Fibre Chemistry. 10 (4): 377–378. doi:10.1007/BF00543390.
  • Biggs, T.; Taylor, S. S.; van der Lingen, E. (2005). “The Hardening of Platinum Alloys for Potential Jewellery Application”. Platinum Metals Review. 49 (1): 2–15. doi:10.1595/147106705X24409.
  • Crookes, W. (1908). “On the Use of Iridium Crucibles in Chemical Operations”. Proceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character. 80 (541): 535–536. Bibcode:1908RSPSA..80..535C. doi:10.1098/rspa.1908.0046. JSTOR 93031.
  • Cheung, H.; Tanke, R. S.; Torrence, G. P. (2000). “Acetic acid”. Ullmann's Encyclopedia of Industrial Chemistry. Wiley. doi:10.1002/14356007.a01_045.
  • Halmshaw, R. (1954). “The use and scope of Iridium 192 for the radiography of steel”. British Journal of Applied Physics. 5 (7): 238–243. Bibcode:1954BJAP....5..238H. doi:10.1088/0508-3443/5/7/302.
  • Ziegler, E.; Hignette, O.; Morawe, Ch.; Tucoulou, R. (2001). “High-efficiency tunable X-ray focusing optics using mirrors and laterally-graded multilayers”. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 467–468: 954–957. Bibcode:2001NIMPA.467..954Z. doi:10.1016/S0168-9002(01)00533-2.
  • Möhl, D. (1997). “Production of low-energy antiprotons”. Zeitschrift Hyperfine Interactions. 109: 33–41. Bibcode:1997HyInt.109...33M. doi:10.1023/A:1012680728257.
  • Janowicz, A. H.; Bergman, R. G. (1982). “Carbon-hydrogen activation in completely saturated hydrocarbons: direct observation of M + R-H -> M(R)(H)”. Journal of the American Chemical Society. 104 (1): 352–354. doi:10.1021/ja00365a091.
  • Hoyano, J. K.; Graham, W. A. G. (1982). “Oxidative addition of the carbon-hydrogen bonds of neopentane and cyclohexane to a photochemically generated iridium(I) complex”. Journal of the American Chemical Society. 104 (13): 3723–3725. doi:10.1021/ja00377a032.
  • Källström, K; Munslow, I; Andersson, P. G. (2006). “Ir-catalysed asymmetric hydrogenation: Ligands, substrates and mechanism”. Chemistry: A European Journal. 12 (12): 3194–3200. doi:10.1002/chem.200500755. PMID 16304642.
  • Roseblade, S. J.; Pfaltz, A. (2007). “Iridium-catalyzed asymmetric hydrogenation of olefins”. Accounts of Chemical Research. 40 (12): 1402–1411. doi:10.1021/ar700113g. PMID 17672517.
  • Wang, X.; Andersson, M. R.; Thompson, M. E.; Inganäsa, O. (2004). “Electrophosphorescence from substituted poly(thiophene) doped with iridium or platinum complex”. Thin Solid Films. 468 (1–2): 226–233. Bibcode:2004TSF...468..226W. doi:10.1016/j.tsf.2004.05.095.
  • Holder, E.; Langefeld, B. M. W.; Schubert, U. S. (ngày 25 tháng 4 năm 2005). “New Trends in the Use of Transition Metal-Ligand Complexes for Applications in Electroluminescent Devices”. Advanced Materials. 17 (9): 1109–1121. doi:10.1002/adma.200400284.

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furuyametals.co.jp

harvard.edu

ui.adsabs.harvard.edu

chandra.harvard.edu

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miracosta.edu

  • Becker, Luann (2002). “Repeated Blows” (PDF). Scientific American. 286 (3): 77–83. Truy cập ngày 19 tháng 1 năm 2016.

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nvl.nist.gov

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  • Emsley, J. (ngày 18 tháng 1 năm 2005). “Iridium” (PDF). Visual Elements Periodic Table. Royal Society of Chemistry. Truy cập ngày 17 tháng 9 năm 2008.

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