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Bis(2,2'-bipyridine)-(5-aminophenanthroline) ruthenium Bis(hexafluorophosphate)

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(2N) 99% Bis(2,2'-bipyridine)-(5-aminophenanthroline)ruthenium Bis(hexafluorophosphate)
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(3N) 99.9% Bis(2,2'-bipyridine)-(5-aminophenanthroline)ruthenium Bis(hexafluorophosphate)
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(4N) 99.99% Bis(2,2'-bipyridine)-(5-aminophenanthroline)ruthenium Bis(hexafluorophosphate)
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(5N) 99.999% Bis(2,2'-bipyridine)-(5-aminophenanthroline)ruthenium Bis(hexafluorophosphate)
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Bis(2,2'-bipyridine)-(5-aminophenanthroline) ruthenium Bis(hexafluorophosphate) Properties

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Bis(2,2'-bipyridine)-(5-aminophenanthroline) ruthenium Bis(hexafluorophosphate) Health & Safety Information

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About Bis(2,2'-bipyridine)-(5-aminophenanthroline) ruthenium Bis(hexafluorophosphate)

Bis(2,2'-bipyridine)-(5-aminophenanthroline)ruthenium Bis(hexafluorophosphate) is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered. American Elements produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Additional technical, research and safety (MSDS) information is available as is a Reference Calculator for converting relevant units of measurement.

Bis(2,2'-bipyridine)-(5-aminophenanthroline) ruthenium Bis(hexafluorophosphate) Synonyms


Bis(2,2'-bipyridine)-(5-aminophenanthroline) ruthenium Bis(hexafluorophosphate) Chemical Identifiers

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10-phenanthrolin-5-amine; 2-pyridin-2-ylpyridine; ruthenium(2+); dihexafluorophosphate



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Packaging Specifications

Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Shipping documentation includes a Certificate of Analysis and Safety Data Sheet (SDS). Solutions are packaged in polypropylene, plastic or glass jars up to palletized 440 gallon liquid totes, and 36,000 lb. tanker trucks.

Related Elements

See more Ruthenium products. Ruthenium (atomic symbol: Ru, atomic number: 44) is a Block D, Group 8, Period 5 elemen with an atomic weight of 101.07. Ruthenium Bohr ModelThe number of electrons in each of ruthenium's shells is [2, 8, 18, 15, 1] and its electron configuration is [Kr] 4d7 5s1. The ruthenium atom has a radius of 134 pm and a Van der Waals radius of 207 pm. Ruthenium was discovered by J?drzej ?niadecki in 1807. It was first recognized as a distinct element by Karl Ernst Claus in 1844. Elemental RutheniumIn its elemental form, ruthenium has a silvery white metallic appearance. Ruthenium is a rare transition metal belonging to the platinum group of metals. It is found in pentlandite, pyroxenite, and platinum group metal ores. The name Ruthenium originates from the Latin word "Ruthenia," meaning Russia.

Recent Research

Role of Mediator and Effects of Temperature on ortho-C-N Bond Fusion Reactions of Aniline Using Ruthenium Templates: Isolation and Characterization of New Ruthenium Complexes of the in-Situ-Generated Ligands., Roy, Suman K., Sengupta Debabrata, Rath Santi Prasad, Saha Tanushri, Samanta Subhas, and Goswami Sreebrata , Inorg Chem, 2017 May 01, Volume 56, Issue 9, p.4966-4977, (2017)

Comparative solution equilibrium studies of antitumor ruthenium(η(6)-p-cymene) and rhodium(η(5)-C5Me5) complexes of 8-hydroxyquinolines., Dömötör, Orsolya, Pape Veronika F. S., May Nóra V., Szakács Gergely, and Enyedy Éva A. , Dalton Trans, 2017 Mar 13, (2017)

Energy-Storage Applications for a pH Gradient between Two Benzimidazole-Ligated Ruthenium Complexes That Engage in Proton-Coupled Electron-Transfer Reactions in Solution., Motoyama, Daisuke, Yoshikawa Kai, Ozawa Hiroaki, Tadokoro Makoto, and Haga Masa-Aki , Inorg Chem, 2017 Jun 05, Volume 56, Issue 11, p.6419-6428, (2017)

Soluble Two-Dimensional Covalent Organometallic Polymers by (Arene)Ruthenium-Sulfur Chemistry., Cherioux, Frederic, Coraux Johann, Muller Valentin, Magaud Laurence, Bendiab Nedjma, Hertog Martien Den, Leynaud Olivier, Hourani Wael, Lamare Simon, Kamaruddin Danial, et al. , Chemistry, 2017 Jun 03, (2017)

Mononuclear ruthenium compounds bearing N-donor and N-heterocyclic carbene ligands: structure and oxidative catalysis., Liu, Hai-Jie, Gil-Sepulcre Marcos, Francàs Laia, Nolis Pau, Parella Teodor, Benet-Buchholz Jordi, Fontrodona Xavier, García-Antón Jordi, Romero Nuria, Llobet Antoni, et al. , Dalton Trans, 2017 Feb 28, Volume 46, Issue 9, p.2829-2843, (2017)

Ruthenium(II) Complex Incorporated UiO-67 Metal-Organic Framework Nanoparticles for Enhanced Two-Photon Fluorescence Imaging and Photodynamic Cancer Therapy., Chen, Rui, Zhang Jinfeng, Chelora Jipsa, Xiong Yuan, Kershaw Stephen V., Li King Fai, Lo Pik-Kwan, Cheah Kok Wai, Rogach Andrey L., Zapien Juan Antonio, et al. , ACS Appl Mater Interfaces, 2017 Feb 10, (2017)

Robust Binding between Carbon Nitride Nanosheets and a Binuclear Ruthenium(II) Complex Enabling Durable, Selective CO2 Reduction under Visible Light in Aqueous Solution., Kuriki, Ryo, Yamamoto Muneaki, Higuchi Kimitaka, Yamamoto Yuta, Akatsuka Masato, Lu Daling, Yagi Shinya, Yoshida Tomoko, Ishitani Osamu, and Maeda Kazuhiko , Angew Chem Int Ed Engl, 2017 Apr 18, Volume 56, Issue 17, p.4867-4871, (2017)

Ruthenium acetylacetonate in interface engineering for high performance planar hybrid perovskite solar cells., Chen, Wei, Luo Shiqiang, Wan Zunyuan, Feng Xiyuan, Liu Xinke, and He Zhubing , Opt Express, 2017 Apr 17, Volume 25, Issue 8, p.A253-A263, (2017)

Ruthenium-Catalyzed Synthesis of Dialkoxymethane Ethers Utilizing Carbon Dioxide and Molecular Hydrogen., Thenert, Katharina, Beydoun Kassem, Wiesenthal Jan, Leitner Walter, and Klankermayer Jürgen , Angew Chem Int Ed Engl, 2016 Sep 26, Volume 55, Issue 40, p.12266-12269, (2016)

Four-Electron Reduction of a New Ruthenium Dicarbonyl Complex Having Two NAD Model Ligands through Decarboxylation in Water., Fukushima, Takashi, Ghosh Debashis, Kobayashi Katsuaki, Ohtsu Hideki, Kitagawa Susumu, and Tanaka Koji , Inorg Chem, 2016 Nov 3, (2016)


June 24, 2017
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