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303por Papaderakis, Athanasios, Pliatsikas, Nikolaos, Prochaska, Chara, Papazisi, Kalliopi M., Balomenou, Stella P., Tsiplakides, Dimitrios, Patsalas, Panagiotis, Sotiropoulos, Sotiris“…Ternary Pt-Ru-Ni deposits on glassy carbon substrates, Pt-Ru(Ni)/GC, have been formed by initial electrodeposition of Ni layers onto glassy carbon electrodes, followed by their partial exchange for Pt and Ru, upon their immersion into equimolar solutions containing complex ions of the precious metals. …”
Publicado 2014
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304por Liu, Mingfeng, Jin, Tianli, Hao, Liang, Cao, Jiangwei, Wang, Ying, Wu, Dongping, Bai, Jianmin, Wei, Fulin“…The effects of Ru and Ag cap layers on the microstructure and magnetic properties of the FePt ultrathin films have been investigated. …”
Publicado 2015
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305“…Bicyclo[4.2.0]oct-7-ene-7-carboxamides of primary amines are isomerized in the presence of (3-BrPyr)(2)Cl(2)(H(2)IMes)Ru=CHPh to the corresponding bicyclo[4.2.0]oct-1(8)-ene-8-carboxamides in which the olefinic bond is tetrasubstituted. …”
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306Ru-Catalysed C–H Arylation of Indoles and Pyrroles with Boronic Acids: Scope and Mechanistic Studiespor Sollert, Carina, Devaraj, Karthik, Orthaber, Andreas, Gates, Paul J, Pilarski, Lukasz T“…The Ru-catalysed C2–H arylation of indoles and pyrroles by using boronic acids under oxidative conditions is reported. …”
Publicado 2015
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307Conversion of biomass-derived sorbitol to glycols over carbon-materials supported Ru-based catalysts“…Ru located outside of the tubes showed excellent catalytic performance than those encapsulated inside the nanotubes. …”
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308por Balcar, Hynek, Žilková, Naděžda, Kubů, Martin, Mazur, Michal, Bastl, Zdeněk, Čejka, Jiří“…All catalysts were reusable and exhibited low Ru leaching (<1% of Ru content). XPS analysis revealed that during immobilization ion exchange between Hoveyda–Grubbs type catalyst and zeolitic support occurred in the case of Cl(−) counter anion; in contrast, PF(6)(−) counter anion underwent partial decomposition.…”
Publicado 2015
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309“…The analysis of the density of states and chemical bonding implies that the metallic behavior of NbRuB originates from the Ru and Nb, and the bonding behaviors are a mixture of covalent-ionic bonds. …”
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310“…Scavenging ability of the complexes on DPPH radical can be ranked in the following order: [Ru(DEE)Cl(2)(H(2)O)] > [Ru(HME)Cl(2)(H(2)O)] > [Ru(DAE)Cl(2)(H(2)O)] > [Ru(MBE)Cl(2)(H(2)O)].…”
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311por Li, Shandong, Wang, Cuiling, Chu, Xian-Ming, Miao, Guo-Xing, Xue, Qian, Zou, Wenqin, Liu, Meimei, Xu, Jie, Li, Qiang, Dai, Youyong, Yan, Shishen, Kang, Shishou, Long, Yunze, Lü, Yueguang“…In this study, we prepared a 50 nm FeCoB film with uniaxial magnetic anisotropy (UMA), showing a high acoustic mode f(r) of 4.17 GHz. When an ultrathin Ru spacer was inserted in the very middle of the UMA-FeCoB film, the zero-field FMR was abruptly switched from an acoustic mode to an optical one with f(r) dramatically enhanced from 4.17 GHz to 11.32 GHz. …”
Publicado 2016
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312por Ziatdinov, M., Banerjee, A., Maksov, A., Berlijn, T., Zhou, W., Cao, H. B., Yan, J.-Q., Bridges, C. A., Mandrus, D. G., Nagler, S. E., Baddorf, A. P., Kalinin, S. V.“…Here we report a comprehensive, atomically resolved real-space study by scanning transmission electron and scanning tunnelling microscopies on a novel layered material displaying Kitaev physics, α-RuCl(3). Our local crystallography analysis reveals considerable variations in the geometry of the ligand sublattice in thin films of α-RuCl(3) that opens a way to realization of a spatially inhomogeneous magnetic ground state at the nanometre length scale. …”
Publicado 2016
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313por Foteeva, Lidia S., Matczuk, Magdalena, Pawlak, Katarzyna, Aleksenko, Svetlana S., Nosenko, Sergey V., Karandashev, Vasily K., Jarosz, Maciej, Timerbaev, Andrei R.“…A high reactivity of the Ru drug was confirmed in affinity capillary electrophoresis (CE) mode, where adduct formation takes place in situ (i.e., in the capillary filled with an oligonucleotide-containing electrolyte). …”
Publicado 2017
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314“…To be able to render these transformations enantioselective, we have designed a chiral neutral Cp(x)Ru(ii)Cl complex basing on an atropchiral cyclopentadienyl (Cp(x)) ligand which is accessed in a streamlined C–H functionalisation approach. …”
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315Ru-N-C Hybrid Nanocomposite for Ammonia Dehydrogenation: Influence of N-doping on Catalytic Activitypor Hien, Nguyen Thi Bich, Kim, Hyo Young, Jeon, Mina, Lee, Jin Hee, Ridwan, Muhammad, Tamarany, Rizcky, Yoon, Chang Won“…For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C, were synthesized via simple pyrolysis of a mixture of RuCl(3)·6H(2)O and carbon black with or without dicyandiamide as a nitrogen-containing precursor at 550 °C. …”
Publicado 2015
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316por Weickert, Franziska, Civale, Leonardo, Maiorov, Boris, Jaime, Marcelo, Salamon, Myron B., Carleschi, Emanuela, Strydom, André M., Fittipaldi, Rosalba, Granata, Veronica, Vecchione, Antonio“…Metamagnetism occuring inside a ferromagnetic phase is peculiar. Therefore, Sr(4)Ru(3)O(10), a T (C) = 105 K ferromagnet, has attracted much attention in recent years, because it develops a pronounced metamagnetic anomaly below T (C) for magnetic fields applied in the crystallographic ab-plane. …”
Publicado 2017
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317“…Surfaces of rutile-like RuO(2), especially the most stable (110) surface, are important for catalysis, sensing and charge storage applications. …”
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318por Strebl, Martin G., Campbell, Arthur J., Zhao, Wen-Ning, Schroeder, Frederick A., Riley, Misha M., Chindavong, Peter S., Morin, Thomas M., Haggarty, Stephen J., Wagner, Florence F., Ritter, Tobias, Hooker, Jacob M.Enlace del recurso
Publicado 2017
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319por Zhang, Quan, Kusada, Kohei, Wu, Dongshuang, Yamamoto, Tomokazu, Toriyama, Takaaki, Matsumura, Syo, Kawaguchi, Shogo, Kubota, Yoshiki, Kitagawa, Hiroshi“…By precisely tuning the reduction speed of the metal precursors, we selectively control the crystal structure of alloy nanoparticles, and are able to selectively synthesize fcc and hcp AuRu(3) alloy nanoparticles at ambient conditions. …”
Publicado 2018
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320“…The morphology and composition dependent catalytic and electrocatalytic activities of these unprotected Ru nano-chain networks (Ru-30, Ru-45 and Ru-60) were studied in detail. …”
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