Zeitschriftenartikel zum Thema „2-Bimetallics“
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Yang, Chunpeng, Byung Hee Ko, Sooyeon Hwang, Zhenyu Liu, Yonggang Yao, Wesley Luc, Mingjin Cui et al. „Overcoming immiscibility toward bimetallic catalyst library“. Science Advances 6, Nr. 17 (April 2020): eaaz6844. http://dx.doi.org/10.1126/sciadv.aaz6844.
Der volle Inhalt der QuelleSmith, KA, GB Deacon, WR Jackson und JM Miller. „Preparation and Reactivity of Some Phenyl-bismuth(III) Quinolin-8-olate Derivatives“. Australian Journal of Chemistry 49, Nr. 2 (1996): 231. http://dx.doi.org/10.1071/ch9960231.
Der volle Inhalt der QuelleVerma, Alkadevi, Rajeev Kumar Gupta, Madhulata Shukla, Manisha Malviya und Indrajit Sinha. „Ag–Cu Bimetallic Nanoparticles as Efficient Oxygen Reduction Reaction Electrocatalysts in Alkaline Media“. Journal of Nanoscience and Nanotechnology 20, Nr. 3 (01.03.2020): 1765–72. http://dx.doi.org/10.1166/jnn.2020.17154.
Der volle Inhalt der QuelleAgrotis, Stefanos, Daren J. Caruana, Albertus Denny Handoko, Mustafa Emre Sener und Oliver S. J. Hagger. „Atmospheric Pressure Plasma Jet Synthesis and Characterization of Copper-Silver Bimetallic Materials as Electrocatalysts for CO2 Reduction“. ECS Meeting Abstracts MA2024-01, Nr. 24 (09.08.2024): 1403. http://dx.doi.org/10.1149/ma2024-01241403mtgabs.
Der volle Inhalt der QuelleLee, Shung-Ik, John M. Vohs und Raymond J. Gorte. „A Study of SOFC Anodes Based on Cu-Ni and Cu-Co Bimetallics in CeO[sub 2]-YSZ“. Journal of The Electrochemical Society 151, Nr. 9 (2004): A1319. http://dx.doi.org/10.1149/1.1774184.
Der volle Inhalt der QuelleDeacon, GB, CM Forsyth, WC Patalinghug, AH White, A. Dietrich und H. Schumann. „Organolanthanoids. XVII. The Synthesis of Bis(diphenylphosphinocyclopentadienyl)ytterbium(II) and Derived Heterobimetallic Complexes [Yb(thf)n(C5H4PPh2)2Z] [Z=Ni(CO)2, Mo(CO)4 or PtMe2; n = 1 or 2; thf = Tetrahydrofuran]. The X-Ray Crystal-Structure of [Yb(thf)2(C5H4PPh2)2Ni(CO)2]“. Australian Journal of Chemistry 45, Nr. 3 (1992): 567. http://dx.doi.org/10.1071/ch9920567.
Der volle Inhalt der QuelleDing, Shengda, Pokhraj Ghosh, Marcetta Y. Darensbourg und Michael B. Hall. „Interplay of hemilability and redox activity in models of hydrogenase active sites“. Proceedings of the National Academy of Sciences 114, Nr. 46 (30.10.2017): E9775—E9782. http://dx.doi.org/10.1073/pnas.1710475114.
Der volle Inhalt der QuelleADURIZ, H. R., P. BODNARIUK, B. COQ und F. FIGUERAS. „ChemInform Abstract: Alumina-Supported Bimetallics of Palladium Alloyed with Germanium, Tin, Lead, or Antimony from Organometallic Precursors. Part 2. Gas-Phase Hydrogenation of 2-Methyl-1-buten-3-yne (Valylene) and 2-Methyl-1,3- butadiene (Isoprene).“ ChemInform 22, Nr. 27 (23.08.2010): no. http://dx.doi.org/10.1002/chin.199127096.
Der volle Inhalt der QuelleADURIZ, H. „Alumina-supported bimetallics of palladium alloyed with germanium, tin, lead, or antimony from organometallic precursors II. gas-phase hydrogenation of 2-methyl-1-buten-3-yne (valylene) and 2-methyl-1,3-butadiene (isoprene)“. Journal of Catalysis 129, Nr. 1 (Mai 1991): 47–57. http://dx.doi.org/10.1016/0021-9517(91)90008-r.
Der volle Inhalt der QuelleCooke, Paul A., Caroline O'Dowd, Michael G. S. Londesborough, Josef Holub, Bohumil Štı́br, Mark Thornton-Pett, William Clegg, Simon J. Teat und John D. Kennedy. „B-frame supported bimetallics. ‘Composite cluster’ compounds and the structures of [2,7-(η5-C5Me5)2-nido-2,7,8,6-Ir2CSB6H8] and its 9-chloro derivative. Synchrotron and conventional X-ray studies“. Journal of Organometallic Chemistry 614-615 (Dezember 2000): 57–60. http://dx.doi.org/10.1016/s0022-328x(00)00592-1.
Der volle Inhalt der QuelleSoto, Joesene J., und Hector Abruna. „From Synthesis to Application: Ni3 Fe N As Oxygen Reduction Electrocatalyst in Anion Exchange Membrane Fuel Cells“. ECS Meeting Abstracts MA2023-02, Nr. 41 (22.12.2023): 2039. http://dx.doi.org/10.1149/ma2023-02412039mtgabs.
Der volle Inhalt der QuelleZheng, B., L. Deloux, E. Skrzypczak-Jankun, B. V. Cheesman, S. Pereira, M. Srebnik und M. Sabat. „A novel class of organometallic complexes: 1,1-bimetallics of boron and zirconium“. Journal of Molecular Structure: THEOCHEM 374, Nr. 1-3 (Januar 1996): 291–97. http://dx.doi.org/10.1016/s0166-1280(96)80083-2.
Der volle Inhalt der QuelleKatti, Kattesh V., und Ronald G. Cavell. „Application of phosphine and arsine-phosphoranimine backbones to the formation of early-late transition-metal bimetallics. Synthesis and characterization of new titanium-palladium frameworks: [cyclic]-(.eta.5-C5H5)Cl2TiN:PPh2(CH2)xEPh2PdCl2 (x = 1, E = P; x = 2, E = As)“. Organometallics 10, Nr. 3 (27.03.1991): 539–41. http://dx.doi.org/10.1021/om00049a007.
Der volle Inhalt der QuellePradhan, Alaka Nanda, Shivankan Mishra, Urminder Kaur, Bikram Keshari Rout, Jean-François Halet und Sundargopal Ghosh. „Bimetallic Perthiocarbonate Complexes of Cobalt: Synthesis, Structure and Bonding“. Molecules 29, Nr. 11 (06.06.2024): 2688. http://dx.doi.org/10.3390/molecules29112688.
Der volle Inhalt der QuelleChen, Lifang, Wei Liu, Haisong Feng, Yingyu Ren, Chunyuan Chen, Si Wang, Pan Yin, Yusen Yang, Xin Zhang und Min Wei. „Oxygen binding energy of doped metal: a shortcut to efficient Ni-based bimetallic catalysts for the hydrodeoxygenation reaction“. Catalysis Science & Technology 11, Nr. 13 (2021): 4376–86. http://dx.doi.org/10.1039/d1cy00496d.
Der volle Inhalt der QuelleMatsinov, S. A., V. A. Kalinichenko und A. A. Andrushevich. „Prospects of coating application for improving surface properties of cast composite materials“. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY), Nr. 2 (11.06.2024): 63–71. http://dx.doi.org/10.21122/1683-6065-2024-2-63-71.
Der volle Inhalt der QuelleZhang, Yunya, Weijian Diao, John R. Monnier und Christopher T. Williams. „Pd–Ag/SiO2 bimetallic catalysts prepared by galvanic displacement for selective hydrogenation of acetylene in excess ethylene“. Catalysis Science & Technology 5, Nr. 8 (2015): 4123–32. http://dx.doi.org/10.1039/c5cy00353a.
Der volle Inhalt der QuelleHu, Quan Yuan, und Guochen Jia. „Synthesis and electrochemical properties of bimetallic η5-indenyl ruthenium complexes“. Canadian Journal of Chemistry 87, Nr. 1 (01.01.2009): 134–38. http://dx.doi.org/10.1139/v08-106.
Der volle Inhalt der QuelleCoq, B., P. S. Kumbhar, C. Moreau, P. Moreau und M. G. Warawdekar. „Liquid phase hydrogenation of cinnamaldehyde over supported ruthenium catalysts: Influence of particle size, bimetallics and nature of support“. Journal of Molecular Catalysis 85, Nr. 2 (November 1993): 215–28. http://dx.doi.org/10.1016/0304-5102(93)80103-2.
Der volle Inhalt der QuelleWu, Xiang-Wen, Shi Yin, Wan-Fu Wu und Jian-Ping Ma. „Synthesis and characterization of two novel bimetallic macrocyclic complexes generated from 1,2,4-triazole-containing semi-rigid ligands andM(NO3)2units (M= Ni and Zn)“. Acta Crystallographica Section C Structural Chemistry 72, Nr. 4 (09.03.2016): 285–90. http://dx.doi.org/10.1107/s205322961600348x.
Der volle Inhalt der QuelleWang, Xiang, Feng Li, Wenzhu Li, Wenbing Gao, Yu Tang und Rong Li. „Hollow bimetallic cobalt-based selenide polyhedrons derived from metal–organic framework: an efficient bifunctional electrocatalyst for overall water splitting“. Journal of Materials Chemistry A 5, Nr. 34 (2017): 17982–89. http://dx.doi.org/10.1039/c7ta03167j.
Der volle Inhalt der QuelleBustinza, Ainhoa, Marina Frías, Yuefeng Liu und Enrique García-Bordejé. „Mono- and bimetallic metal catalysts based on Ni and Ru supported on alumina-coated monoliths for CO2 methanation“. Catalysis Science & Technology 10, Nr. 12 (2020): 4061–71. http://dx.doi.org/10.1039/d0cy00639d.
Der volle Inhalt der QuelleZheng, Yingting, Xiqian Wang, Chao Liu, Baoqiu Yu, Wenliang Li, Hailong Wang, Tingting Sun und Jianzhuang Jiang. „Triptycene-supported bimetallic salen porous organic polymers for high efficiency CO2 fixation to cyclic carbonates“. Inorganic Chemistry Frontiers 8, Nr. 11 (2021): 2880–88. http://dx.doi.org/10.1039/d1qi00163a.
Der volle Inhalt der QuelleChen, Ri, Siqi Lv, Yunying Xu, Zicong Lin, Guoying Zhang, Jian Wang, Bocheng Wang, Wenxia Wang, Igor Zhitomirsky und Yong Yang. „Design and Fabrication of MoCuOx Bimetallic Oxide Electrodes for High-Performance Micro-Supercapacitor by Electro-Spark Machining“. Micromachines 16, Nr. 1 (25.12.2024): 7. https://doi.org/10.3390/mi16010007.
Der volle Inhalt der QuelleWan, Xiaokang, Dashun Lu, Xianyun Wang, Gezhong Liu, Yanming Fu, Chao Hu, Nai Rong, Haitao Wang und Zude Cheng. „Enhanced Photoelectrochemical Water Oxidation on BiVO4 Photoanodes Functionalized by Bimetallic Dicyanamide Molecular Catalysts“. Sustainability 15, Nr. 4 (08.02.2023): 3129. http://dx.doi.org/10.3390/su15043129.
Der volle Inhalt der QuelleJain, R., A. K. Rai und R. C. Mehrotra. „Bimetallic Alkoxides of Nickel(II) with Niobium(V) and Tantalum(V)“. Zeitschrift für Naturforschung B 40, Nr. 10 (01.10.1985): 1371–76. http://dx.doi.org/10.1515/znb-1985-1022.
Der volle Inhalt der QuelleNguyen Thi Tuyet, Mai, Hoai Hoang Thi Thu, Huy Nguyen Le, Hoai Tran Thanh und Hai Phan Van. „Synthesis of bimetallic Ag-Au nanoparticles for surface-enhanced Raman scattering spectroscopy“. Vietnam Journal of Catalysis and Adsorption 11, Nr. 4 (11.12.2022): 12–17. http://dx.doi.org/10.51316/jca.2022.063.
Der volle Inhalt der QuelleKim, Whi Dong, Jung Min Park, Ji Young Ahn und Soo Hyung Kim. „Gas-Phase Growth of Heterostructures of Carbon Nanotubes and Bimetallic Nanowires“. Journal of Nanomaterials 2011 (2011): 1–7. http://dx.doi.org/10.1155/2011/736219.
Der volle Inhalt der QuelleToshima, Naoki. „Core/shell-structured bimetallic nanocluster catalysts for visible-light-induced electron transfer“. Pure and Applied Chemistry 72, Nr. 1-2 (01.01.2000): 317–25. http://dx.doi.org/10.1351/pac200072010317.
Der volle Inhalt der QuellePino, Natalia, Jennifer Quinchia, Santiago Gómez, Juan F. Espinal, Alejandro Montoya und Diana López. „Selective heterogeneous hydrodeoxygenation of acetophenone over monometallic and bimetallic Pt–Co catalyst“. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 379, Nr. 2209 (13.09.2021): 20200346. http://dx.doi.org/10.1098/rsta.2020.0346.
Der volle Inhalt der QuelleRashid, Hera, und P. V. Nidheesh. „Degradation of Textile Dye by Bimetallic Oxide Activated Peroxymonosulphate Process“. Catalysts 13, Nr. 1 (13.01.2023): 195. http://dx.doi.org/10.3390/catal13010195.
Der volle Inhalt der QuelleGoodwin, Vituruch, Phanwatsa Amnaphiang, Pimpreeya Thungngern, Kong Kah Shin, Parncheewa Udomsap und Nuwong Chollacoop. „Zeolite Supported Bimetallic Catalyst System: The Effect of Metal Loading for Catalytic Pyrolysis of Jatropha Residue“. Key Engineering Materials 751 (August 2017): 494–99. http://dx.doi.org/10.4028/www.scientific.net/kem.751.494.
Der volle Inhalt der QuelleMalinga, Thoko, Tukayi Kudanga und Londiwe Simphiwe Mbatha. „Stealth doxorubicin conjugated bimetallic selenium/silver nanoparticles for targeted cervical cancer therapy“. Advances in Natural Sciences: Nanoscience and Nanotechnology 12, Nr. 4 (01.12.2021): 045006. http://dx.doi.org/10.1088/2043-6262/ac389c.
Der volle Inhalt der QuellePham, Hung Tan, Devashis Majumdar, Jerzy Leszczynski und Minh Tho Nguyen. „4d and 5d bimetal doped tubular silicon clusters Si12M2 with M = Nb, Ta, Mo and W: a bimetallic configuration model“. Physical Chemistry Chemical Physics 19, Nr. 4 (2017): 3115–24. http://dx.doi.org/10.1039/c6cp05964c.
Der volle Inhalt der QuelleJiang, Jianbo, Chenyang Huang, Huiyong Ban und Letian Hai. „High-Cycle Fatigue Properties of Titanium-Clad Bimetallic Steel with Different Interfacial Conditions“. Buildings 13, Nr. 3 (14.03.2023): 758. http://dx.doi.org/10.3390/buildings13030758.
Der volle Inhalt der QuellePrakasam, Thirumurugan, Matteo Lusi, Elisa Nauha, John-Carl Olsen, Mohamadou Sy, Carlos Platas-Iglesias, Loïc J. Charbonnière und Ali Trabolsi. „Dynamic stereoisomerization in inherently chiral bimetallic [2]catenanes“. Chemical Communications 51, Nr. 27 (2015): 5840–43. http://dx.doi.org/10.1039/c4cc07392d.
Der volle Inhalt der QuelleDowling, Carolyn, Danielle R. Dinsdale und Martin T. Lemaire. „Preparation, electrochemical behavior, and variable-temperature magnetic properties of Co(3,5-DBSQ)2 complexes of imidazole- or pyrazole-substituted ligands“. Canadian Journal of Chemistry 93, Nr. 7 (Juli 2015): 769–74. http://dx.doi.org/10.1139/cjc-2014-0583.
Der volle Inhalt der QuelleDatta, Amitabha, Samiran Mitra und Georgina Rosair. „Synthesis, Characterisation and Structural Studies of [Zn(phen)3][Fe(CN)5(NO)]·2H2O·0.25MeOH and [(bipy)2(H2O)Zn(μ-NC)Fe(CN)4(NO)]·0.5H2O“. Zeitschrift für Naturforschung B 58, Nr. 9 (01.09.2003): 916–21. http://dx.doi.org/10.1515/znb-2003-0913.
Der volle Inhalt der QuelleKwon, Soonchul, Dong Jin Ham und Seung Geol Lee. „Enhanced H2 dissociative phenomena of Pt–Ir electrocatalysts for PEMFCs: an integrated experimental and theoretical study“. RSC Advances 5, Nr. 68 (2015): 54941–46. http://dx.doi.org/10.1039/c5ra07228j.
Der volle Inhalt der QuelleZhang, Yuan, Metini Janyasupab, Chen-Wei Liu, Po-Yuan Lin, Kuan-Wen Wang, Jiaqiang Xu und Chung-Chiun Liu. „Improvement of Amperometric Biosensor Performance for H2O2Detection based on Bimetallic PtM (M = Ru, Au, and Ir) Nanoparticles“. International Journal of Electrochemistry 2012 (2012): 1–8. http://dx.doi.org/10.1155/2012/410846.
Der volle Inhalt der QuelleShi, Li-Mei, Jing-Xiong Pan, Bo Zhou und Xiaoqing Jiang. „A new bifunctional electrochemical sensor for hydrogen peroxide and nitrite based on a bimetallic metalloporphyrinic framework“. Journal of Materials Chemistry B 3, Nr. 48 (2015): 9340–48. http://dx.doi.org/10.1039/c5tb01361e.
Der volle Inhalt der QuelleDrăghiceanu, Oana-Alexandra, Anca Nicoleta Șuțan, Codruța Mihaela Dobrescu, Nicoleta Doruța Bătut-Andrei, Liliana Cristina Soare und Carmen Mihaela Topală. „CHARACTERIZATION IN TERMS OF COMPOSITION AND PHYTOTOXICITY OF AQUEOUS SPORES EXTRACT“. Current Trends in Natural Sciences 10, Nr. 20 (31.12.2021): 53–60. http://dx.doi.org/10.47068/ctns.2021.v10i20.008.
Der volle Inhalt der QuellePiccolo, Oreste, Iztok Arčon, Gangadhar Das, Giuliana Aquilanti, Andrea Prai, Stefano Paganelli, Manuela Facchin und Valentina Beghetto. „Synthesis of Helional by Hydrodechlorination Reaction in the Presence of Mono- and Bimetallic Catalysts Supported on Alumina“. Catalysts 14, Nr. 4 (12.04.2024): 255. http://dx.doi.org/10.3390/catal14040255.
Der volle Inhalt der QuelleHe, Zhenhong, Qingli Qian, Zhaofu Zhang, Qinglei Meng, Huacong Zhou, Zhiwei Jiang und Buxing Han. „Synthesis of higher alcohols from CO 2 hydrogenation over a PtRu/Fe 2 O 3 catalyst under supercritical condition“. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 373, Nr. 2057 (28.12.2015): 20150006. http://dx.doi.org/10.1098/rsta.2015.0006.
Der volle Inhalt der QuelleLlorca-Isern, Núria, Ana Maria Escobar, Antoni Roca und Jose María Cabrera. „Equal Channel Angular Pressing of Cu-Al Bimetallic Rod“. Materials Science Forum 706-709 (Januar 2012): 1811–16. http://dx.doi.org/10.4028/www.scientific.net/msf.706-709.1811.
Der volle Inhalt der QuelleZhang, Xiaolong, Fengwang Li, Ying Zhang, Alan M. Bond und Jie Zhang. „Stannate derived bimetallic nanoparticles for electrocatalytic CO2 reduction“. Journal of Materials Chemistry A 6, Nr. 17 (2018): 7851–58. http://dx.doi.org/10.1039/c8ta02429d.
Der volle Inhalt der QuelleDepauw, Hannes, Irena Nevjestić, Guangbo Wang, Karen Leus, Freddy Callens, Els De Canck, Klaartje De Buysser, Henk Vrielinck und Pascal Van Der Voort. „Discovery of a novel, large pore phase in a bimetallic Al/V metal–organic framework“. Journal of Materials Chemistry A 5, Nr. 47 (2017): 24580–84. http://dx.doi.org/10.1039/c7ta08103k.
Der volle Inhalt der QuelleRidenour, J. August, und Christopher L. Cahill. „Nine isomorphous lanthanide–uranyl f–f bimetallic materials with 2-thiophenecarboxylic acid and terpyridine: structure and concomitant luminescent properties“. CrystEngComm 20, Nr. 34 (2018): 4997–5011. http://dx.doi.org/10.1039/c8ce00811f.
Der volle Inhalt der QuelleKim, Young-hee, Yvonne M. McKinnes, Paul A. Cooke, Robert Greatrex, John D. Kennedy und Mark Thornton-Pett. „Metallaborane Reaction Chemistry. Part 7. B-Frame Supported Bimetallics: Ligand-to-β-Metal Organometallic Interaction in Dimetallaboranes and an Interesting Ligand Displacement Cascade“. Collection of Czechoslovak Chemical Communications 64, Nr. 6 (1999): 938–46. http://dx.doi.org/10.1135/cccc19990938.
Der volle Inhalt der QuelleShiraishi, Yukihide, Daisuke Ikenaga und Naoki Toshima. „Preparation and Catalysis of Inverted Core/Shell Structured Pd/Au Bimetallic Nanoparticles“. Australian Journal of Chemistry 56, Nr. 10 (2003): 1025. http://dx.doi.org/10.1071/ch03051.
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