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961.
962.
963.
Formation Mechanism of the First Carbon–Carbon Bond and the First Olefin in the Methanol Conversion into Hydrocarbons 下载免费PDF全文
Dr. Yue Liu Dr. Sebastian Müller Dr. Daniel Berger Dr. Jelena Jelic Prof. Dr. Karsten Reuter Dr. Markus Tonigold Dr. Maricruz Sanchez‐Sanchez Prof. Dr. Johannes A. Lercher 《Angewandte Chemie (International ed. in English)》2016,55(19):5723-5726
The elementary reactions leading to the formation of the first carbon–carbon bond during early stages of the zeolite‐catalyzed methanol conversion into hydrocarbons were identified by combining kinetics, spectroscopy, and DFT calculations. The first intermediates containing a C?C bond are acetic acid and methyl acetate, which are formed through carbonylation of methanol or dimethyl ether even in presence of water. A series of acid‐catalyzed reactions including acetylation, decarboxylation, aldol condensation, and cracking convert those intermediates into a mixture of surface bounded hydrocarbons, the hydrocarbon pool, as well as into the first olefin leaving the catalyst. This carbonylation based mechanism has an energy barrier of 80 kJ mol?1 for the formation of the first C?C bond, in line with a broad range of experiments, and significantly lower than the barriers associated with earlier proposed mechanisms. 相似文献
964.
Benjamin Schwarz Dr. Johannes Forster McKenna K. Goetz Duygu Yücel Claudia Berger Prof. Dr. Timo Jacob Prof. Dr. Carsten Streb 《Angewandte Chemie (International ed. in English)》2016,55(21):6329-6333
Photosynthetic water oxidation in plants occurs at an inorganic calcium manganese oxo cluster, which is known as the oxygen evolving complex (OEC), in photosystem II. Herein, we report a synthetic OEC model based on a molecular manganese vanadium oxide cluster, [Mn4V4O17(OAc)3]3?. The compound is based on a [Mn4O4]6+ cubane core, which catalyzes the homogeneous, visible‐light‐driven oxidation of water to molecular oxygen and is stabilized by a tripodal [V4O13]6? polyoxovanadate and three acetate ligands. When combined with the photosensitizer [Ru(bpy)3]2+ and the oxidant persulfate, visible‐light‐driven water oxidation with turnover numbers of approximately 1150 and turnover frequencies of about 1.75 s?1 is observed. Electrochemical, mass‐spectrometric, and spectroscopic studies provide insight into the cluster stability and reactivity. This compound could serve as a model for the molecular structure and reactivity of the OEC and for heterogeneous metal oxide water‐oxidation catalysts. 相似文献
965.
Back Cover: Visible‐Light‐Driven Water Oxidation by a Molecular Manganese Vanadium Oxide Cluster (Angew. Chem. Int. Ed. 21/2016) 下载免费PDF全文
966.
Highly Chemoselective Iridium Photoredox and Nickel Catalysis for the Cross‐Coupling of Primary Aryl Amines with Aryl Halides 下载免费PDF全文
Dr. Martins S. Oderinde Natalie H. Jones Antoine Juneau Prof. Mathieu Frenette Dr. Brian Aquila Sharon Tentarelli Dr. Daniel W. Robbins Dr. Jeffrey W. Johannes 《Angewandte Chemie (International ed. in English)》2016,55(42):13219-13223
A visible‐light‐promoted iridium photoredox and nickel dual‐catalyzed cross‐coupling procedure for the formation C?N bonds has been developed. With this method, various aryl amines were chemoselectively cross‐coupled with electronically and sterically diverse aryl iodides and bromides to forge the corresponding C?N bonds, which are of high interest to the pharmaceutical industries. Aryl iodides were found to be a more efficient electrophilic coupling partner. The coupling reactions were carried out at room temperature without the rigorous exclusion of molecular oxygen, thus making this newly developed Ir‐photoredox/Ni dual‐catalyzed procedure very mild and operationally simple. 相似文献
967.
Template‐Free Supracolloidal Self‐Assembly of Atomically Precise Gold Nanoclusters: From 2D Colloidal Crystals to Spherical Capsids 下载免费PDF全文
Dr. Nonappa Dr. Tanja Lahtinen M. Sc. Johannes. S. Haataja Dr. Tiia‐Riikka Tero Prof. Hannu Häkkinen Prof. Olli Ikkala 《Angewandte Chemie (International ed. in English)》2016,55(52):16035-16038
We report supracolloidal self‐assembly of atomically precise and strictly monodisperse gold nanoclusters involving p‐mercaptobenzoic acid ligands (Au102‐pMBA44) under aqueous conditions into hexagonally packed monolayer‐thick two‐dimensional facetted colloidal crystals (thickness 2.7 nm) and their bending to closed shells leading to spherical capsids (d ca. 200 nm), as controlled by solvent conditions. The 2D colloidal assembly is driven in template‐free manner by the spontaneous patchiness of the pMBA ligands around the Au102‐pMBA44 nanoclusters preferably towards equatorial plane, thus promoting inter‐nanocluster hydrogen bonds and high packing to planar sheets. More generally, the findings encourage to explore atomically precise nanoclusters towards highly controlled colloidal self‐assemblies. 相似文献
968.
969.
Dr. José I. Urgel Prof. David Écija Dr. Saranyan Vijayaraghavan Mathias Pörtner Prof. Marie-Laure Bocquet Prof. Willi Auwärter Prof. Johannes V. Barth 《Chemphyschem》2019,20(18):2301-2304
We report a low-temperature scanning tunneling microscopy investigation of the in-situ growth of gadolinium phthalocyaninato complexes by combined deposition of free-base phthalocyanines and gadolinium atoms on a smooth Ag(111) substrate. A careful control of the stoichiometry allows the expression of a multilevel structurecomposed of irregularly distributed Gdx-1(Pc)x complexes, x=2–5, thus paving new avenues for surface-confined columnar growth. 相似文献
970.
Studies of a Large Odd‐Numbered Odd‐Electron Metal Ring: Inelastic Neutron Scattering and Muon Spin Relaxation Spectroscopy of Cr8Mn 下载免费PDF全文
Dr. Michael L. Baker Dr. Tom Lancaster Alessandro Chiesa Prof. Giuseppe Amoretti Dr. Peter J. Baker Claire Barker Prof. Stephen J. Blundell Prof. Stefano Carretta Prof. David Collison Prof. Hans U. Güdel Dr. Tatiana Guidi Prof. Eric J. L. McInnes Dr. Johannes S. Möller Dr. Hannu Mutka Dr. Jacques Ollivier Dr. Francis L. Pratt Prof. Paolo Santini Dr. Floriana Tuna Dr. Iñigo J. Vitorica‐Yrezabal Dr. Grigore A. Timco Prof. Richard E. P. Winpenny 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(5):1779-1788
The spin dynamics of Cr8Mn, a nine‐membered antiferromagnetic (AF) molecular nanomagnet, are investigated. Cr8Mn is a rare example of a large odd‐membered AF ring, and has an odd‐number of 3d‐electrons present. Odd‐membered AF rings are unusual and of interest due to the presence of competing exchange interactions that result in frustrated‐spin ground states. The chemical synthesis and structures of two Cr8Mn variants that differ only in their crystal packing are reported. Evidence of spin frustration is investigated by inelastic neutron scattering (INS) and muon spin relaxation spectroscopy (μSR). From INS studies we accurately determine an appropriate microscopic spin Hamiltonian and we show that μSR is sensitive to the ground‐spin‐state crossing from S=1/2 to S=3/2 in Cr8Mn. The estimated width of the muon asymmetry resonance is consistent with the presence of an avoided crossing. The investigation of the internal spin structure of the ground state, through the analysis of spin‐pair correlations and scalar‐spin chirality, shows a non‐collinear spin structure that fluctuates between non‐planar states of opposite chiralities. 相似文献