Inside back cover (Englisch)
In:
Catalysis science & technology
;
6
, 5
; 1555-1555
;
2016
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ISSN:
- Aufsatz (Zeitschrift) / Print
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Titel:Inside back cover
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Erschienen in:Catalysis science & technology ; 6, 5 ; 1555-1555
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Verlag:
- Neue Suche nach: RSC Publ.
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Erscheinungsort:Cambridge
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Erscheinungsdatum:2016
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ISSN:
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ZDBID:
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DOI:
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Medientyp:Aufsatz (Zeitschrift)
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Format:Print
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Sprache:Englisch
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Schlagwörter:
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Klassifikation:
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Datenquelle:
Inhaltsverzeichnis – Band 6, Ausgabe 5
Zeige alle Jahrgänge und Ausgaben
Die Inhaltsverzeichnisse werden automatisch erzeugt und basieren auf den im Index des TIB-Portals verfügbaren Einzelnachweisen der enthaltenen Beiträge. Die Anzeige der Inhaltsverzeichnisse kann daher unvollständig oder lückenhaft sein.
- 132
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Reversible cyclometalation at RhI as a motif for metal-ligand bifunctional bond activation and base-free formic acid dehydrogenationElectronic supplementary information (ESI) available: Spectroscopic, crystallographic, catalytic and computational details. See DOI: 10.1039/c5cy01505gJongbloed, L. S et al. | 2016
- 132
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A general and efficient method for the palladium-catalysed conversion of allylic alcohols into their corresponding dienesElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy02096dOstrowski, Karoline A et al. | 2016
- 136
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Molecular ruthenium water oxidation catalysts carrying non-innocent ligands: mechanistic insight through structure-activity relationships and quantum chemical calculationsElectronic supplementary information (ESI) available: Experimental details, synthetic procedures, characterization of new compounds, electrochemical data, calculated structures and final geometry coordinates for calculated structures. See DOI: 10.1039/c5cy01704aKärkäs, Markus D et al. | 2016
- 141
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A novel, efficient, and recyclable biocatalyst for Michael addition reactions and its iron(iii) complex as promoter for alkyl oxidation reactionsElectronic supplementary information (ESI) available: Application of Cs-g-PCPA, a graft copolymer, against unmodified chitosan beads, for some Michael addition reactions and, also, application of the Cs-g-PCPA/Fe(iii) chelate as an oxidizing catalyst are provided as supporting data. See DOI: 10.1039/c5cy01034aKhalil, Khaled D et al. | 2016
- 142
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Ru/N-AC catalyst to produce vinyl chloride from acetylene and 1,2-dichloroethaneElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01277eZhao, Wei et al. | 2016
- 143
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Zeolite Y-assisted nitration of aromatic and heterocyclic compounds and decarboxylative nitration of α,β-unsaturated acids under non-conventional conditionsElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy00919gSudhakar Chary, V et al. | 2016
- 153
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La-modified mesoporous Mg-Al mixed oxides: effective and stable base catalysts for the synthesis of dimethyl carbonate from methyl carbamate and methanolElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01712bWang, Dengfeng et al. | 2016
- 1507
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Low-temperature selective catalytic reduction of NOx with NH3 over a manganese and cerium oxide/graphene composite prepared by a hydrothermal methodXiao, Xiang / Sheng, Zhongyi / Yang, Liu / Dong, Fan et al. | 2016
- 1237
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Front cover| 2016
- 1238
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Inside front cover| 2016
- 1239
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Contents list| 2016
- 1248
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Ceria-based catalysts for low-temperature selective catalytic reduction of NO with NH3Tang, Changjin / Zhang, Hongliang / Dong, Lin et al. | 2016
- 1265
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Metal-supported carbon-based materials: opportunities and challenges in the synthesis of valuable productsPérez-Mayoral, E. / Calvino-Casilda, V. / Soriano, E. et al. | 2016
- 1292
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A switch in a substrate tunnel for directing regioselectivity of nitrile hydratases towards α,ω-dinitrilesCheng, Zhongyi / Cui, Wenjing / Liu, Zhongmei / Zhou, Li / Wang, Min / Kobayashi, Michihiko / Zhou, Zhemin et al. | 2016
- 1292
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A switch in a substrate tunnel for directing regioselectivity of nitrile hydratases towards α,ω-dinitrilesElectronic supplementary information (ESI) available: Experimental section, supplementary tables and figures, and crystal structure deposited in the PDB under the accession code: 3QXE. See DOI: 10.1039/c5cy01997dCheng, Zhongyi et al. | 2016
- 1297
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Equilibrium analysis of methylbenzene intermediates for a methanol-to-olefins processCai, Dali / Wang, Qi / Jia, Zhao / Ma, Yunhai / Cui, Yu / Muhammad, Usman / Wang, Yao / Qian, Weizhong / Wei, Fei et al. | 2016
- 1302
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A general and efficient method for the palladium-catalysed conversion of allylic alcohols into their corresponding dienesOstrowski, Karoline A. / Vogelsang, Denni / Vorholt, Andreas J. et al. | 2016
- 1306
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Molecular ruthenium water oxidation catalysts carrying non-innocent ligands: mechanistic insight through structure–activity relationships and quantum chemical calculationsKärkäs, Markus D. / Liao, Rong-Zhen / Laine, Tanja M. / Åkermark, Torbjörn / Ghanem, Sham / Siegbahn, Per E. M. / Åkermark, Björn et al. | 2016
- 1320
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Reversible cyclometalation at RhI as a motif for metal–ligand bifunctional bond activation and base-free formic acid dehydrogenationJongbloed, L. S. / de Bruin, B. / Reek, J. N. H. / Lutz, M. / van der Vlugt, J. I. et al. | 2016
- 1328
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Hierarchical ZSM-11 zeolite prepared by alkaline treatment with mixed solution of NaOH and CTAB: characterization and application for alkylation of benzene with dimethyl etherElectronic supplementary information (ESI) available. See DOI:10.1039/c5cy01493jLiu, Hui et al. | 2016
- 1328
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Hierarchical ZSM-11 zeolite prepared by alkaline treatment with mixed solution of NaOH and CTAB: characterization and application for alkylation of benzene with dimethyl etherLiu, Hui / Xie, Sujuan / Xin, Wenjie / Liu, Shenglin / Xu, Longya et al. | 2016
- 1343
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Oxidation of olefins with H2O2 catalysed by salts of group III metals (Ga, In, Sc, Y and La): epoxidation versus hydroperoxidationElectronic supplementary information (ESI) available: Figures with experimental accumulation curves, tables with synchronicity, Gibbs free energies of activation and reaction, total energies, enthalpies, entropies, Gibbs free energies and Cartesian atomic coordinates. See DOI: 10.1039/c5cy01367dNovikov, Alexander S et al. | 2016
- 1343
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Oxidation of olefins with H2O2 catalysed by salts of group III metals (Ga, In, Sc, Y and La): epoxidation versus hydroperoxidationNovikov, Alexander S. / Kuznetsov, Maxim L. / Rocha, Bruno G. M. / Pombeiro, Armando J. L. / Shul'pin, Georgiy B. et al. | 2016
- 1357
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A ligand coordination approach for high reaction stability of an Au-Cu bimetallic carbon-based catalyst in the acetylene hydrochlorination processElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01270hXu, Hao et al. | 2016
- 1357
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A ligand coordination approach for high reaction stability of an Au–Cu bimetallic carbon-based catalyst in the acetylene hydrochlorination processXu, Hao / Zhou, Kai / Si, Jiangkun / Li, Chunhua / Luo, Guohua et al. | 2016
- 1367
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Specific oriented recognition of a new stable ICTX@Mfa with retrievability for selective photocatalytic degrading of ciprofloxacinLu, Ziyang / Zhu, Zhi / Wang, Dandan / Ma, Zhongfei / Shi, Weidong / Yan, Yongsheng / Zhao, Xiaoxu / Dong, Hongjun / Yang, Li / Hua, Zhoufa et al. | 2016
- 1378
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NHPI and ferric nitrate: a mild and selective system for aerobic oxidation of benzylic methylenesMiao, Chengxia / Zhao, Hanqing / Zhao, Quanyi / Xia, Chungu / Sun, Wei et al. | 2016
- 1378
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NHPI and ferric nitrate: a mild and selective system for aerobic oxidation of benzylic methylenesElectronic supplementary information (ESI) available: Experiment of 18O isotopic labeling with 18O2 for the oxidation of diphenylmethane, data and NMR spectra of part products. See DOI: 10.1039/c5cy01245gMiao, Chengxia et al. | 2016
- 1384
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New topological Co2(BDC)2(DABCO) as a highly active heterogeneous catalyst for the amination of oxazoles via oxidative C–H/N–H couplingsTu, Thach N. / Nguyen, Khoa D. / Nguyen, Truong N. / Truong, Thanh / Phan, Nam T. S. et al. | 2016
- 1384
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New topological Co2(BDC)2(DABCO) as a highly active heterogeneous catalyst for the amination of oxazoles via oxidative C-H/N-H couplingsElectronic supplementary information (ESI) available. CCDC 1063411. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c5cy01145kTu, Thach N et al. | 2016
- 1393
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Atomistic understanding of the origin of high oxygen reduction electrocatalytic activity of cuboctahedral Pt3Co–Pt core–shell nanoparticlesHu, Guangzhi / Gracia-Espino, Eduardo / Sandström, Robin / Sharifi, Tiva. / Cheng, Shaodong / Shen, Hangjia / Wang, Chuanyi / Guo, Shaojun / Yang, Guang / Wågberg, Thoma et al. | 2016
- 1402
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Ru/N-AC catalyst to produce vinyl chloride from acetylene and 1,2-dichloroethaneZhao, Wei / Li, Wei / Zhang, Jinli et al. | 2016
- 1410
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A novel, efficient, and recyclable biocatalyst for Michael addition reactions and its iron(iii) complex as promoter for alkyl oxidation reactionsKhalil, Khaled D. / Ibrahim, Enas I. / Al-Sagheer, Fakhreia A. et al. | 2016
- 1417
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Microwave-assisted synthesis of porous Mn2O3 nanoballs as bifunctional electrocatalyst for oxygen reduction and evolution reactionElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01264cGhosh, Srabanti et al. | 2016
- 1417
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Microwave-assisted synthesis of porous Mn2O3 nanoballs as bifunctional electrocatalyst for oxygen reduction and evolution reactionGhosh, Srabanti / Kar, Prasenjit / Bhandary, Nimai / Basu, Suddhasatwa / Sardar, Samim / Maiyalagan, Thandavarayan / Majumdar, Dipanwita / Bhattacharya, Swapan Kumar / Bhaumik, Asim / Lemmens, Peter et al. | 2016
- 1430
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Zeolite Y-assisted nitration of aromatic and heterocyclic compounds and decarboxylative nitration of α,β-unsaturated acids under non-conventional conditionsSudhakar Chary, V. / Rajanna, K. C. / Krishnaiah, G. / Srinivas, P. et al. | 2016
- 1435
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Spidery catalyst for the synthesis of quinazoline-2,4(1H,3H)-dionesSadeghzadeh, Seyed Mohsen et al. | 2016
- 1442
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Hydrodeoxygenation of microalgae oil to green diesel over Pt, Rh and presulfided NiMo catalystsZhou, Lin / Lawal, Adeniyi et al. | 2016
- 1455
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Methanol steam reforming catalysts derived by reduction of perovskite-type oxides LaCo1−x−yPdxZnyO3±δElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01410gKuc, Jagoda et al. | 2016
- 1455
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Methanol steam reforming catalysts derived by reduction of perovskite-type oxides LaCo1−x−yPdxZnyO3±δKuc, Jagoda / Neumann, Matthia / Armbrüster, Marc / Yoon, Songhak / Zhang, Yucheng / Erni, Rolf / Weidenkaff, Anke / Matam, Santhosh Kumar et al. | 2016
- 1469
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Efficient aqueous hydrogenation of levulinic acid to γ-valerolactone over a highly active and stable ruthenium catalystElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01374gTan, Jingjing et al. | 2016
- 1469
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Efficient aqueous hydrogenation of levulinic acid to γ-valerolactone over a highly active and stable ruthenium catalystTan, Jingjing / Cui, Jinglei / Ding, Guoqiang / Deng, Tiansheng / Zhu, Yulei / Li, Yong-wang et al. | 2016
- 1476
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Comparative study of sulfur-free nickel and palladium catalysts in hydrodeoxygenation of different fatty acid feedstocks for production of biofuelsHachemi, Imane / Jeništová, Klara / Mäki-Arvela, Päivi / Kumar, Narendra / Eränen, Kari / Hemming, Jarl / Murzin, Dmitry Yu. et al. | 2016
- 1488
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A highly efficient heterogeneous copper-catalyzed three-component coupling of tetrahydroisoquinolines, aldehydes and 1-alkynesZhao, Hong / He, Wen / Wei, Li / Cai, Mingzhong et al. | 2016
- 1488
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A highly efficient heterogeneous copper-catalyzed three-component coupling of tetrahydroisoquinolines, aldehydes and 1-alkynesElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy01342aZhao, Hong et al. | 2016
- 1496
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Hydrogen production by ammonia decomposition using high surface area Mo2N and Co3Mo3N catalystsPodila, Seetharamulu / Zaman, Sharif F. / Driss, Hafedh / Alhamed, Yahia A. / Al-Zahrani, Abdulrahim A. / Petrov, Lachezar A. et al. | 2016
- 1515
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Influence of a porous MOF support on the catalytic performance of Eu-polyoxometalate based materials: desulfurization of a model dieselElectronic supplementary information (ESI) available: Vibrational spectra, powder XRD patterns, SEM images and EDS spectra of the POM/MIL(Cr) composite material before and after catalytic use. See DOI: 10.1039/c5cy01110hGranadeiro, Carlos M et al. | 2016
- 1515
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Influence of a porous MOF support on the catalytic performance of Eu-polyoxometalate based materials: desulfurization of a model dieselGranadeiro, Carlos M. / Nogueira, Lucie S. / Julião, Diana / Mirante, Fátima / Ananias, Duarte / Balula, Salete S. / Cunha-Silva, Luí et al. | 2016
- 1523
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Direct synthesis of LPG from syngas in a slurry phaseZhang, Qianwen / Ma, Ting / Zhao, Ming / Tomonobu, Teppei / Li, Xiaohong et al. | 2016
- 1530
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La-modified mesoporous Mg–Al mixed oxides: effective and stable base catalysts for the synthesis of dimethyl carbonate from methyl carbamate and methanolWang, Dengfeng / Zhang, Xuelan / Ma, Jie / Yu, Haiwen / Shen, Jingzhu / Wei, Wei et al. | 2016
- 1546
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Role of the FeOx support in constructing high-performance Pt/FeOx catalysts for low-temperature CO oxidationElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy00840aZheng, Bin et al. | 2016
- 1546
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Role of the FeOx support in constructing high-performance Pt/FeOx catalysts for low-temperature CO oxidationZheng, Bin / Liu, Gang / Geng, Longlong / Cui, Junyan / Wu, Shujie / Wu, Ping / Jia, Mingjun / Yan, Wenfu / Zhang, Wenxiang et al. | 2016
- 1555
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Inside back cover| 2016
- 1556
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Back cover| 2016
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Atomistic understanding of the origin of high oxygen reduction electrocatalytic activity of cuboctahedral Pt3Co-Pt core-shell nanoparticlesElectronic supplementary information (ESI) available: High-resolution XPS, EDS, and TGA analysis; TEM micrographs and particle size distribution; molecular models used in DFT. See DOI: 10.1039/c5cy01128kHu, Guangzhi et al. | 2016
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Hydrogen production by ammonia decomposition using high surface area Mo2N and Co3Mo3N catalystsElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cy00871aPodila, Seetharamulu et al. | 2016
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Equilibrium analysis of methylbenzene intermediates for a methanol-to-olefins processElectronic supplementary information (ESI) available. See DOI: 10.1039/c6cy00059bCai, Dali et al. | 2016