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Chinese Journal of Catalysis
0253-9837
2016 Issue 10
Cover
..............page:1565
About the Journal
..............page:1565
Preface to the Special Issue on Gold Catalysis
Masatake Haruta;Jiahui Huang;Research Center for Gold Chemistry & Department of Applied Chemistry;Graduate School of Urban Environmental Sciences;Tokyo Metropolitan University;Gold Catalysis Research Center & State Key Laboratory of Catalysis;Dalian Institute of Chemical Physics;Chinese Academy of Sciences;
..............page:1579
Single atom gold catalysts for low-temperature CO oxidation
Botao Qiao;Jin-Xia Liang;Aiqin Wang;Jingyue Liu;Tao Zhang;State Key Laboratory of Catalysis;Dalian Institute of Chemical Physics;Chinese Academy of Sciences;Guizhou Provincial Key Laboratory of Computational Nano-Material Science;Guizhou Education University;Department of Physics;Arizona State University;
..............page:1580-1587
Advances in polymer-stabilized Au nano-cluster catalysis : Interplay of theoretical calculations and experiments
Hiroaki Koga;Kohei Sakata;Yoshinori Ato;Akihide Hayashi;Kohei Tada;Mitsutaka Okumura;Elements Strategy Initiative for Catalysts and Batteries Kyoto University;Department of Chemistry;Graduate School of Science Osaka University;
..............page:1588-1593
Gold-containing metal nanoparticles for catalytic hydrogen generation from liquid chemical hydrides
Xinchun Yang;Qiang Xu;National Institute of Advanced Industrial Science and Technology;Graduate School of Engineering;Kobe University;
..............page:1594-1599
Vinyl chloride monomer production catalysed by gold: A review
Catherine J.Davies;Peter J.Miedziak;Gemma L.Brett;Graham J.Hutchings;Cardiff University;Main Building;
..............page:1600-1607
Theoretical investigations on CO oxidation reaction catalyzed by gold nanoparticles
Keju Sun;Key Laboratory of Applied Chemistry;College of Environmental and Chemical Engineering;Yanshan University;Gold Catalysis Research Center;State Key Laboratory of Catalysis;Dalian Institute of Chemical Physics;Chinese Academy of Sciences;
..............page:1608-1618
Anisotropic gold nanoparticles: Preparation and applications in catalysis
Peter Priecel;Hammed Adekunle Salami;Romen Herrera Padilla;Ziyi Zhong;Jose Antonio Lopez-Sanchez;Stephenson Institute for Renewable Energy;Department of Chemistry;University of Liverpool;Institute of Chemical and Engineering Sciences;Agency for Science;Technology and Research;
..............page:1619-1650
Correlation between catalytic activity of supported gold catalysts for carbon monoxide oxidation and metal–oxygen binding energy of the support metal oxides
Takashi Fujita;Masanori Horikawa;Takashi Takei;Toru Murayama;Masatake Haruta;Department of Applied Chemistry;Graduate School of Urban Environmental Sciences;Tokyo Metropolitan University;
..............page:1651-1655
Halogen adsorbates on polymer-stabilized gold clusters: Mass spectrometric detection and effects on catalysis
Ryo Ishida;Setsuka Arii;Wataru Kurashige;Seiji Yamazoe;Kiichirou Koyasu;Yuichi Negishi;Tatsuya Tsukuda;Department of Chemistry;School of Science;The University of Tokyo;Department of Applied Chemistry;Faculty of Science;Tokyo University of Science;Elements Strategy Initiative for Catalysts and Batteries;Kyoto University;
..............page:1656-1661
Lewis acid-driven reaction pathways in synergistic cooperative catalysis over gold/palladium bimetallic nanoparticles for hydrogen autotransfer reaction between amide and alcohol
Hiroyuki Miyamura;Satoshi Isshiki;Hyemin Min;Shū Kobayashi;Department of Chemistry;School of Science;The University of Tokyo;
..............page:1662-1668
Highly selective supported gold catalyst for CO-driven reduction of furfural in aqueous media
Jing Dong;Mingming Zhu;Gaoshuo Zhang;Yongmei Liu;Yong Cao;Su Liu;Yangdong Wang;Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials;Department of Chemistry;Fudan University;SINOPEC Shanghai Research Institute of Petrochemical Technology;
..............page:1669-1675
Mechanism and active sites of CO oxidation over single-crystal Au surfaces and a Au/TiO2(110) model surface
Tadahiro Fujitani;Isao Nakamura;National Institute of Advanced Industrial Science and Technology;
..............page:1676-1683
Formation and removal of active oxygen species for the non-catalytic CO oxidation on Au/TiO2 catalysts
Daniel Widmann;R.Jürgen Behm;Institute of Surface Chemistry and Catalysis;Ulm University;
..............page:1684-1693
Preparation of gold nanoparticles supported on Nb2O5 by deposition precipitation and deposition reduction methods and their catalytic activity for CO oxidation
Toru Murayama;Masatake Haruta;Research Center for Gold Chemistry;Tokyo Metropolitan University;
..............page:1694-1701
Support effect of zinc tin oxide on gold catalyst for CO oxidation reaction
Wei Li;Linying Du;Chunjiang Jia;Rui Si;Key Laboratory of Interfacial Physics and Technology;Shanghai Synchrotron Radiation Facility;Shanghai Institute of Applied Physics;Chinese Academy of Sciences;Key Laboratory for Colloid and Interface Chemistry;Key Laboratory of Special Aggregated Materials;School of Chemistry and Chemical Engineering;Shandong University;
..............page:1702-1711
An examination of active sites on Au-Ag bimetallic catalysts based on CO oxidation over Au/Ag2O and a comparison to Ag-contaminated Au powder
Yasuo Iizuka;Yasuhiro Hiragi;Hikaru Yakushiji;Takumi Miura;Department of Chemistry and Materials Technology;Graduate School of Kyoto Institute of Technology;Research Institute for Ubiquitous Energy Division;National Institute of Advanced Industrial Science and Technology;
..............page:1712-1720
Enhanced catalytic activities and selectivities in preferential oxidation of CO over ceria-promoted Au/Al2O3 catalysts
Yu-Xin Miao;Jing Wang;Wen-Cui Li;State Key Laboratory of Fine Chemicals;School of Chemical Engineering;Dalian University of Technology;
..............page:1721-1728
Gold stabilized on various oxide supports catalyzing formaldehyde oxidation at room temperature
Bingbing Chen;Xiaobing Zhu;Yidi Wang;Limei Yu;Chuan Shi;State Key Laboratory of Fine Chemicals;School of Chemistry;Dalian University of Technology;Laboratory of Plasma Physical Chemistry;Dalian University of Technology;
..............page:1729-1737
Oxidation of formic acid on stepped Au(997) surface
Zong-Fang Wu;Zhi-Quan Jiang;Yue-Kang Jin;Feng Xiong;Guang-Hui Sun;Wei-Xin Huang;Hefei National Laboratory for Physical Sciences at the Microscale;CAS Key Laboratory of Materials for Energy Conversion;Department of Chemical Physics;University of Science and Technology of China;
..............page:1738-1746
Catalytic cracking of light diesel over Au/ZSM-5 catalyst for increasing propylene production
Caixia Qi;Yunxia Wang;Xiaotao Ding;Huijuan Su;Shandong Applied Research Center of Gold Nanotechnology;School of Chemistry and Chemical Engineering;Yantai University;
..............page:1747-1755
Selective reductive coupling of nitro aliphatic compounds with aldehydes in hydrogen using gold catalyst
Larisha Cisneros;Pedro Serna;Avelino Corma;Instituto de Tecnología Química;Universitat Politècnica de València–Consejo Superior de Investigaciones Científicas;Corporate Strategic Research;Exxon Mobil Research & Engineering Co.Inc.;
..............page:1756-1763
Hydrogen auto-transfer under aerobic oxidative conditions: Efficient synthesis of saturated ketones by aerobic C-C cross-coupling of primary and secondary alcohols catalyzed by a Au6Pd/resin catalyst
Maoxiang Zhou;Leilei Zhang;Jeffrey T.Miller;Xiaofeng Yang;Xiaoyan Liu;Aiqin Wang;Tao Zhang;State Key Laboratory of Catalysis;Dalian Institute of Chemical Physics;Chinese Academy of Sciences;University of Chinese Academy of Sciences;CSE;Argonne National Laboratory;
..............page:1764-1770
Gold-iridium catalysts for the hydrogenation of biomass derived products
Lorenzo Landenna;Alberto Villa;Rodolfo Zanella;Claudio Evangelisti;Laura Prati;Dipartimento di Chimica;Università degli Studi di Milano;Centro de Ciencias Aplicadasy Desarrollo Technologico;Universidad Nacional Autonoma de Mexico;Istituto di Scienze e Tecnologie Molecolari ISTM-CNR;
..............page:1771-1775
Gold-doping of carbon-supported palladium improves reduction catalysis
Yu-Lun Fang;Kimberly N.Heck;Zhun Zhao;Lori A.Pretzer;Neng Guo;Tianpin Wu;Jeffrey T.Miller;Michael S.Wong;Department of Chemical and Biomolecular Engineering;Rice University;Department of Chemistry;Rice University;Chemical Sciences and Engineering Division;Argonne National Laboratory;Department of Chemical Engineering;Purdue University;Department of Civil and Environmental Engineering;Rice University;Department of Materials Science and NanoE ngineering;Rice University;
..............page:1776-1786
Thermally robust silica-enclosed Au25 nanocluster and its catalysis
Haijun Chen;Chao Liu;Min Wang;Chaofeng Zhang;Gao Li;Feng Wang;State Key Laboratory of Catalysis;Dalian National Laboratory for Clean Energy;Dalian Institute of Chemical Physics;Chinese Academy of Sciences;Graduate University of Chinese Academy of Sciences;Gold Catalysis Research Centre;State Key Laboratory of Catalysis;Dalian Institute of Chemical Physics;Chinese Academy of Sciences;
..............page:1787-1793
C–X(X = Cl, Br, I) bond dissociation energy as a descriptor for the redispersion of sintered Au/AC catalysts
Xinping Duan;Yan Yin;Xuelin Tian;Jinhuo Ke;Zhaojun Wen;Jianwei Zheng;Menglin Hu;Linmin Ye;Youzhu Yuan;State Key Laboratory of Physical Chemistry of Solid Surfaces and National Engineering Laboratory for Green Chemical Production of Alcohols-Ethers-Esters;College of Chemistry and Chemical Engineering;Xiamen University;
..............page:1794-1803