1 - 7 |
Oxidative dehydrogenation of ethylbenzene on nanocarbon: Kinetics and reaction mechanism Liu W, Wang C, Su DS, Qi W |
8 - 19 |
Carbon-supported Pt during aqueous phenol hydrogenation with and without applied electrical potential: X-ray absorption and theoretical studies of structure and adsorbates Singh N, Nguyen MT, Cantu DC, Mehdi BL, Browning ND, Fulton JL, Zheng J, Balasubramanian M, Gutierrez OY, Glezakou VA, Rousseau R, Govind N, Camaioni DM, Campbell CT, Lercher JA |
20 - 30 |
Two dimensional Rh/Fe3O4/g-C3N4-N enabled hydrazine mediated catalytic transfer hydrogenation of nitroaromatics: A predictable catalyst model with adjoining Rh Hu ZA, Zhou JJ, Ai YJ, Liu L, Qi L, Jiang RH, Bao HJ, Wang JT, Hu JS, Sun HB, Liang QL |
31 - 37 |
Dissolution of CoCu catalyst step defects by Co subcarbonyl formation Collinge G, Kruse N, McEwen JS |
38 - 52 |
Enhanced lattice oxygen reactivity over Fe2O3/Al2O3 redox catalyst for chemical-looping dry (CO2) reforming of CH4: Synergistic La-Ce effect Tang MC, Liu K, Roddick DM, Fan MH |
53 - 68 |
Ru/MnxCe1OY catalysts with enhanced oxygen mobility and strong metal-support interaction: Exceptional performances in 5-hydroxymethylfurfural base-free aerobic oxidation Gao TY, Chen J, Fang WH, Cao QE, Su WP, Dumeignil F |
69 - 78 |
Catalytic transfer hydrogenation of biomass-derived furfural to furfuryl alcohol over in-situ prepared nano Cu-Pd/C catalyst using formic acid as hydrogen source Du J, Zhang JR, Sun Y, Jia WL, Si ZH, Gao H, Tang X, Zeng XH, Lei TZ, Liu SJ, Lin L |
79 - 88 |
Ga3+-stabilized Pt in PtSn-Mg(Ga)(Al)O catalyst for promoting ethane dehydrogenation Zhang Q, Zhang KT, Zhang SH, Liu QY, Chen LG, Li XJ, Wang CG, Ma LL |
89 - 97 |
Synergy between a sulfur-tolerant Pt/Al2O3@sodalite core-shell catalyst and a CoMo/Al2O3 catalyst Jiao F, Guo HL, Chai YM, Awala H, Mintova S, Liu CG |
98 - 111 |
Mechanistic study of liquid phase glycerol hydrodeoxygenation with in-situ generated hydrogen Yfanti VL, Lemonidou AA |
112 - 119 |
Microwave annealing promoted in-situ electrochemical activation of Ni3S2 nanowires for water electrolysis Shang X, Chi JQ, Wang ZB, Dong B, Zhao JC, Li XH, Yan KL, Wang L, Chai YM, Liu CG |
120 - 133 |
The construction of Mo6-delta O3-x-supported catalyst for low-temperature propylene gas-phase epoxidation by Cu modification Wang ZY, Gao AL, Chen P, Hu H, Huang QM, Chen XH |
134 - 144 |
SiO2@V(2)o(5)@Al2O3 core-shell catalysts with high activity and stability for methane oxidation to formaldehyde Yang E, Lee JG, Kim DH, Jung YS, Kwak JH, Park ED, An K |
145 - 154 |
High-silica H beta zeolites for catalytic hydration of hydrophobic epoxides and alkynes in water Poly SS, Siddiki SMAH, Touchy AS, Yasumura S, Toyao T, Maeno Z, Shimizu K |
155 - 162 |
Phosphorus-modulated cobalt selenides enable engineered reconstruction of active layers for efficient oxygen evolution Zhao X, Xing YL, Zhao LY, Lu SC, Ahmad F, Zeng J |
163 - 171 |
Titania-morphology-dependent dual-perimeter-sites catalysis by Au/TiO2 catalysts in low-temperature CO oxidation Li D, Chen SL, You R, Liu YX, Yang M, Cao T, Qian K, Zhang ZH, Tian J, Huang WX |
172 - 189 |
Cyclodextrin-assisted low-metal Ni-Pd/Al2O3 bimetallic catalysts for the direct amination of aliphatic alcohols Tomer A, Kusema BT, Paul JF, Przybylski C, Monflier E, Pera-Titus M, Ponchel A |
190 - 196 |
Novel organic base-immobilized magneto-polymeric nanospheres as efficient Pickering interfacial catalyst for transesterification Tang J, Zhang Q, Hu KC, Cao SX, Zhang SH, Wang JL |
197 - 206 |
Heterogeneous Rh/CPOL-BP&P(OPh)(3) catalysts for hydroformylation of 1-butene: The formation and evolution of the active species Wang YQ, Yan L, Li CY, Jiang M, Zhao Z, Hou GJ, Ding YJ |
207 - 216 |
Selective deoxygenation of carbonyl groups at room temperature and atmospheric hydrogen pressure over nitrogen-doped carbon supported Pd catalyst Wang SG, Zhou P, Jiang L, Zhang ZH, Deng KJ, Zhang YH, Zhao YX, Li JL, Bottle S, Zhu HY |
217 - 227 |
Synthetic routes, structure and catalytic activity of Ag/BN nanoparticle hybrids toward CO oxidation reaction Konopatsky AS, Leybo DV, Firestein KL, Popov ZI, Bondarev AV, Manakhov AM, Permyakova ES, Shtansky DV, Golberg DV |
228 - 236 |
Cobalt catalyzed synthesis of alpha, beta-unsaturated esters from esters and alcohols via mild O-2-interrupted hydrogen borrowing Wang G, Li ZX, Li CS, Zhang SJ |
237 - 247 |
Role of Pt atoms on Pd(111) surface in the direct synthesis of hydrogen peroxide: Nano-catalytic experiments and DFT calculations Quon S, Jo DY, Han GH, Han SS, Seo MG, Lee KY |
248 - 260 |
Hydrogen transfer versus olefins methylation: On the formation trend of propene in the methanol-to-hydrocarbons reaction over Beta zeolites Zhang J, Xu LJ, Zhang YF, Huang ZH, Zhang XM, Zhang XZ, Yuan YY, Xu L |
261 - 274 |
Direct synthesis of H2O2 on PdZn nanoparticles: The impact of electronic modifications and heterogeneity of active sites Wilson NM, Schroder J, Priyadarshini P, Bregante DT, Kunz S, Flaherty DW |
275 - 278 |
Palladium catalyzed carbonylation of benzyl chlorides: Additive-controlled divergent synthesis of benzyl arylacetates and arylacetic acids Peng JB, Wang WF, Wu FP, Ying J, Qi XX, Wu XF |
279 - 290 |
Ultra-high surface area graphitic Fe-N-C nanospheres with single-atom iron sites as highly efficient non-precious metal bifunctional catalysts towards oxygen redox reactions Lyu DD, Mollamahale YB, Huang SL, Zhu PC, Zhang XR, Du YH, Wang SB, Qing M, Tian ZQ, Shen PK |
291 - 297 |
Structurally simple dinuclear nickel catalyzed olefin copolymerization with polar monomers Cheng HL, Wang HJ, Li YQ, Hu YM, Zhang XQ, Cai ZG |
298 - 305 |
Glycerol to lactic acid conversion by NHC-stabilized iridium nanoparticles Oberhauser W, Evangelisti C, Liscio A, Kovtun A, Cao Y, Vizza F |
306 - 314 |
A laccase-catalysed synthesis of triaminated cyclohexa-2,4-dienones from catechol Wellington KW, Govindjee VP, Steenkamp P |
315 - 323 |
Investigation of propene oxidation to acrolein by the method of ultralow conversion: A new mechanism of the reaction Panov GI, Parfenov MV, Starokon EV, Kharitonov AS |
324 - 335 |
Gold-silver catalysts: Effect of catalyst structure on the selectivity of glycerol oxidation Jouve A, Nagy G, Somodi F, Tiozzo C, Villa A, Balerna A, Beck A, Evangelisti C, Prati L |
336 - 344 |
Aqueous-phase hydrodechlorination of 4-chlorophenol on palladium nanocrystals: Identifying the catalytic sites and unraveling the reaction mechanism Ding XF, Yao ZQ, Xu YH, Liu B, Liu Q, She YB |
345 - 353 |
Evidence for regioselective Pt(II)-mediated hydroxylation of long linear alkanes in acetic acid Janssen M, Van Emelen L, Marquez C, De Baerdemaeker T, De Vos DE |
354 - 364 |
Steam-assisted crystallized Fe-ZSM-5 materials and their unprecedented activity in benzene hydroxylation to phenol using hydrogen peroxide Shahami M, Dooley KM, Shantz DF |
365 - 378 |
Roles of oxygen vacancy and O-x(-) in oxidation reactions over CeO2 and Ag/CeO2 nanorod model catalysts Wang HL, Luo ST, Zhang MS, Liu W, Wu XD, Liu S |
379 - 388 |
Insights into electrocatalytic hydrogen evolution reaction in acidic medium at in-situ dispersed Pt atoms on nanoporous gold films Guo RK, Xu XX, Xia Y, Huang W, Li ZL, Teng BT |
389 - 410 |
Isomerization and beta-scission reactions of alkanes on bifunctional metal acid catalysts: Consequences of confinement and diffusional constraints on reactivity and selectivity Noh G, Shi ZC, Zones SI, Iglesia E |
411 - 426 |
Mechanism and site requirements for thiophene hydrodesulfurization on supported Re domains in metal or sulfide form Yik E, Iglesia E |