1.
Advances in Clean Fuel Ethanol Production from Electro-, Photo- an..
[8800]
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2.
A fully automatic AI system for tooth and alveolar bone segmentati..
[2903]
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3.
Strict molecular sieving over electrodeposited 2D-interspacing-nar..
[2834]
|
4.
Melting-assisted solvent-free synthesis of hierarchical SAPO-34 wi..
[2594]
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5.
Improving carbohydrate and starch accumulation in Chlorella sp AE1..
[1863]
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6.
Direct conversion of CO2 into liquid fuels with high selectivity o..
[1523]
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7.
Hierarchical micro/nanostructured silver hollow fiber boosts elect..
[1422]
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8.
Efficient CO2 Electroreduction over Silver Hollow Fiber Electrode
[1410]
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9.
Cobalt carbide nanoprisms for direct production of lower olefins f..
[1305]
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10.
Comparative transcriptomic analysis reveals phenol tolerance mecha..
[1276]
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11.
Hybrid Energy System for a Coal-Based Chemical Industry
[1240]
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12.
Chemo- And regioselective hydroformylation of alkenes with CO2/H2o..
[1224]
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13.
Ultralow Pt Catalyst for Formaldehyde Removal: The Determinant Rol..
[1188]
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14.
Dual cross-linked hydrogel electrolyte modified by nonionic surfac..
[1188]
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15.
Direct conversion of CO2 to long-chain hydrocarbon fuels over K-pr..
[1185]
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16.
Chemical recycling of polyolefins: a closed-loop cycle of waste to..
[1175]
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17.
Facilely controlled synthesis of a core-shell structured MOF compo..
[1058]
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18.
Selective Production of Aromatics Directly from Carbon Dioxide Hyd..
[1029]
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19.
Direct Production of Lower Olefins from CO2 Conversion via Bifunct..
[1007]
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20.
Highly efficient Cu-based catalysts via hydrotalcite-like precurso..
[1004]
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21.
Recent advances in the investigation of nanoeffects of Fischer-Tro..
[1001]
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22.
Exploring stress tolerance mechanism of evolved freshwater strain ..
[989]
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23.
A review of the catalytic hydrogenation of carbon dioxide into val..
[981]
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24.
Dual-Role Membrane as NH3 Permselective Reactor and Azeotrope Sepa..
[980]
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25.
Feasibility analysis of nuclear-coal hybrid energy systems from th..
[979]
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26.
Effect of alkali metals on the performance of CoCu/TiO2 catalysts ..
[978]
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27.
Recent progress in the photocatalytic reduction of aqueous carbon ..
[974]
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28.
Synthesis of all-silica DDR zeolite in an environment-friendly way
[970]
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29.
Electrocatalytic oxidation of methane to ethanol via NiO/Ni interf..
[951]
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30.
A review of research progress on heterogeneous catalysts for metha..
[950]
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31.
Facile one-pot synthesis of mesoporous carbon and N-doped carbon f..
[941]
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32.
Iron-Catalyzed Cross-Coupling of Alkynyl and Styrenyl Chlorides wi..
[937]
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33.
Core-shell structured Cu@m-SiO2 and Cu/ZnO@m-SiO2 catalysts for me..
[929]
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34.
Exploration of phenol tolerance mechanism through antioxidative re..
[918]
|
35.
Direct Production of Higher Oxygenates by Syngas Conversion over a..
[915]
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36.
Efficient methane electrocatalytic conversion over a Ni-based holl..
[914]
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37.
Direct production of olefins from syngas with ultrahigh carbon eff..
[913]
|
38.
Slurry methanol synthesis from CO2 hydrogenation over micro-spheri..
[910]
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39.
Converting Plastic Wastes to Naphtha for Closing the Plastic Loop
[908]
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40.
Research Progress on the Photocatalytic Conversion of Methane and ..
[907]
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41.
Preparation and CO2 hydrogenation catalytic properties of alumina ..
[905]
|
42.
Postsynthesis of mesoporous ZSM-5 zeolites with TPAOH-assisted des..
[903]
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43.
Ultrafast microwave synthesis of all-silica DDR zeolite
[903]
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44.
Self-Assembly of Thiourea-Crosslinked Graphene Oxide Framework Mem..
[903]
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45.
Enhancing fermentation wastewater treatment by co-culture of micro..
[898]
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46.
Oxygenates from the Electrochemical Reduction of Carbon Dioxide
[894]
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47.
Palladium single atoms supported by interwoven carbon nanotube and..
[894]
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48.
Enhanced Ethanol Production from CO2 Electroreduction at Micropore..
[891]
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49.
Cover Picture: 3 D Imaging and Structural Analysis of a Mesoporous..
[889]
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50.
Improving high carbon dioxide tolerance and carbon dioxide fixatio..
[888]
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51.
Fluorinated Cu/Zn/A1/Zr hydrotalcites derived nanocatalysts for CO..
[880]
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52.
ZnZrOx integrated with chain-like nanocrystal HZSM-5 as efficient ..
[873]
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53.
3D Imaging and Structural Analysis of a Mesoporous-Silica-Body-Sup..
[869]
|
54.
Bimetallic Covalent Organic Frameworks for Constructing Multifunct..
[869]
|
55.
Rationally designed indium oxide catalysts for CO2 hydrogenation t..
[857]
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56.
Three dimensional porous Cu-Zn/Al foam monolithic catalyst for CO2..
[852]
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57.
Particle Size Effects of Cobalt Carbide for Fischer-Tropsch to Ole..
[849]
|
58.
Selective Transformation of CO2 and H-2 into Lower Olefins over In..
[844]
|
59.
Effects of Sodium on the Catalytic Performance of CoMn Catalysts f..
[840]
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60.
Single atomic Ag enhances the bifunctional activity and cycling st..
[839]
|
61.
Promotion of CO2 Electrochemical Reduction via Cu Nanodendrites
[838]
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62.
Metal-Free Nitrogen-Doped Mesoporous Carbon for Electroreduction o..
[834]
|
63.
Exclusive Formation of Formic Acid from CO2 Electroreduction by a ..
[833]
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64.
Advances in direct production of value-added chemicals via syngas ..
[823]
|
65.
Hollow MnOx-CeO2 mixed oxides as highly efficient catalysts in NO ..
[820]
|
66.
Role of zirconium in direct CO2 hydrogenation to lower olefins on ..
[817]
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67.
Copper hollow fiber electrode for efficient CO2 electroreduction
[810]
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68.
Potassium Tethered Carbons with Unparalleled Adsorption Capacity a..
[803]
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69.
Rapid capture of Ponceau S via a hierarchical organic-inorganic hy..
[800]
|
70.
Research Progress Regarding Transition Metal-Catalyzed Carbonylati..
[798]
|
71.
Catalytic performance of spray-dried Cu/ZnO/Al2O3/ZrO2 catalysts f..
[797]
|
72.
Mechanism of the Mn Promoter via CoMn Spinel for Morphology Contro..
[796]
|
73.
Preparation and characterization of Silicalite-1/PDMS surface siev..
[788]
|
74.
Comparative environmental and economic performance of solar energy..
[786]
|
75.
Induced C-C coupling in CO2 photocatalytic reduction via carbother..
[785]
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76.
Effect of Sodium on the Structure-Performance Relationship of Co/S..
[781]
|
77.
Facile Solvent-free Synthesis of Hollow Fiber Catalyst Assembled b..
[779]
|
78.
Nickel-copper oxide nanowires for highly sensitive sensing of gluc..
[777]
|
79.
Adaptive evolution and carbon dioxide fixation of Chlorella sp. in..
[773]
|
80.
Highly selective production of olefins from syngas with modified A..
[767]
|
81.
Water pumping effect over the organic ions defined graphene oxide ..
[761]
|
82.
Morphology-Controlled Synthesis of H-type MFI Zeolites with Unique..
[759]
|
83.
Effect of the support on cobalt carbide catalysts for sustainable ..
[757]
|
84.
Enhanced Electrocatalysis via 3D Graphene Aerogel Engineered with ..
[755]
|
85.
Hydrofunctionalization of Olefins to Higher Aliphatic Alcohols via..
[748]
|
86.
Au@PdOx with a PdOx-rich shell and Au-rich core embedded in Co3O4 ..
[747]
|
87.
Bimodal Mesoporous Carbon-Coated MgO Nanoparticles for CO2 Capture..
[746]
|
88.
Enhanced CO2 electroreduction to formate over tin coordination pol..
[746]
|
89.
ZIF-67-derived Co3O4 micro/nano composite structures for efficient..
[745]
|
90.
Effects of acid pretreatment on Fe-ZSM-5 and Fe-beta catalysts for..
[744]
|
91.
Strain improvement of Chlorella sp for phenol biodegradation by ad..
[734]
|
92.
Enhancing Carbohydrate Productivity of Chlorella sp AE10 in Semi-c..
[731]
|
93.
Ultrasmall Au-10 clusters anchored on pyramid-capped rectangular T..
[730]
|
94.
Evoked Methane Photocatalytic Conversion to C2 Oxygenates over Cer..
[728]
|
95.
Nickel nanoparticles with interfacial confinement mimic noble meta..
[724]
|
96.
CO2 electrocatalytic and photoelectrocatalytic conversion for oxyg..
[722]
|
97.
Ultrahigh adsorption capacity of anionic dyes with sharp selectivi..
[719]
|
98.
Effect of Pd doping on CH4 reactivity over Co3O4 catalysts from de..
[717]
|
99.
Catalytic Mechanisms of Methanol Oxidation to Methyl Formate on Va..
[717]
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100.
Enhanced Interactions between Gold and MnO2 Nanowires for Water Ox..
[715]
|