74 results on '"Liao, Lingwen"'
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2. Cover Picture: Atomically Precise Nanometer‐Sized Pt Catalysts with an Additional Photothermy Functionality
3. Cover Picture: Pd8 Nanocluster with Nonmetal‐to‐Metal‐ Ring Coordination and Promising Photothermal Conversion Efficiency (Angew. Chem. Int. Ed. 3/2024)
4. Synthesis of 2H/fcc‐Heterophase AuCu Nanostructures for Highly Efficient Electrochemical CO2 Reduction at Industrial Current Densities
5. Frontispiece: Sandwich‐Kernelled AgCu Nanoclusters with Golden Ratio Geometry and Promising Photothermal Efficiency
6. Frontispiz: Sandwich‐Kernelled AgCu Nanoclusters with Golden Ratio Geometry and Promising Photothermal Efficiency
7. Sandwich‐Kernelled AgCu Nanoclusters with Golden Ratio Geometry and Promising Photothermal Efficiency
8. 一个金属纳米团簇压缩结构的构筑与转化
9. Sandwich‐Kernelled AgCu Nanoclusters with Golden Ratio Geometry and Promising Photothermal Efficiency
10. Surface strain-regulated twin-rich Au-Pt bimetallic nanowire for highly efficient alcohol oxidation reaction
11. Atom-Stepped Surface-Regulated Pd Nanowires for Boosting Alcohol Oxidation Activity
12. Surface Strain-Regulated Twin-Rich Au-Pt Bimetallic Nanowire for Highly Efficient Alcohol Oxidation Reaction
13. Boosting the reaction kinetics in aprotic lithium-carbon dioxide batteries with unconventional phase metal nanomaterials
14. 2D/0D hierarchical heterostructures prepared via facet‐selective epitaxial growth of triangular Rh nanoplates on 2H‐Pd nanoparticles
15. Single-Atom-Kernelled Nanocluster Catalyst
16. Confined Growth of Silver–Copper Janus Nanostructures with {100} Facets for Highly Selective Tandem Electrocatalytic Carbon Dioxide Reduction
17. Surface Molecular Functionalization of Unusual Phase Metal Nanomaterials for Highly Efficient Electrochemical Carbon Dioxide Reduction under Industry‐Relevant Current Density
18. Preparation of Au@Pd Core–Shell Nanorods with fcc-2H-fcc Heterophase for Highly Efficient Electrocatalytic Alcohol Oxidation
19. Seeded Synthesis of Unconventional 2H-Phase Pd Alloy Nanomaterials for Highly Efficient Oxygen Reduction
20. Frontispiz: Traceless Removal of Two Kernel Atoms in a Gold Nanocluster and Its Impact on Photoluminescence
21. Frontispiece: Traceless Removal of Two Kernel Atoms in a Gold Nanocluster and Its Impact on Photoluminescence
22. Traceless Removal of Two Kernel Atoms in a Gold Nanocluster and Its Impact on Photoluminescence
23. Traceless Removal of Two Kernel Atoms in a Gold Nanocluster and Its Impact on Photoluminescence
24. Structural Oscillation Revealed in Gold Nanoparticles
25. Hard‐Sphere Random Close‐Packed Au47Cd2(TBBT)31Nanoclusters with a Faradaic Efficiency of Up to 96 % for Electrocatalytic CO2Reduction to CO
26. Hard‐Sphere Random Close‐Packed Au47Cd2(TBBT)31 Nanoclusters with a Faradaic Efficiency of Up to 96 % for Electrocatalytic CO2 Reduction to CO
27. An Unprecedented Kernel Growth Mode and Layer‐Number‐Odevity‐Dependent Properties in Gold Nanoclusters
28. Module Replacement of Gold Nanoparticles by a Pseudo-AGR Process
29. A Dual Purpose Strategy to Endow Gold Nanoclusters with Both Catalysis Activity and Water Solubility
30. An Unprecedented Kernel Growth Mode and Layer‐Number‐Odevity‐Dependent Properties in Gold Nanoclusters
31. Alternating Array Stacking of Ag26Au and Ag24Au Nanoclusters
32. Alternating Array Stacking of Ag26Au and Ag24Au Nanoclusters
33. Two-Way Alloying and Dealloying of Cadmium in Metalloid Gold Clusters
34. Inside Cover: Fcc versus Non‐fcc Structural Isomerism of Gold Nanoparticles with Kernel Atom Packing Dependent Photoluminescence (Angew. Chem. Int. Ed. 14/2019)
35. Innentitelbild: Fcc versus Non‐fcc Structural Isomerism of Gold Nanoparticles with Kernel Atom Packing Dependent Photoluminescence (Angew. Chem. 14/2019)
36. Fcc versus Non‐fcc Structural Isomerism of Gold Nanoparticles with Kernel Atom Packing Dependent Photoluminescence
37. Fcc versus Non‐fcc Structural Isomerism of Gold Nanoparticles with Kernel Atom Packing Dependent Photoluminescence
38. Kernel Homology in Gold Nanoclusters
39. Kernel Homology in Gold Nanoclusters
40. Unraveling the long-pursued Au 144 structure by x-ray crystallography
41. A Silver Nanocluster Containing Interstitial Sulfur and Unprecedented Chemical Bonds
42. A Silver Nanocluster Containing Interstitial Sulfur and Unprecedented Chemical Bonds
43. Kernel Tuning and Nonuniform Influence on Optical and Electrochemical Gaps of Bimetal Nanoclusters
44. Is the kernel–staples match a key–lock match?
45. Surface Single-Atom Tailoring of a Gold Nanoparticle
46. Cover Feature: Gold‐Doping of Double‐Crown Pd Nanoclusters (Chem. Eur. J. 72/2017)
47. Gold-Doping of Double-Crown Pd Nanoclusters
48. Two-Way Transformation between fcc- and Nonfcc-Structured Gold Nanoclusters
49. Quasi‐Dual‐Packed‐Kerneled Au 49 (2,4‐DMBT) 27 Nanoclusters and the Influence of Kernel Packing on the Electrochemical Gap
50. Quasi‐Dual‐Packed‐Kerneled Au 49 (2,4‐DMBT) 27 Nanoclusters and the Influence of Kernel Packing on the Electrochemical Gap
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