„split“
Suchergebnisse
10.000+ Treffer
-
Inside Cover: Bioinspired Hierarchical Nanotubular Titania Immobilized with Platinum Nanoparticles for Photocatalytic Hydrogen Production (Chem. Eur. J. 20/2015)
-
Inside Cover: A Dinuclear Ruthenium‐Based Water Oxidation Catalyst: Use of Non‐Innocent Ligand Frameworks for Promoting Multi‐Electron Reactions (Chem. Eur. J. 28/2015)
-
Cover Feature: Heterointerface Engineering of ZnO/CdS Heterostructures through ZnS Layers for Photocatalytic Water Splitting (Chem. Eur. J. 69/2022)
-
Frontispiz: Enhancing Electrochemical Water‐Splitting Kinetics by Polarization‐Driven Formation of Near‐Surface Iron (0): An In Situ XPS Study on Perovskite‐Type Electrodes
-
Rücktitelbild: Electrodeposited Cobalt‐Phosphorous‐Derived Films as Competent Bifunctional Catalysts for Overall Water Splitting (Angew. Chem. 21/2015)
-
Inside Cover: Metallic Single‐Unit‐Cell Orthorhombic Cobalt Diselenide Atomic Layers: Robust Water‐Electrolysis Catalysts (Angew. Chem. Int. Ed. 41/2015)
-
Water Splitting: Achieving Highly Efficient Photoelectrochemical Water Oxidation with a TiCl 4 Treated 3D Antimony‐Doped SnO 2 Macropore/Branched α‐Fe 2 O 3 Nanorod Heterojunction Photoanode (Adv. Sci. 7/2015)
-
Frontispiz: Hybridization Gap and Dresselhaus Spin Splitting in EuIr 4 In 2 Ge 4
-
Water Splitting: Porous Nickel–Iron Oxide as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction (Adv. Sci. 10/2015)
-
Inside Cover: A Complex Perovskite‐Type Oxynitride: The First Photocatalyst for Water Splitting Operable at up to 600 nm (Angew. Chem. Int. Ed. 10/2015)
-
Artificial Photosynthesis: Shifting the Sun: Solar Spectral Conversion and Extrinsic Sensitization in Natural and Artificial Photosynthesis (Adv. Sci. 12/2015)
-
Back Cover: Electrodeposited Cobalt‐Phosphorous‐Derived Films as Competent Bifunctional Catalysts for Overall Water Splitting (Angew. Chem. Int. Ed. 21/2015)
-
Inside Back Cover: Heterostructure of Si and CoSe 2: A Promising Photocathode Based on a Non‐noble Metal Catalyst for Photoelectrochemical Hydrogen Evolution (Angew. Chem. Int. Ed. 21/2015)
-
Innentitelbild: A Complex Perovskite‐Type Oxynitride: The First Photocatalyst for Water Splitting Operable at up to 600 nm (Angew. Chem. 10/2015)
-
Inside Back Cover: Single‐Crystal Semiconductors with Narrow Band Gaps for Solar Water Splitting (Angew. Chem. Int. Ed. 37/2015)
-
Unraveling the Synergy of Anion Modulation on Co Electrocatalysts by Pulsed Laser for Water Splitting: Intermediate Capturing by In Situ/Operando Raman Studies (Small 47/2022)
-
Synthetic Strategies for Variably Substituted Ruthenium–Imidazophenanthrolinium Complexes (Eur. J. Inorg. Chem. 5/2015)
-
Inside Cover: Nb‐Doped Hematite Nanorods for Efficient Solar Water Splitting: Electronic Structure Evolution versus Morphology Alteration (ChemNanoMat 7/2016)
-
Quantum Dots: Near‐Infrared Colloidal Quantum Dots for Efficient and Durable Photoelectrochemical Solar‐Driven Hydrogen Production (Adv. Sci. 3/2016)
-
Water Splitting: A Targeted “Capture” and “Removal” Scavenger toward Multiple Pollutants for Water Remediation based on Molecular Recognition (Adv. Sci. 3/2016)