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Lattice‐Driven Topological Spin Textures in Cr2Ge2Te6 Single Crystals
1 Introduction The interaction between lattice and electronic degrees of freedom plays the most important role in solids and is particularly pronounced in van der Waals (vdW) materials. Since their discovery, the distinctive weakly coupled layered structures of vdW crystals have been closely linked to a variety of emergent electronic phenomena, highlighting the importance of lattice-electron coupling in these systems.
Boosting photoelectrochemical water splitting: enhanced hole transport in BiVO4 photoanodes via interfacial coupling
Boosting photoelectrochemical water splitting: enhanced hole transport in BiVO4 photoanodes via interfacial coupling† In the realm of photoelectrochemical (PEC) water splitting, the oxygen evolution reaction (OER) poses a significant efficiency bottleneck. To address this challenge, multi-interfacial optimization of BiVO4-based composites to enhance charge transport within the material matrix has emerged as a pivotal strategy for improving PEC performance.
Boosting Photoelectrochemical Water Splitting: Enhanced Hole Transport in BiVO4 Photoanodes via Interfacial Coupling
Boosting Photoelectrochemical Water Splitting: Enhanced Hole Transport in BiVO4 Photoanodes via Interfacial Coupling In the realm of photoelectrochemical (PEC) water splitting, the oxygen evolution reaction (OER) poses a significant efficiency bottleneck. To address this challenge, multi-interfacial optimization of BiVO4-based composites to enhance charge transport within the material matrix has emerged as a pivotal strategy for improving PEC performance.
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