Xue-Jun Wu

Affiliations: 
Nanjing University, Nanjing Shi, Jiangsu Sheng, China 
Area:
Nanochemistry
Google:
"Xue-Jun Wu"
Mean distance: (not calculated yet)
 
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Zhai L, Gebre ST, Chen B, et al. (2023) Epitaxial growth of highly symmetrical branched noble metal-semiconductor heterostructures with efficient plasmon-induced hot-electron transfer. Nature Communications. 14: 2538
Chen J, Wu XJ, Lu Q, et al. (2021) Preparation of CdS Se -MoS Heterostructures via Cation Exchange of Pre-Epitaxially Synthesized Cu S Se -MoS for Photocatalytic Hydrogen Evolution. Small (Weinheim An Der Bergstrasse, Germany). e2006135
Zhao M, Chen J, Chen B, et al. (2020) Selective Epitaxial Growth of Oriented Hierarchical Metal-Organic Framework Heterostructures. Journal of the American Chemical Society
Yin PF, Zhou M, Chen J, et al. (2020) Synthesis of Palladium-Based Crystalline@Amorphous Core-Shell Nanoplates for Highly Efficient Ethanol Oxidation. Advanced Materials (Deerfield Beach, Fla.). e2000482
Chen J, Liu G, Zhu Y, et al. (2020) Ag@MoS2 Core-Shell Heterostructure as SERS Platform to Reveal the Hydrogen Evolution Active Sites of Single-layer MoS2. Journal of the American Chemical Society
Chen J, Ma Q, Wu XJ, et al. (2019) Wet-Chemical Synthesis and Applications of Semiconductor Nanomaterial-Based Epitaxial Heterostructures. Nano-Micro Letters. 11: 86
Niu W, Liu J, Huang J, et al. (2019) Publisher Correction: Unusual 4H-phase twinned noble metal nanokites. Nature Communications. 10: 3147
Niu W, Liu J, Huang J, et al. (2019) Unusual 4H-phase twinned noble metal nanokites. Nature Communications. 10: 2881
Chen J, Ma Q, Wu X, et al. (2019) Wet-Chemical Synthesis and Applications of Semiconductor Nanomaterial-Based Epitaxial Heterostructures Nano-Micro Letters. 11
Liu Z, Zhang X, Gong Y, et al. (2019) Synthesis of MoX2 (X = Se or S) monolayers with high-concentration 1T′ phase on 4H/fcc-Au nanorods for hydrogen evolution Nano Research. 12: 1301-1305
See more...