相关文献:
1. Liang, W.; Nie, C.; Du, J.; Han, Y.; Zhao, G.; Yang, F.; Liang, G.; Wu, K.* Near-infrared photon upconversion and solar synthesis using lead-free nanocrystals. Nat. Photonics 2023, 17, 346-353.
2. Lin, X.; Han, Y.; Zhu, J.; Wu, K.* Room-temperature coherent optical manipulation of hole spins in solution-grown perovskite quantum dots. Nat. Nanotechnol. 2023, 18, 124-130.
3. Han, Y.; Liang, W.; Lin, X.; Li, Y.; Sun, F.; Zhang, F.; Sercel, P. C.; Wu, K.* Lattice distortion inducing exciton splitting and coherent quantum beating in CsPbI3 perovskite quantum dots. Nat. Mater. 2022, 21, 1282–1289.
4. Wang, J.; Ding, T.; Gao, K.; Wang, L.; Zhou, P.; Wu, K.* Marcus inverted region of charge transfer from low-dimensional semiconductor materials. Nat. Commun. 2021, 12, 6333.
5. Luo, X.; Han, Y.; Chen, Z.; Li, Y.; Liang, G.; Liu, X.; Ding, T.; Nie, C.; Wang, M.; Castellano, F. N.; Wu, K.* Mechanisms of triplet energy transfer across the inorganic nanocrystal/organic molecule interface. Nat. Commun. 2020, 11, 28.
6. Luo, X.; Lai, R.; Li, Y.; Han, Y.; Liang, G.; Liu, X.; Ding, T.; Wang, J.; Wu, K.* Triplet Energy Transfer from CsPbBr3 Nanocrystals Enabled by Quantum Confinement. J. Am. Chem. Soc. 2019, 141, 4186-4190.
7.Wu, K.; Li, H.; Klimov, V. I. Tandem luminescent solar concentrators based on engineered quantum dots. Nat. Photonics 2018, 12, 105-110.
8. Wu, K.; Park, Y.-S.; Lim, J.; Klimov, V. I. Towards zero-threshold optical gain using charged semiconductor quantum dots. Nat. Nanotechnol. 2017, 12, 1140-1147.
9. Li, H.+; Wu, K. +; Lim, J.; Song, H.-J.; Klimov, V. I. Doctor-blade deposition of quantum dots onto standard window glass for low-loss large-area luminescent solar concentrators. Nat. Energy 2016, 1, 16157.
10. Wu, K.; Chen, J.; McBride, J. R.; Lian, T. Efficient hot-electron transfer by a plasmon-induced interfacial charge-transfer transition. Science 2015, 349, 632-635.
论文著作:
1. Mn2+-Doped Lead Halide Perovskite Nanocrystals with Dual-Color Emission Controlled by Halide Content
Wenyong Liu; Qianglu Lin; Hongbo Li; Kaifeng Wu; Istvan Robel; Jeffrey M. Pietryga; Victor I. Klimov
Journal of the American Chemical Society, 2016
2. Observation of Internal Photoinduced Electron and Hole Separation in Hybrid Two-Dimentional Perovskite Films.
Junxue Liu; Jing Leng; Kaifeng Wu; Jun Zhang; Shengye Jin
Journal of the American Chemical Society, 2017
3. Ultrafast Interfacial Electron and Hole Transfer from CsPbBr3 Perovskite Quantum Dots
Kaifeng Wu; Guijie Liang; Qiongyi Shane; Yueping Ren; Degui Kong; Tianquan Lian
Journal of the American Chemical Society, 2015
4. Ultrafast Charge Separation and Long-Lived Charge Separated State in Photocatalytic CdS-Pt Nanorod Heterostructures.
Kaifeng Wu; Haiming Zhu; Zheng Liu; William Rodriguez-Cordoba; Tianquan Lian
Journal of the American Chemical Society, 2012
5. Hole Removal Rate Limits Photodriven H-2 Generation Efficiency in Cds-Pt and Cdse/Cds-Pt Semiconductor Nanorod-Metal Tip Heterostructures
Kaifeng Wu; Zheyuan Chen; Hongjin Lv; Haiming Zhu; Craig L. Hill; Tianquan Lian
Journal of the American Chemical Society, 2014
6. Tandem Luminescent Solar Concentrators Based on Engineered Quantum Dots
Kaifeng Wu; Hongbo Li; Victor I. Klimov
Nature Photonics, 2018
7. Plasmon-Induced Hot Electron Transfer from the Au Tip to CdS Rod in CdS-Au Nanoheterostructures
Kaifeng Wu; William E. Rodriguez-Cordoba; Ye Yang; Tianquan Lian
NANO LETTERS, 2013
8. Quantum Confined Colloidal Nanorod Heterostructures for Solar-to-fuel Conversion.
Kaifeng Wu; Tianquan Lian
ChemInform, 2016
9. Covalent Organic Frameworks with High Quantum Efficiency in Sacrificial Photocatalytic Hydrogen Evolution.
Chunzhi Li; Jiali Liu; He Li; Kaifeng Wu; Junhui Wang; Qihua Yang
Nature Communications, 2022
10. Incorporating Transition‐Metal Phosphides into Metal‐Organic Frameworks for Enhanced Photocatalysis
Kang Sun; Meng Liu; Junzhe Pei; Dandan Li; Chunmei Ding; Kaifeng Wu; Hai-Long Jiang
Angewandte Chemie, 2020