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2021 Journal Article Bismuth based photoelectrodes for solar water splittingAkter Monny, Sabiha, Wang, Zhiliang, Konarova, Muxina and Wang, Lianzhou (2021). Bismuth based photoelectrodes for solar water splitting. Journal of Energy Chemistry, 61, 517-530. doi: 10.1016/j.jechem.2021.01.047 |
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2021 Journal Article Enhanced safety and performance of high-voltage solid-state sodium battery through trilayer, multifunctional electrolyte designRan, Lingbing, Li, Ming, Cooper, Emily, Luo, Bin, Gentle, Ian, Wang, Lianzhou and Knibbe, Ruth (2021). Enhanced safety and performance of high-voltage solid-state sodium battery through trilayer, multifunctional electrolyte design. Energy Storage Materials, 41, 8-13. doi: 10.1016/j.ensm.2021.05.040 |
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2021 Journal Article Cesium-doped Ti3C2Tx MXene for efficient and thermally stable perovskite solar cellsBati, Abdulaziz S.R., Sutanto, Albertus A., Hao, Mengmeng, Batmunkh, Munkhbayar, Yamauchi, Yusuke, Wang, Lianzhou, Wang, Yun, Nazeeruddin, Mohammad Khaja and Shapter, Joseph G. (2021). Cesium-doped Ti3C2Tx MXene for efficient and thermally stable perovskite solar cells. Cell Reports Physical Science, 2 (10) 100598, 1-16. doi: 10.1016/j.xcrp.2021.100598 |
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2021 Journal Article Near‐infrared photoactive semiconductor quantum dots for solar cellsZhou, Ru, Xu, Jun, Luo, Paifeng, Hu, Linhua, Pan, Xu, Xu, Jinzhang, Jiang, Yang and Wang, Lianzhou (2021). Near‐infrared photoactive semiconductor quantum dots for solar cells. Advanced Energy Materials, 11 (40) 2101923, 1-33. doi: 10.1002/aenm.202101923 |
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2021 Journal Article Self‐assembled perovskite nanoislands on CH3 NH3 PbI3 cuboid single crystals by energetic surface engineeringZhang, Yurou, Kim, Dohyung, Yun, Jung‐Ho, Lim, Jongchul, Jung, Min‐Cherl, Wen, Xiaoming, Seidel, Jan, Choi, Eunyoung, Xiao, Mu, Qiu, Tengfei, Lyu, Miaoqiang, Han, E.Q., Ghasemi, Mehri, Lim, Sean, Snaith, Henry J., Yun, Jae Sung and Wang, Lianzhou (2021). Self‐assembled perovskite nanoislands on CH3 NH3 PbI3 cuboid single crystals by energetic surface engineering. Advanced Functional Materials, 31 (50) 2105542, 1-11. doi: 10.1002/adfm.202105542 |
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2021 Journal Article Sc, Ge Co-doping NASICON boosts solid state sodium ion batteries performanceRan, Lingbing, Baktash, Ardeshir, Li, Ming, Yin, Yu, Demir, Baris, Lin, Tongen, Li, Meng, Rana, Masud, Gentle, Ian, Wang, Lianzhou, Searles, Debra J. and Knibbe, Ruth (2021). Sc, Ge Co-doping NASICON boosts solid state sodium ion batteries performance. Energy Storage Materials, 40, 282-291. doi: 10.1016/j.ensm.2021.05.017 |
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2021 Journal Article Revisiting solar hydrogen production through photovoltaic-electrocatalytic and photoelectrochemical water splittingWang, Zhiliang, Gu, Yuang and Wang, Lianzhou (2021). Revisiting solar hydrogen production through photovoltaic-electrocatalytic and photoelectrochemical water splitting. Frontiers in Energy, 15 (3), 596-599. doi: 10.1007/s11708-021-0745-0 |
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2021 Journal Article Asymmetric structure engineering of polymeric carbon nitride for visible-light-driven reduction reactionsLuo, Wei, Li, Yongli, Wang, Jinshu, Liu, Jingchao, Zhang, Nan, Zhao, Mengdi, Wu, Junshu, Zhou, Wenyuan and Wang, Lianzhou (2021). Asymmetric structure engineering of polymeric carbon nitride for visible-light-driven reduction reactions. Nano Energy, 87 106168, 1-10. doi: 10.1016/j.nanoen.2021.106168 |
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2021 Journal Article Unveiling general rules governing the dimensional evolution of branched TiO2 and impacts on photoelectrochemical behaviorsButburee, Teera, Bai, Yang and Wang, Lianzhou (2021). Unveiling general rules governing the dimensional evolution of branched TiO2 and impacts on photoelectrochemical behaviors. Journal of Materials Chemistry A, 9 (41), 23313-23322. doi: 10.1039/d1ta05218g |
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2021 Journal Article Stable interfaces in a sodium metal-free, solid-state sodium-ion battery with gradient composite electrolyteRan, Lingbing, Tao, Shiwei, Gentle, Ian, Luo, Bin, Li, Ming, Rana, MdMasud, Wang, Lianzhou and Knibbe, Ruth (2021). Stable interfaces in a sodium metal-free, solid-state sodium-ion battery with gradient composite electrolyte. ACS Applied Materials and Interfaces, 13 (33) acsami.1c09792, 39355-39362. doi: 10.1021/acsami.1c09792 |
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2021 Journal Article Homogeneous dual-site P lattice doping in CdS quantum rods for visible-light photocatalytic water splittingLi, He, An, Hua, Chong, Ben, Yang, Guidong and Wang, Lianzhou (2021). Homogeneous dual-site P lattice doping in CdS quantum rods for visible-light photocatalytic water splitting. Chemical Engineering Science, 238 116594, 116594. doi: 10.1016/j.ces.2021.116594 |
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2021 Journal Article PSi@SiOx/Nano-Ag composite derived from silicon cutting waste as high-performance anode material for Li-ion batteriesXi, Fengshuo, Zhang, Zhao, Hu, Yuxiang, Li, Shaoyuan, Ma, Wenhui, Chen, Xiuhua, Wan, Xiaohan, Chong, CheeMun, Luo, Bin and Wang, Lianzhou (2021). PSi@SiOx/Nano-Ag composite derived from silicon cutting waste as high-performance anode material for Li-ion batteries. Journal of Hazardous Materials, 414 125480, 1-11. doi: 10.1016/j.jhazmat.2021.125480 |
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2021 Journal Article Nanoconfined topochemical conversion from MXene to ultrathin non‐layered TiN nanomesh toward superior electrocatalysts for lithium‐sulfur batteriesHuang, Xia, Tang, Jiayong, Qiu, Tengfei, Knibbe, Ruth, Hu, Yuxiang, Schülli, Tobias U., Lin, Tongen, Wang, Zhiliang, Chen, Peng, Luo, Bin and Wang, Lianzhou (2021). Nanoconfined topochemical conversion from MXene to ultrathin non‐layered TiN nanomesh toward superior electrocatalysts for lithium‐sulfur batteries. Small, 17 (32) 2101360, 1-8. doi: 10.1002/smll.202101360 |
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2021 Journal Article 1D‐2D synergistic MXene‐nanotubes hybrids for efficient perovskite solar cellsBati, Abdulaziz S. R., Hao, Mengmeng, Macdonald, Thomas J., Batmunkh, Munkhbayar, Yamauchi, Yusuke, Wang, Lianzhou and Shapter, Joseph G. (2021). 1D‐2D synergistic MXene‐nanotubes hybrids for efficient perovskite solar cells. Small, 17 (32) 2101925, 2101925. doi: 10.1002/smll.202101925 |
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2021 Journal Article The role of tungsten-related elements for improving the electrochemical performances of cathode materials in lithium ion batteriesSun, Yong-Qi, Fu, Weng, Hu, Yu-Xiang, Vaughan, James and Wang, Lian-Zhou (2021). The role of tungsten-related elements for improving the electrochemical performances of cathode materials in lithium ion batteries. Tungsten, 3 (3), 245-259. doi: 10.1007/s42864-021-00083-9 |
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2021 Journal Article Converting natural gas: quantum-sized bismuth vanadate holds the key for selective photocatalytic oxidation of methaneWang, Lianzhou (2021). Converting natural gas: quantum-sized bismuth vanadate holds the key for selective photocatalytic oxidation of methane. Science China Chemistry, 64 (5) 64, 686-687. doi: 10.1007/s11426-021-9963-1 |
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2021 Journal Article Bridging localized electron states of pyrite-type CoS2 cocatalyst for activated solar H2 evolutionHuang, Hengming, Xue, Chen, Fang, Zhenggang, Wang, Zhiliang, Luo, Bin, Sun, Menglong, Zhou, Ling, Hu, Kan, Kou, Jiahui, Wang, Lianzhou and Lu, Chunhua (2021). Bridging localized electron states of pyrite-type CoS2 cocatalyst for activated solar H2 evolution. Nano Research, 15 (1), 1-7. doi: 10.1007/s12274-021-3457-1 |
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2021 Journal Article Visible-light responsive TiO2-based materials for efficient solar energy utilizationZhang, Wei, He, Haili, Li, Haoze, Duan, Linlin, Zu, Lianhai, Zhai, Yunpu, Li, Wei, Wang, Lianzhou, Fu, Honggang and Zhao, Dongyuan (2021). Visible-light responsive TiO2-based materials for efficient solar energy utilization. Advanced Energy Materials, 11 (15) 2003303, 1-24. doi: 10.1002/aenm.202003303 |
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2021 Journal Article Metal–organic framework‐based materials for solar water splittingLi, Xianlong, Wang, Zhiliang and Wang, Lianzhou (2021). Metal–organic framework‐based materials for solar water splitting. Small Science, 1 (5) 2000074, 1-11. doi: 10.1002/smsc.202000074 |
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2021 Journal Article Rational strategies toward efficient and stable lead-free tin halide perovskite solar cellsHe, Dongxu, Shen, Liang, Bai, Yang and Wang, Lianzhou (2021). Rational strategies toward efficient and stable lead-free tin halide perovskite solar cells. Materials Chemistry Frontiers, 5 (11), 4107-4127. doi: 10.1039/d0qm01002b |