Skip to menu Skip to content Skip to footer

2020

Journal Article

Alkaline-earth bis(trifluoromethanesulfonimide) additives for efficient and stable perovskite solar cells

Pham, Ngoc Duy, Shang, Jing, Yang, Yang, Hoang, Minh Tam, Tiong, Vincent Tiing, Wang, Xiaoxiang, Fan, Lijuan, Chen, Peng, Kou, Liangzhi, Wang, Lianzhou and Wang, Hongxia (2020). Alkaline-earth bis(trifluoromethanesulfonimide) additives for efficient and stable perovskite solar cells. Nano Energy, 69 104412, 104412. doi: 10.1016/j.nanoen.2019.104412

Alkaline-earth bis(trifluoromethanesulfonimide) additives for efficient and stable perovskite solar cells

2020

Journal Article

Post-redox engineering electron configurations of atomic thick C3N4 nanosheets for enhanced photocatalytic hydrogen evolution

Li, Yongli, Xu, Xiangfeng, Wang, Jinshu, Luo, Wei, Zhang, Zhipeng, Cheng, Xing, Wu, Junshu, Yang, Yilong, Chen, Ge, Sun, Shaorui and Wang, Lianzhou (2020). Post-redox engineering electron configurations of atomic thick C3N4 nanosheets for enhanced photocatalytic hydrogen evolution. Applied Catalysis B: Environmental, 270 118855, 118855. doi: 10.1016/j.apcatb.2020.118855

Post-redox engineering electron configurations of atomic thick C3N4 nanosheets for enhanced photocatalytic hydrogen evolution

2020

Journal Article

Highly-conductive PEDOT:PSS hydrogel framework based hybrid fiber with high volumetric capacitance and excellent rate capability

Zhou, Qinqin, Teng, Weili, Jin, Yuhong, Sun, Ling, Hu, Peng, Li, Hongyi, Wang, Lianzhou and Wang, Jinshu (2020). Highly-conductive PEDOT:PSS hydrogel framework based hybrid fiber with high volumetric capacitance and excellent rate capability. Electrochimica Acta, 334 135530, 135530. doi: 10.1016/j.electacta.2019.135530

Highly-conductive PEDOT:PSS hydrogel framework based hybrid fiber with high volumetric capacitance and excellent rate capability

2020

Journal Article

Integrated photorechargeable energy storage system: next-generation power source driving the future

Zeng, Qiang, Lai, Yanqing, Jiang, Liangxing, Liu, Fangyang, Hao, Xiaojing, Wang, Lianzhou and Green, Martin A. (2020). Integrated photorechargeable energy storage system: next-generation power source driving the future. Advanced Energy Materials, 10 (14) 1903930, 1903930. doi: 10.1002/aenm.201903930

Integrated photorechargeable energy storage system: next-generation power source driving the future

2020

Journal Article

Faster activation and slower capacity/voltage fading: a bifunctional urea treatment on lithium‐rich cathode materials

Lin, Tongen, Schulli, Tobias U., Hu, Yuxiang, Zhu, Xiaobo, Gu, Qinfen, Luo, Bin, Cowie, Bruce and Wang, Lianzhou (2020). Faster activation and slower capacity/voltage fading: a bifunctional urea treatment on lithium‐rich cathode materials. Advanced Functional Materials, 30 (13) 1909192, 1-10. doi: 10.1002/adfm.201909192

Faster activation and slower capacity/voltage fading: a bifunctional urea treatment on lithium‐rich cathode materials

2020

Journal Article

Recent advances of metal‐oxide photoanodes: engineering of charge separation and transportation toward efficient solar water splitting

Xiao, Mu, Luo, Bin, Wang, Zhiliang, Wang, Songcan and Wang, Lianzhou (2020). Recent advances of metal‐oxide photoanodes: engineering of charge separation and transportation toward efficient solar water splitting. Solar RRL, 4 (8) 1900509, 1-24. doi: 10.1002/solr.201900509

Recent advances of metal‐oxide photoanodes: engineering of charge separation and transportation toward efficient solar water splitting

2020

Journal Article

Dimensionality-controlled surface passivation for enhancing performance and stability of perovskite solar cells via triethylenetetramine vapor

Yao, Disheng, Mao, Xin, Wang, Xiaoxiang, Yang, Yang, Pham, Ngoc Duy, Du, Aijun, Chen, Peng, Wang, Lianzhou, Wilson, Gregory J. and Wang, Hongxia (2020). Dimensionality-controlled surface passivation for enhancing performance and stability of perovskite solar cells via triethylenetetramine vapor. ACS Applied Materials and Interfaces, 12 (5) acsami.9b19908, 6651-6661. doi: 10.1021/acsami.9b19908

Dimensionality-controlled surface passivation for enhancing performance and stability of perovskite solar cells via triethylenetetramine vapor

2020

Journal Article

Engineering active Fe sites on nickel-iron layered double hydroxide through component segregation for oxygen evolution reaction

Peng, Chunlei, Ran, Nian, Wan, Gang, Zhao, Wanpeng, Kuang, Zhaoyu, Lu, Zheng, Sun, Chengjun, Liu, Jianjun, Wang, Lianzhou and Chen, Hangrong (2020). Engineering active Fe sites on nickel-iron layered double hydroxide through component segregation for oxygen evolution reaction. ChemSusChem, 13 (4) cssc.201902841, 811-818. doi: 10.1002/cssc.201902841

Engineering active Fe sites on nickel-iron layered double hydroxide through component segregation for oxygen evolution reaction

2020

Journal Article

Ligand-assisted cation-exchange engineering for high-efficiency colloidal Cs1−xFAxPbI3 quantum dot solar cells with reduced phase segregation

Hao, Mengmeng, Bai, Yang, Zeiske, Stefan, Ren, Long, Liu, Junxian, Yuan, Yongbo, Zarrabi, Nasim, Cheng, Ningyan, Ghasemi, Mehri, Chen, Peng, Lyu, Miaoqiang, He, Dongxu, Yun, Jung-Ho, Du, Yi, Wang, Yun, Ding, Shanshan, Armin, Ardalan, Meredith, Paul, Liu, Gang, Cheng, Hui-Ming and Wang, Lianzhou (2020). Ligand-assisted cation-exchange engineering for high-efficiency colloidal Cs1−xFAxPbI3 quantum dot solar cells with reduced phase segregation. Nature Energy, 5 (1), 79-88. doi: 10.1038/s41560-019-0535-7

Ligand-assisted cation-exchange engineering for high-efficiency colloidal Cs1−xFAxPbI3 quantum dot solar cells with reduced phase segregation

2020

Journal Article

The rise of textured perovskite morphology: revolutionizing the pathway toward high-performance optoelectronic devices

Zhong, Jun-Xing, Wu, Wu-Qiang, Liao, Jin-Feng, Feng, Wenhuai, Jiang, Yong, Wang, Lianzhou and Kuang, Dai-Bin (2020). The rise of textured perovskite morphology: revolutionizing the pathway toward high-performance optoelectronic devices. Advanced Energy Materials, 10 (7) 1902256, 1902256. doi: 10.1002/aenm.201902256

The rise of textured perovskite morphology: revolutionizing the pathway toward high-performance optoelectronic devices

2020

Journal Article

Two‐dimensional material‐functionalized separators for high‐energy‐density metal–sulfur and metal‐based batteries

Hu, Yuxiang, Zhu, Xiaobo and Wang, Lianzhou (2020). Two‐dimensional material‐functionalized separators for high‐energy‐density metal–sulfur and metal‐based batteries. ChemSusChem, 13 (6) cssc.201902758, 1366-1378. doi: 10.1002/cssc.201902758

Two‐dimensional material‐functionalized separators for high‐energy‐density metal–sulfur and metal‐based batteries

2020

Journal Article

Revealing the failure mechanism of transition-metal chalcogenides towards the copper current collector in secondary batteries

Zu, Guannan, Guo, Gencai, Li, Hongyi, Lu, Yue, Wang, Ruzhi, Hu, Yuxiang, Wang, Lianzhou and Wang, Jinshu (2020). Revealing the failure mechanism of transition-metal chalcogenides towards the copper current collector in secondary batteries. Journal of Materials Chemistry A, 8 (14), 6569-6575. doi: 10.1039/d0ta00622j

Revealing the failure mechanism of transition-metal chalcogenides towards the copper current collector in secondary batteries

2020

Journal Article

Identifying dual functions of rGO in a BiVO4/rGO/NiFe-layered double hydroxide photoanode for efficient photoelectrochemical water splitting

Chen, Hua, Wang, Songcan, Wu, Jianzhong, Zhang, Xiacong, Zhang, Jia, Lyu, Miaoqiang, Luo, Bin, Qian, Guangren and Wang, Lianzhou (2020). Identifying dual functions of rGO in a BiVO4/rGO/NiFe-layered double hydroxide photoanode for efficient photoelectrochemical water splitting. Journal of Materials Chemistry A, 8 (26), 13231-13240. doi: 10.1039/d0ta04572a

Identifying dual functions of rGO in a BiVO4/rGO/NiFe-layered double hydroxide photoanode for efficient photoelectrochemical water splitting

2020

Journal Article

Hybridization of ZSM‐5 with spinel oxides for biomass vapour upgrading

Konarova, Muxina, Atanda, Luqman, Batalha, Nuno, Stark, Terra, Perkins, Greg, Odedairo, Taiwo, Wang, Lianzhou, Wang, Zhiliang and Tabulo, Ben (2020). Hybridization of ZSM‐5 with spinel oxides for biomass vapour upgrading. ChemCatChem, 12 (5) cctc.201902023, 1403-1412. doi: 10.1002/cctc.201902023

Hybridization of ZSM‐5 with spinel oxides for biomass vapour upgrading

2020

Journal Article

Hydroxyl-regulated BiOI nanosheets with a highly positive valence band maximum for improved visible-light photocatalytic performance

Wang, Xuewen, Zhang, Yang, Zhou, Chengxi, Huo, Dezhen, Zhang, Rongbin and Wang, Lianzhou (2020). Hydroxyl-regulated BiOI nanosheets with a highly positive valence band maximum for improved visible-light photocatalytic performance. Applied Catalysis B: Environmental, 268 118390, 118390. doi: 10.1016/j.apcatb.2019.118390

Hydroxyl-regulated BiOI nanosheets with a highly positive valence band maximum for improved visible-light photocatalytic performance

2020

Journal Article

Trilayer nanomesh films with tunable wettability as highly transparent, flexible, and recyclable electrodes

Qiu, Tengfei, Luo, Bin, Akinoglu, Eser Metin, Yun, Jung-Ho, Gentle, Ian R. and Wang, Lianzhou (2020). Trilayer nanomesh films with tunable wettability as highly transparent, flexible, and recyclable electrodes. Advanced Functional Materials, 30 (31) 2002556, 2002556. doi: 10.1002/adfm.202002556

Trilayer nanomesh films with tunable wettability as highly transparent, flexible, and recyclable electrodes

2020

Journal Article

Synchronous surface and bulk composition management for red-shifted light absorption and suppressed interfacial recombination in perovskite solar cells

Zhong, Jun-Xing, Liao, Jin-Feng, Jiang, Yong, Wang, Lianzhou, Kuang, Dai-Bin and Wu, Wu-Qiang (2020). Synchronous surface and bulk composition management for red-shifted light absorption and suppressed interfacial recombination in perovskite solar cells. Journal of Materials Chemistry A, 8 (19), 9743-9752. doi: 10.1039/d0ta02449j

Synchronous surface and bulk composition management for red-shifted light absorption and suppressed interfacial recombination in perovskite solar cells

2020

Journal Article

A freestanding 3d heterostructure film stitched by MOF-derived carbon nanotube microsphere superstructure and reduced graphene oxide sheets: a superior multifunctional electrode for overall water splitting and Zn–air batteries

Yan, Liting, Xu, Yulin, Chen, Pan, Zhang, Shuo, Jiang, Huimin, Yang, Lingzhi, Wang, Ying, Zhang, Li, Shen, Jianxing, Zhao, Xuebo and Wang, Lianzhou (2020). A freestanding 3d heterostructure film stitched by MOF-derived carbon nanotube microsphere superstructure and reduced graphene oxide sheets: a superior multifunctional electrode for overall water splitting and Zn–air batteries. Advanced Materials, 32 (48) 2003313, 2003313. doi: 10.1002/adma.202003313

A freestanding 3d heterostructure film stitched by MOF-derived carbon nanotube microsphere superstructure and reduced graphene oxide sheets: a superior multifunctional electrode for overall water splitting and Zn–air batteries

2020

Journal Article

Stabilizing high-voltage cathode materials for next-generation Li-ion batteries

Zhu, Xiaobo, Schulli, Tobias and Wang, Lianzhou (2020). Stabilizing high-voltage cathode materials for next-generation Li-ion batteries. Chemical Research in Chinese Universities, 36 (1), 24-32. doi: 10.1007/s40242-020-9103-8

Stabilizing high-voltage cathode materials for next-generation Li-ion batteries

2020

Journal Article

Understanding of carrier dynamics, heterojunction merits and device physics: towards designing efficient carrier transport layer-free perovskite solar cells

Liao, Jin-Feng, Wu, Wu-Qiang, Jiang, Yong, Zhong, Jun-Xing, Wang, Lianzhou and Kuang, Dai-Bin (2020). Understanding of carrier dynamics, heterojunction merits and device physics: towards designing efficient carrier transport layer-free perovskite solar cells. Chemical Society Reviews, 49 (2), 354-381. doi: 10.1039/c8cs01012a

Understanding of carrier dynamics, heterojunction merits and device physics: towards designing efficient carrier transport layer-free perovskite solar cells