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2024 Journal Article Enhancing performance and longevity of solid-state zinc-iodine batteries with fluorine-rich solid electrolyte interphaseHuang, Yongxin, Wang, Yiqing, Peng, Xiyue, Lin, Tongen, Huang, Xia, Alghamdi, Norah S., Rana, Masud, Chen, Peng, Zhang, Cheng, Whittaker, Andrew K., Wang, Lianzhou and Luo, Bin (2024). Enhancing performance and longevity of solid-state zinc-iodine batteries with fluorine-rich solid electrolyte interphase. Materials Futures, 3 (3) 035102. doi: 10.1088/2752-5724/ad50f1 |
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2024 Journal Article Hollow multishelled structure: synthesis chemistry and applicationMao, Dan, Wang, Chao, Li, Wei, Zhou, Liang, Liu, Jian, Zheng, Zijian, Zhao, Yong, Cao, An-min, Wang, Shutao, Huang, Jiaxing, Huo, Fengwei, Chen, Hongyu, Mai, Liqiang, Yu, Ranbo, Wang, Lianzhou, Lu, Yunfeng, Yu, Chengzhong, Yang, Qihua, Yang, Zhenzhong, Zeng, Hua Chun, Zhao, Huijun, Tang, Zhiyong, Zhao, Dongyuan and Wang, Dan (2024). Hollow multishelled structure: synthesis chemistry and application. Chemical Research in Chinese Universities, 40 (3), 346-393. doi: 10.1007/s40242-024-4070-0 |
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2024 Journal Article Unveiling the role of water in heterogeneous photocatalysis of methanol conversion for efficient hydrogen productionXiao, Mu, Baktash, Ardeshir, Lyu, Miaoqiang, Zhao, Guangyu, Jin, Yonggang and Wang, Lianzhou (2024). Unveiling the role of water in heterogeneous photocatalysis of methanol conversion for efficient hydrogen production. Angewandte Chemie (International edition), 63 (21) e202402004, 1-9. doi: 10.1002/anie.202402004 |
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2024 Journal Article Unbiased photoelectrochemical carbon dioxide reduction shaping the future of solar fuelsLu, Haijiao and Wang, Lianzhou (2024). Unbiased photoelectrochemical carbon dioxide reduction shaping the future of solar fuels. Applied Catalysis B: Environmental, 345 123707, 1-17. doi: 10.1016/j.apcatb.2024.123707 |
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2024 Journal Article High‐voltage spinel cathode materials: navigating the structural evolution for lithium‐ion batteriesZhu, Xiaobo, Huang, Aoyu, Martens, Isaac, Vostrov, Nikita, Sun, Yongqi, Richard, Marie‐Ingrid, Schülli, Tobias U. and Wang, Lianzhou (2024). High‐voltage spinel cathode materials: navigating the structural evolution for lithium‐ion batteries. Advanced Materials, 36 (30) e2403482, e2403482. doi: 10.1002/adma.202403482 |
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2024 Journal Article Thermally evaporated metal halide perovskites and their analogues: Film fabrication, applications and beyondWang, Zitong, Lyu, Miaoqiang, Zhang, Bo Wei, Xiao, Mu, Zhang, Chengxi, Han, EQ and Wang, Lianzhou (2024). Thermally evaporated metal halide perovskites and their analogues: Film fabrication, applications and beyond. Small Methods, 9 (2) e2301633, e2301633. doi: 10.1002/smtd.202301633 |
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2024 Journal Article Ultra-high-purity Mg-Ge anodes enable a long-lasting, high energy-density Mg-air batteryChen, Xingrui, Venezuela, Jeffrey, Shi, Zhiming, Wang, Lianzhou and Dargusch, Matthew (2024). Ultra-high-purity Mg-Ge anodes enable a long-lasting, high energy-density Mg-air battery. Nano Energy, 122 109269, 109269. doi: 10.1016/j.nanoen.2024.109269 |
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2024 Journal Article Boosting aluminum storage in highly stable covalent organic frameworks with abundant accessible carbonyl groupsPeng, Xiyue, Baktash, Ardeshir, Alghamdi, Norah, Rana, Md Masud, Huang, Yongxin, Hu, Xinyue, He, Cailing, Luo, Zhiruo, Ning, Jing, Wang, Lianzhou and Luo, Bin (2024). Boosting aluminum storage in highly stable covalent organic frameworks with abundant accessible carbonyl groups. Advanced Energy Materials, 14 (22) 2400147. doi: 10.1002/aenm.202400147 |
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2024 Journal Article Cobalt-doped carbon nanodots as an interfacial modifier for efficient solar-driven water splittingLin, Jingyi, Liu, Runlu, Li, Xin, Zhao, Yixin, Kong, Lingti, Li, Yao, Zhu, Shenmin and Wang, Lianzhou (2024). Cobalt-doped carbon nanodots as an interfacial modifier for efficient solar-driven water splitting. Applied Catalysis B: Environmental, 343 123544, 1-9. doi: 10.1016/j.apcatb.2023.123544 |
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2024 Journal Article Synchronous densification and conductivity modulation of nano-titanate for pseudocapacitive Li-ion storageZhu, Xiaobo, She, Qin, Wang, Mao, Wang, Zhiliang, Hu, Yuxiang, Yuan, Du, Sun, Yongqi, Schülli, Tobias U. and Wang, Lianzhou (2024). Synchronous densification and conductivity modulation of nano-titanate for pseudocapacitive Li-ion storage. Advanced Functional Materials, 34 (13) 2311025, 1-10. doi: 10.1002/adfm.202311025 |
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2024 Journal Article Induced dipole moments in amorphous ZnCdS catalysts facilitate photocatalytic H2 evolutionWang, Xin, Liu, Boyan, Ma, Siqing, Zhang, Yingjuan, Wang, Lianzhou, Zhu, Gangqiang, Huang, Wei and Wang, Songcan (2024). Induced dipole moments in amorphous ZnCdS catalysts facilitate photocatalytic H2 evolution. Nature Communications, 15 (1) 2600, 1-11. doi: 10.1038/s41467-024-47022-z |
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2024 Journal Article Modulating the structure and composition of single-atom electrocatalysts for CO2 reductionChen, Weiren, Jin, Xixiong, Zhang, Lingxia, Wang, Lianzhou and Shi, Jianlin (2024). Modulating the structure and composition of single-atom electrocatalysts for CO2 reduction. Advanced Science, 11 (9) 2304424, 1-32. doi: 10.1002/advs.202304424 |
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2024 Journal Article Liquid metal-embraced photoactive films for artificial photosynthesisZhen, Chao, Chen, Xiangtao, Chen, Ruotian, Fan, Fengtao, Xu, Xiaoxiang, Kang, Yuyang, Guo, Jingdong, Wang, Lianzhou, Lu, Gao Qing, Domen, Kazunari, Cheng, Hui-Ming and Liu, Gang (2024). Liquid metal-embraced photoactive films for artificial photosynthesis. Nature Communications, 15 (1) 1672, 1-13. doi: 10.1038/s41467-024-46073-6 |
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2024 Journal Article Reconstructing ferroelectric polarization screening of PbTiO3 by epitaxial SrTiO3 for efficient photocatalytic overall water splittingDu, Peipei, Huang, Jie, Ye, Zixing, Zhen, Chao, Liu, Jianan, Yang, Yang, Ren, Zhaohui, Yin, Lichang, Wang, Lianzhou and Liu, Gang (2024). Reconstructing ferroelectric polarization screening of PbTiO3 by epitaxial SrTiO3 for efficient photocatalytic overall water splitting. Advanced Functional Materials, 34 (24) 2312888, 1-9. doi: 10.1002/adfm.202312888 |
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2024 Journal Article Light alters reaction pathwaysWang, Zhiliang and Wang, Lianzhou (2024). Light alters reaction pathways. Nature Energy, 9 (2), 115-116. doi: 10.1038/s41560-024-01457-2 |
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2024 Journal Article Fluorination in advanced battery designWang, Yiqing, Wu, Zhenzhen, Azad, Faezeh Makhlooghi, Zhu, Yutong, Wang, Lianzhou, Hawker, Craig J., Whittaker, Andrew K., Forsyth, Maria and Zhang, Cheng (2024). Fluorination in advanced battery design. Nature Reviews Materials, 9 (2), 119-133. doi: 10.1038/s41578-023-00623-4 |
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2024 Journal Article Accelerated redox reactions enable stable tin‐lead mixed perovskite solar cellsHe, Dongxu, Chen, Peng, Hao, Mengmeng, Lyu, Miaoqiang, Wang, Zhiliang, Ding, Shanshan, Lin, Tongen, Zhang, Chengxi, Wu, Xin, Moore, Evan, Steele, Julian A., Namdas, Ebinazar, Bai, Yang and Wang, Lianzhou (2024). Accelerated redox reactions enable stable tin‐lead mixed perovskite solar cells. Angewandte Chemie International Edition, 63 (4) e202317446, 1-8. doi: 10.1002/anie.202317446 |
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2024 Journal Article Accelerated redox reactions enable stable tin‐lead mixed perovskite solar cellsHe, Dongxu, Chen, Peng, Hao, Mengmeng, Lyu, Miaoqiang, Wang, Zhiliang, Ding, Shanshan, Lin, Tongen, Zhang, Chengxi, Wu, Xin, Moore, Evan, Steele, Julian A., Namdas, Ebinazar B., Bai, Yang and Wang, Lianzhou (2024). Accelerated redox reactions enable stable tin‐lead mixed perovskite solar cells. Angewandte Chemie, 136 (4) e202317446, 1-8. doi: 10.1002/ange.202317446 |
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2024 Journal Article Perovskite quantum dot solar cells: current status and future outlook : focus reviewHao, Mengmeng, Ding, Shanshan, Gaznaghi, Sabah, Cheng, Huiyuan and Wang, Lianzhou (2024). Perovskite quantum dot solar cells: current status and future outlook : focus review. ACS Energy Letters, 9 (1), 308-322. doi: 10.1021/acsenergylett.3c01983 |
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2024 Journal Article Green energy driven methane conversion under mild conditionsYou, Jiakang, Bao, Yifan, Zhang, Yanzhao, Konarova, Muxina, Wang, Zhiliang and Wang, Lianzhou (2024). Green energy driven methane conversion under mild conditions. EES Catalysis, 2 (6), 1210-1227. doi: 10.1039/d4ey00155a |