Scientific Research Achievements
Scientific Research Achievements
Representative Published Papers:
[1] Jin Li, Baojing Fan, Xukai Liu, Yuxin Liu, Zhi Xing, Chenxiang Gong, Zhaoyang Chu, Linfeng Li, Xiangchuan Meng, Rui Guo,* Fuyi Wang, Xiaotian Hu* and Yiwang Chen*. Polymer Modulated Ink Rheology and Compatibility Enables Homogenization Printing of Spiro-OMeTAD Transport Layer for Scalable and Stable Perovskite Solar Modules. Energy Environ. Sci., 2024, 17, 6821–6832.
[2] Yongting Cui, Haojie Li, Shumin Zeng, Kai Zhang, Hanlin Wang, Siqi Liu, Long Ye, Rui Guo*, Xiaotian Hu*, Yiwang Chen*. Boosting Uniformity and Efficiency of Large-Area Inverted Organic Photovoltaics Via ZnO Surface Energy Modulation. Advanced Functional Materials, Adv. Funct. Mater. 2025, 35, 2414317
[3] Xueting Wu, Siqi Liu, Haojie Li, Xiangchuan Meng, Xiaotian Hu, Rui Guo*, Yiwang Chen. High light-utilization-efficiency organic
photovoltaic windows with over 40% transmittance enabled by a printable bionic photonic reflector. Advanced Optical Materials, 2022, 10: 2201803.
[4] Zhiyuan Li, Niansi Fan, Xuhui Zhang, Lan Luo, Li Wang, Yuhua Xiong, Lili Meng, Rui Guo*. Co-substitution strategy to achieve a novel efficient deep-red-emitting SrKYTeO6:Mn4+ phosphor for plant cultivation lighting. Journal of Alloys and Compounds, 906 (2022) 164243.
[5] Zhiyuan Li, Xuhui Zhang, Niansi Fan, Rui Guo*, Eric H. Amador, Qianqian Gao, Hongmei Yu, Huibin Zheng, Lan Luo, Li Wang, Yuhua Xiong, Wei Chen. Chemical unit co-substitution for a new far-red-emitting phosphor Ca3-6y(NaLu)3yLiSbO6:Mn4+ to achieve high quantum efficiency and superb thermal stability. Materials Today Advances, 12 (2021) 100193.
[6] Rui Guo, Li Rao, Qianjin Liu, Hongyu Wang, Chenxiang Gong, Baojin Fan, Zhi Xing, Xiangchuan Meng, Xiaotian Hu. Atmospheric stable and flexible Sn-based perovskite solar cells via a bio-inspired antioxidative crystal template. Journal of Energy Chemistry, 66 (2022) 612-618.
[7] Zhiyuan Li, Xuhui Zhang, Ji Wu, Rui Guo*, Lan Luo, Yuhua Xiong, Li Wang, Wei Chen. A novel inequivalent double-site substituted red phosphor Li4AlSbO6:Mn4+ with high color purity: its structure, photoluminescence properties, and application in warm white LEDs. Journal of Materials Chemistry C, 2021, 9, 13236-13246.
[8] Li Rao, Xiangchuan Meng, Shuqin Xiao, Zhi Xing, Qingxia Fu, Hongyu Wang, Chenxiang Gong, Ting Hu, Xiaotian Hu, Rui Guo*, and Yiwang Chen. Wearable Tin-Based Perovskite Solar Cells Achieved by a Crystallographic Size Effect. Angewandte Chemie-International Edition, 2021, 60, 2-10.
[9] Wei Wang1, Rui Guo1, Xuhui Xiong, Hu Liu, Wei Chen, S. Hu, Eric H. Amador, Baojiu Chen, Xinhui Zhang, Li Wang. Improved stability and efficiency of perovskite via a simple solid diffusion method. Materials Today Physics 18 (2021) 100374.
[10] Ji Wu, Zhiyuan Li, Lan Luo, Yuhua Xiong, Liuyang Jiang, Rui Guo*, Lili Meng. A facile two-step synthesis of an efficient narrow-band red-emitting K2NbF7:Mn4+ phosphor for warm white LEDs and its thermal quenching behavior. Journal of Alloys and Compounds 863 (2021) 158058.
Authorized Patents:
[1] Guo Rui; Li Zhiyuan; Luo Lan. A Mn⁴⁺-activated Antimonate Red Phosphor and Its Preparation Method and Application. Oct. 6, 2022, China, ZL 202111248363.3
[2] Guo Rui; Zhang Xuhui; Luo Lan. A Method for Preparing Mn⁴⁺-activated Fluoride Red Phosphor Using Recycled Silicon Sawdust Powder. Apr. 7, 2023, China, ZL 202210315587.X