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MR Image Super-Resolution Using Wavelet Diffusion for Predicting Alzheimer’s Disease Conference paper
Huang, Guoli, Chen, Xuhang, Shen, Yanyan, Wang, Shuqiang. MR Image Super-Resolution Using Wavelet Diffusion for Predicting Alzheimer’s Disease[C], 2023, 146-157.
Authors:  Huang, Guoli;  Chen, Xuhang;  Shen, Yanyan;  Wang, Shuqiang
Favorite | TC[Scopus]:10 | Submit date:2024/02/22
Alzheimer’s Disease Assessment  Diffusion Model  Discrete Wavelet Transformation  Mr Image Super-resolution  
Effective defect passivation with a designer ionic molecule for high-efficiency vapour-deposited inorganic phase-pure CsPbBr3 perovskite solar cells Journal article
Ruxin Guo, Junmin Xia, Hao Gu, Xuke Chu, Yan Zhao, Xianghuan Meng, Zhiheng Wu, Jiangning Li, Yanyan Duan, Zhenzhen Li, Zhaorui Wen, Shi Chen, Yongqing Cai, Chao Liang, Yonglong Shen, Guichuan Xing, Wei Zhange, Guosheng Shao. Effective defect passivation with a designer ionic molecule for high-efficiency vapour-deposited inorganic phase-pure CsPbBr3 perovskite solar cells[J]. Journal of Materials Chemistry A, 2022, 11(1), 408-418.
Authors:  Ruxin Guo;  Junmin Xia;  Hao Gu;  Xuke Chu;  Yan Zhao; et al.
Favorite | TC[WOS]:21 TC[Scopus]:22  IF:10.7/10.8 | Submit date:2023/01/30
Effective defect passivation with a designer ionic molecule for high-efficiency vapour-deposited inorganic phase-pure CsPbBr 3 perovskite solar cells Journal article
Ruxin Guo, Junmin Xia, Hao Gu, Xuke Chu, Yan Zhao, Xianghuan Meng, Zhiheng Wu, Jiangning Li, Yanyan Duan, Zhenzhen Li, Zhaorui Wen, Shi Chen, Yongqing Cai, Chao Liang, Yonglong Shen, XING GUICHUAN, Wei Zhang, Guosheng Shao. Effective defect passivation with a designer ionic molecule for high-efficiency vapour-deposited inorganic phase-pure CsPbBr 3 perovskite solar cells[J]. Journal of Materials Chemistry A, 2022, 11(1), 408-418.
Authors:  Ruxin Guo;  Junmin Xia;  Hao Gu;  Xuke Chu;  Yan Zhao; et al.
Favorite | TC[WOS]:21 TC[Scopus]:22  IF:10.7/10.8 | Submit date:2023/08/29
Perovskite  Solar Cell  
Double-Sided Sapphire Optrodes with Conductive Shielding Layers to Reduce Optogenetic Stimulation Artifacts Journal article
Shen, Junyu, Xu, Yanyan, Xiao, Zhengwen, Liu, Yuebo, Liu, Honghui, Wang, Fengge, Yan, Chaokun, Wang, Liyang, Chen, Changhao, Wu, Zhisheng, Liu, Yang, Mak, Peng Un, Vai, Mang I., Pun, Sio Hang, Lei, Tim C., Zhang, Baijun. Double-Sided Sapphire Optrodes with Conductive Shielding Layers to Reduce Optogenetic Stimulation Artifacts[J]. Micromachines, 2022, 13(11), 1836.
Authors:  Shen, Junyu;  Xu, Yanyan;  Xiao, Zhengwen;  Liu, Yuebo;  Liu, Honghui; et al.
Favorite | TC[WOS]:3 TC[Scopus]:3  IF:3.0/3.0 | Submit date:2022/12/01
Double-sided Optrode  Electromagnetic Shielding Layers  Microelectrodes  Sapphire Substrate  Stimulation Artifacts  
Influence of the surface material and illumination upon the performance of a microelectrode/electrolyte interface in optogenetics Journal article
Shen, Junyu, Xu, Yanyan, Xiao, Zhengwen, Liu, Yuebo, Liu, Honghui, Wang, Fengge, Yao, Wanqing, Yan, Zhaokun, Zhang, Minjie, Wu, Zhisheng, Liu, Yang, Pun, Sio Hang, Lei, Tim C., Vai, Mang I., Mak, Peng Un, Chen, Changhao, Zhang, Baijun. Influence of the surface material and illumination upon the performance of a microelectrode/electrolyte interface in optogenetics[J]. Micromachines, 2021, 12(9), 1061.
Authors:  Shen, Junyu;  Xu, Yanyan;  Xiao, Zhengwen;  Liu, Yuebo;  Liu, Honghui; et al.
Favorite | TC[WOS]:4 TC[Scopus]:4  IF:3.0/3.0 | Submit date:2021/12/08
Microelectrode/electrolyte Interface  Optical Artifact  Optogenetics  Optrode  Photostability  Surface Material