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Can Han

Showing results (11-20 of 25) with videos related to

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Inorganic Chemistry|April 21, 2026
Control of Symmetry and Photophysical Properties of Hybrid Antimony Chlorides via Mixed Organic CationsGaosong Wang, Jiale Xu, Feiping Xiao, et al.
Journal of Ophthalmology|June 14, 2016
Optical Quality and Related Factors in Ocular Hypertension: Preliminary StudyYu-Jing Wang, Yan-Ning Yang, Lin-Ying Huang, et al.
Acta Neurochirurgica|January 7, 2016
Large-diameter compression arteries as a possible facilitating factor for trigeminal neuralgia: analysis of axial and radial diffusivityWei Lin, Wan-ping Zhu, Yi-Li Chen, et al.
ACS Applied Materials & Interfaces|January 3, 2025
Source Material Design for Realizing >50% Indium-Saving Transparent Electrode toward Sustainable Development of Silicon Heterojunction Solar CellsZhongyu Gao, Can Han, Jiejun Pan, et al.
Medical Physics|October 21, 2021
IMAL-Net: Interpretable multi-task attention learning network for invasive lung adenocarcinoma screening in CT imagesJun Wang, Cheng Yuan, Can Han, et al.
Advanced Materials (Deerfield Beach, Fla.)|August 14, 2025
Eliminating Mobility-Thickness Dependence in Transparent Conductive Oxide Layer Growth: A Critical Nucleation StrategyZhibin Liu, Can Han, Zhongyu Gao, et al.
ACS Applied Materials & Interfaces|March 4, 2021
Correction to "High-Mobility Hydrogenated Fluorine-Doped Indium Oxide Film for Passivating Contacts c-Si Solar Cells"Can Han, Luana Mazzarella, Yifeng Zhao, et al.
ACS Applied Materials & Interfaces|November 23, 2019
High-Mobility Hydrogenated Fluorine-Doped Indium Oxide Film for Passivating Contacts c-Si Solar CellsCan Han, Luana Mazzarella, Yifeng Zhao, et al.
Nature Communications|October 16, 2024
27.09%-efficiency silicon heterojunction back contact solar cell and going beyondGenshun Wang, Qiao Su, Hanbo Tang, et al.
Neural Regeneration Research|September 16, 2016
Apelin-13 as a novel target for intervention in secondary injury after traumatic brain injuryHai-Jun Bao, Hai-Yang Qiu, Jin-Xia Kuai, et al.
Pageof 3

Showing results (11-20 of 25) with videos related to

Sort By:
Pageof 3
Inorganic Chemistry|April 21, 2026
Control of Symmetry and Photophysical Properties of Hybrid Antimony Chlorides via Mixed Organic CationsGaosong Wang, Jiale Xu, Feiping Xiao, et al.
Journal of Ophthalmology|June 14, 2016
Optical Quality and Related Factors in Ocular Hypertension: Preliminary StudyYu-Jing Wang, Yan-Ning Yang, Lin-Ying Huang, et al.
Acta Neurochirurgica|January 7, 2016
Large-diameter compression arteries as a possible facilitating factor for trigeminal neuralgia: analysis of axial and radial diffusivityWei Lin, Wan-ping Zhu, Yi-Li Chen, et al.
ACS Applied Materials & Interfaces|January 3, 2025
Source Material Design for Realizing >50% Indium-Saving Transparent Electrode toward Sustainable Development of Silicon Heterojunction Solar CellsZhongyu Gao, Can Han, Jiejun Pan, et al.
Medical Physics|October 21, 2021
IMAL-Net: Interpretable multi-task attention learning network for invasive lung adenocarcinoma screening in CT imagesJun Wang, Cheng Yuan, Can Han, et al.
Advanced Materials (Deerfield Beach, Fla.)|August 14, 2025
Eliminating Mobility-Thickness Dependence in Transparent Conductive Oxide Layer Growth: A Critical Nucleation StrategyZhibin Liu, Can Han, Zhongyu Gao, et al.
ACS Applied Materials & Interfaces|March 4, 2021
Correction to "High-Mobility Hydrogenated Fluorine-Doped Indium Oxide Film for Passivating Contacts c-Si Solar Cells"Can Han, Luana Mazzarella, Yifeng Zhao, et al.
ACS Applied Materials & Interfaces|November 23, 2019
High-Mobility Hydrogenated Fluorine-Doped Indium Oxide Film for Passivating Contacts c-Si Solar CellsCan Han, Luana Mazzarella, Yifeng Zhao, et al.
Nature Communications|October 16, 2024
27.09%-efficiency silicon heterojunction back contact solar cell and going beyondGenshun Wang, Qiao Su, Hanbo Tang, et al.
Neural Regeneration Research|September 16, 2016
Apelin-13 as a novel target for intervention in secondary injury after traumatic brain injuryHai-Jun Bao, Hai-Yang Qiu, Jin-Xia Kuai, et al.
Pageof 3