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Domain-limiting effect modulation of laser debonding threshold based on wafer stacking structure for advanced packaging
Journal article
Dai, Wenxue, Zhang, Jieyuan, Wang, Fangcheng, Liu, Qiang, Huang, Mingqi, Wang, Tao, Zhang, Guoping, Zhou, Bingpu, Sun, Rong. Domain-limiting effect modulation of laser debonding threshold based on wafer stacking structure for advanced packaging[J]. Applied Surface Science, 2025, 687, 162219.
Authors:
Dai, Wenxue
;
Zhang, Jieyuan
;
Wang, Fangcheng
;
Liu, Qiang
;
Huang, Mingqi
; et al.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
6.3
/
5.9
|
Submit date:2025/01/22
Laser Debonding Technology
Monolayer Materials
Domain-limiting Effect
Ablation Threshold
Advanced Packaging
Constrained patterning of orientated metal chalcogenide nanowires and their growth mechanism
Journal article
Yang, Qishuo, Wang, Yun Peng, Shi, Xiao Lei, Li, Xing Xing, Zhao, Erding, Chen, Zhi Gang, Zou, Jin, Leng, Kai, Cai, Yongqing, Zhu, Liang, Pantelides, Sokrates T., Lin, Junhao. Constrained patterning of orientated metal chalcogenide nanowires and their growth mechanism[J]. Nature Communications, 2024, 15(1), 6074.
Authors:
Yang, Qishuo
;
Wang, Yun Peng
;
Shi, Xiao Lei
;
Li, Xing Xing
;
Zhao, Erding
; et al.
Favorite
|
TC[WOS]:
3
TC[Scopus]:
3
IF:
14.7
/
16.1
|
Submit date:2024/08/05
Contact Resistance
Band-structure
Mote2
Transition
Monolayer
Graphene
Surface
Emission
Films
Electrical control of excitonic oscillator strength and spatial distribution in a monolayer semiconductor
Journal article
Wang, Yanming, Zhang, Junrong, Ren, Tianhua, Xia, Meng, Fang, Long, Wang, Xiangyi, Zhang, Xingwang, Zhang, Kai, Wang, Junyong. Electrical control of excitonic oscillator strength and spatial distribution in a monolayer semiconductor[J]. Nano Research, 2024, 17(9), 8424-8430.
Authors:
Wang, Yanming
;
Zhang, Junrong
;
Ren, Tianhua
;
Xia, Meng
;
Fang, Long
; et al.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
9.5
/
9.0
|
Submit date:2024/08/05
Electrical Modulation
Exciton
Monolayer Semiconductor
Spatial Distribution
High-Quality van der Waals Epitaxial CsPbBr3 Film Grown on Monolayer Graphene Covered TiO2 for High-Performance Solar Cells
Journal article
Wen, Zhaorui, Liang, Chao, Li, Shengwen, Wang, Gang, He, Bingchen, Gu, Hao, Xie, Junpeng, Pan, Hui, Su, Zhenhuang, Gao, Xingyu, Hong, Guo, Chen, Shi. High-Quality van der Waals Epitaxial CsPbBr3 Film Grown on Monolayer Graphene Covered TiO2 for High-Performance Solar Cells[J]. ENERGY & ENVIRONMENTAL MATERIALS, 2024, 7(4), e12680.
Authors:
Wen, Zhaorui
;
Liang, Chao
;
Li, Shengwen
;
Wang, Gang
;
He, Bingchen
; et al.
Favorite
|
TC[WOS]:
9
TC[Scopus]:
8
IF:
13.0
/
14.1
|
Submit date:2024/02/22
All-inorganic Perovskite Solar Cells
Buried Interface Modification
Monolayer Graphene
Van Der Waals Epitaxial Growth
Recent trends in the transfer of graphene films
Journal article
Zhu, Yaqi, Shi, Zhuofeng, Zhao, Yixuan, Bu, Saiyu, Hu, Zhaoning, Liao, Junhao, Lu, Qi, Zhou, Chaofan, Guo, Bingbing, Shang, Mingpeng, Li, Fangfang, Xu, Zhiying, Zhang, Jialin, Xie, Qin, Li, Chunhu, Sun, Pengzhan, Mao, Boyang, Zhang, Xiaodong, Liu, Zhongfan, Lin, Li. Recent trends in the transfer of graphene films[J]. Nanoscale, 2024, 16(16), 7862-7873.
Authors:
Zhu, Yaqi
;
Shi, Zhuofeng
;
Zhao, Yixuan
;
Bu, Saiyu
;
Hu, Zhaoning
; et al.
Favorite
|
TC[WOS]:
4
TC[Scopus]:
4
IF:
5.8
/
6.1
|
Submit date:2024/05/16
Single-layer Graphene
Large-area
2-dimensional Materials
Monolayer Graphene
Cvd Graphene
Transparent
Permeation
Growth
Copper
Water
Electronic and Optoelectronic Monolayer WSe2 Devices via Transfer-Free Fabrication Method
Journal article
Wang,Zixuan, Nie,Yecheng, Ou,Haohui, Chen,Dao, Cen,Yingqian, Liu,Jidong, Wu,Di, Hong,Guo, Li,Benxuan, Xing,Guichuan, Zhang,Wenjing. Electronic and Optoelectronic Monolayer WSe2 Devices via Transfer-Free Fabrication Method[J]. Nanomaterials, 2023, 13(8), 1368.
Authors:
Wang,Zixuan
;
Nie,Yecheng
;
Ou,Haohui
;
Chen,Dao
;
Cen,Yingqian
; et al.
Favorite
|
TC[WOS]:
4
TC[Scopus]:
4
IF:
4.4
/
4.7
|
Submit date:2023/08/03
Chemical Vapor Deposition
Monolayer Wse2
Photodetector
Transfer-free
Transistor
Phononic transport in 1T′-MoTe2: Anisotropic structure with an isotropic lattice thermal conductivity
Journal article
Cui, Xiangyue, Yan, Xuefei, Wang, Bowen, Cai, Yongqing. Phononic transport in 1T′-MoTe2: Anisotropic structure with an isotropic lattice thermal conductivity[J]. Applied Surface Science, 2022, 608, 155238.
Authors:
Cui, Xiangyue
;
Yan, Xuefei
;
Wang, Bowen
;
Cai, Yongqing
Favorite
|
TC[WOS]:
4
TC[Scopus]:
4
IF:
6.3
/
5.9
|
Submit date:2023/02/08
Lattice Dynamics
Monolayer Mote2
Strain
Thermal Transport
Graphene induced structure and doping level tuning of evaporated CsPbBr3 on different substrates
Journal article
Wen, Zhaorui, Zhong, Yunlei, He, Bingchen, Wang, Gang, Li, Shengwen, Mu, Zhen, Li, Jielei, Xie, Junpeng, Zheng, Yi, Xing, Guichuan, Hong, Guo, Chen, Shi. Graphene induced structure and doping level tuning of evaporated CsPbBr3 on different substrates[J]. Chemical Engineering Journal, 2022, 452, 139243.
Authors:
Wen, Zhaorui
;
Zhong, Yunlei
;
He, Bingchen
;
Wang, Gang
;
Li, Shengwen
; et al.
Favorite
|
TC[WOS]:
1
TC[Scopus]:
2
IF:
13.3
/
13.2
|
Submit date:2023/02/08
Crystallinity Improvement
Doping Level
Halide Perovskite
Monolayer Graphene
Perovskite Photodetector
Preferred Orientation
Wetting Transparency
Wafer-Scale 2H-MoS2 Monolayer for High Surface-enhanced Raman Scattering Performance: Charge-Transfer Coupled with Molecule Resonance
Journal article
An, Keyu, Chen, Mingpeng, He, Bingchen, Ai, Haoqiang, Wang, Wei, Zhang, Zhihong, Pan, Zhongbin, Chen, Shi, Ip, Weng Fai, Lo, Kin Ho, Chai, Jianwei, Wang, Shijie, Yang, Ming, Wang, Shuangpeng, Pan, Hui. Wafer-Scale 2H-MoS2 Monolayer for High Surface-enhanced Raman Scattering Performance: Charge-Transfer Coupled with Molecule Resonance[J]. Advanced Materials Technologies, 2022, 7(8), 2200217.
Authors:
An, Keyu
;
Chen, Mingpeng
;
He, Bingchen
;
Ai, Haoqiang
;
Wang, Wei
; et al.
Favorite
|
TC[WOS]:
17
TC[Scopus]:
18
IF:
6.4
/
8.0
|
Submit date:2022/05/17
Charge Transfer
Molecule Resonance
Mos2 Monolayer
Sers
Wafer Scale
A common strategy to improve transmembrane transport in polarized epithelial cells based on sorting signals: Guiding nanocarriers to TGN rather than to the basolateral plasma membrane directly
Journal article
Zhang, Runyu, Deng, Hailiang, Lin, Yuxing, Wang, Xing, He, Bing, Dai, Wenbing, Zhang, Hua, Zheng, Ying, Zhang, Qiang, Wang, Xueqing. A common strategy to improve transmembrane transport in polarized epithelial cells based on sorting signals: Guiding nanocarriers to TGN rather than to the basolateral plasma membrane directly[J]. JOURNAL OF CONTROLLED RELEASE, 2021, 339, 430-444.
Authors:
Zhang, Runyu
;
Deng, Hailiang
;
Lin, Yuxing
;
Wang, Xing
;
He, Bing
; et al.
Favorite
|
TC[WOS]:
7
TC[Scopus]:
8
IF:
10.5
/
10.6
|
Submit date:2021/12/08
Basolateral Plasma Membrane
Caco-2 Cell Monolayer
Common Strategy
Trans-golgi Network (Tgn)
Transcytosis