跳至主導覽
跳至搜尋
跳過主要內容
國立陽明交通大學研發優勢分析平台 首頁
English
中文
在 國立陽明交通大學研發優勢分析平台 搜尋內容
首頁
人員
單位
研究成果
計畫
獎項
活動
貴重儀器
影響
Optimization of In-situ and Ex-situ doped p+ Passivating Contact for High Efficiency p-TOPCon Solar Cell Application
Wook Jin Choi
, Keeya Madani
, Ying Yuan Huang
, Aditi Jain
, Young Woo Ok
, Vijaykumar D. Upadhyaya Min Gu Kang
, Sungjin Choi
, Ajeet Rohatgi
照明與能源光電研究所
研究成果
:
Conference contribution
›
同行評審
11
引文 斯高帕斯(Scopus)
總覽
指紋
指紋
深入研究「Optimization of In-situ and Ex-situ doped p+ Passivating Contact for High Efficiency p-TOPCon Solar Cell Application」主題。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Keyphrases
In Situ
100%
Poly-Si
100%
High Efficiency
100%
Solar Cell Applications
100%
Passivating Contacts
100%
Passivation
75%
Tunnel Oxide Passivated Contact (TOPCon)
75%
Boron Diffusion
50%
In-situ Doping
50%
Atmospheric Pressure Chemical Vapor Deposition (APCVD)
50%
Low Pressure Chemical Vapor Deposition (LPCVD)
25%
Absorber
25%
Annealing Temperature
25%
Process Optimization
25%
SiOx
25%
Rear Side
25%
C-Si
25%
Field-induced
25%
Auger Recombination
25%
Passivation Quality
25%
Precursor Gases
25%
Metallized
25%
Diffusion Profile
25%
Gas Flow Ratio
25%
Metal Coverage
25%
In Situ Doped
25%
In-situ Process
25%
Screen-printed
25%
Optimum Annealing Temperature
25%
Crystallization Annealing
25%
Bifacial
25%
B Concentration
25%
PERC Solar Cells
25%
PERC+
25%
Engineering
Passivation
100%
Solar Cell
100%
Polysilicon
100%
Annealing Temperature
50%
Auger Recombination
25%
Gas Flow
25%
Material Science
Solar Cell
100%
Annealing
66%
Boron
66%
Low Pressure Chemical Vapor Deposition
33%
Gas Flow
33%
Chemical Engineering
Polysilicon
100%
Low Pressure Chemical Vapor Deposition
25%