Contact:
- email:
- damian.glowienka@pg.edu.pl
Positions:
Assistant professor
- workplace:
- Instytut Fizyki i Informatyki Stosowanej
Gmach Główny, 24
- phone:
- +48 58 347 20 13

Publications:
-
Polymer-Enhanced Active Layer Crystallization in Low-Temperature Carbon-Based Perovskite Solar CellsPublication
- S. Huang
- Y. Chen
- H. Cha
- D. Głowienka
- M. Wu
- Y. Huang
- ENERGY & FUELS - Year 2025
High-efficiency perovskite solar cells (PSCs) are emerging as a promising next-generation, low-cost, photovoltaic technology. A key advantage of PSCs is their compatibility with diverse manufacturing techniques, enabling the pursuit of low-cost, stable PSCs. Carbon electrodes, known for their scalability, chemical inertness, and ease of processing through screen printing, have recently seen the development of low-temperature carbon...
Full text to download in external service
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Publication
- T. Chung
- H. Cha
- C. Chuang
- C. Tsao
- D. Głowienka
- Y. Wang
- H. Wu
- Y. Huang
- Polymers - Year 2024
In recent years, third-generation solar cells have experienced a remarkable growth in efficiency, making them a highly promising alternative energy solution. Currently, high-efficiency solar cells often use top electrodes fabricated by thermal evaporation, which rely on high-cost and high energy-consumption vacuum equipment, raising significant concerns for mass production. This study develops a method for fabricating silver electrodes...
Full text to download in external service
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Publication
- D. Głowienka
- C. Tsai
- A. Sbai
- D. Luo
- P. Lee
- S. Huang
- C. Li
- H. Wang
- G. Liou
- J. Guthmuller
- W. Su
- ACS Applied Materials & Interfaces - Year 2024
Perovskite solar cells (PSCs) have demonstrated exceptional efficiency, yet surpassing theoretical performance limits requires innovative methodologies. Among these, down-conversion techniques are pivotal in reducing optical losses and enhancing energy conversion efficiency. In this study, optical modeling, including a generalized transfer-matrix optical model, was employed to meticulously assess optical losses in semitransparent...
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Publication
- K. Cudo
- R. Ollearo
- G. H. Gelinck
- Y. Galagan
- D. Głowienka
- Physical Review Applied - Year 2024
Perovskite solar cells have emerged as a promising technology in the field of photovoltaics, owing to their notable advancements in power conversion efficiency. Recent investigations have revealed a crucial dependency of efficiency on the source of bromide within the perovskite absorption layer. To elucidate the underlying nature of traps within these solar cells, a comprehensive series of measurements was conducted under varying...
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Publication
- C. Li
- S. Cheng
- H. Cha
- S. Chung
- D. Głowienka
- C. Chuang
- Y. Huang
- ACS Applied Energy Materials - Year 2024
The ability to achieve notable indoor power conversion efficiency (PCE) makes organic photovoltaics (OPV) a potential technology for indoor applications. Currently, ongoing research in indoor OPVs focuses on improving both their indoor PCE and their stability. However, little attention has been given to investigating the fabrication yield of indoor OPVs, a pivotal determinant of their potential commercial viability. In this study,...
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Projects:
-
Projects
Project manager: dr inż. Damian Głowienka Financial Program Name: ERA-NET COFUND
Project realized in Division of Physics of Organic and Perovskite Photovoltaic Structures according to UMO-2021/03/Y/ST5/00233 agreement from 2022-07-01
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Projects
Project manager: dr inż. Damian Głowienka Financial Program Name: PRELUDIUM
Project realized in Department of Physics of Electronic Phenomena according to UMO-2018/29/N/ST7/02326 agreement from 2019-01-28