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Fabrication of Multi-Layer Metal Oxides Structure for Colored Glass.
Gasonoo, Akpeko; Ahn, Hyeon-Sik; Jang, Eun-Jeong; Kim, Min-Hoi; Gwag, Jin Seog; Lee, Jae-Hyun; Choi, Yoonseuk.
Affiliation
  • Gasonoo A; Research Institute of Printed Electronics & 3D Printing, Hanbat National University, Daejeon 34158, Korea.
  • Ahn HS; Department of Electronic Engineering, Hanbat National University, Daejeon 34158, Korea.
  • Jang EJ; Department of Electronic Engineering, Hanbat National University, Daejeon 34158, Korea.
  • Kim MH; Department of Creative Convergence Engineering, Hanbat National University, Daejeon 34158, Korea.
  • Gwag JS; Department of Physics, Yeungnam University, 214-1 Dae-dong, Gyeongsan 712-749, Korea.
  • Lee JH; Department of Creative Convergence Engineering, Hanbat National University, Daejeon 34158, Korea.
  • Choi Y; Department of Electronic Engineering, Hanbat National University, Daejeon 34158, Korea.
Materials (Basel) ; 14(9)2021 May 07.
Article in En | MEDLINE | ID: mdl-34067184
ABSTRACT
This study proposes front colored glass for building integrated photovoltaic (BIPV) systems based on multi-layered derivatives of glass/MoO3/Al2O3 with a process technology developed to realize it. Molybdenum oxide (MoO3) and aluminum oxide (Al2O3) layers are selected as suitable candidates to achieve thin multi-layer color films, owing to the large difference in their refractive indices. We first investigated from a simulation based on wave optics that the glass/MoO3/Al2O3 multi-layer type offers more color design freedom and a cheaper fabrication process when compared to the glass/Al2O3/MoO3 multi-layer type. Based on the simulation, bright blue and green were primarily fabricated on glass. It is further demonstrated that brighter colors, such as yellow and pink, can be achieved secondarily with glass/MoO3/Al2O3/MoO3 due to enhanced multi-interfacial reflections. The fabricated color glasses showed the desired optical properties with a maximum transmittance exceeding 80%. This technology exhibits promising potential in commercial BIPV system applications.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Materials (Basel) Year: 2021 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Materials (Basel) Year: 2021 Document type: Article