1.

Record Nr.

UNINA9910373891703321

Autore

Khan Arshad

Titolo

Novel Embedded Metal-mesh Transparent Electrodes : Vacuum-free Fabrication Strategies and Applications in Flexible Electronic Devices / / by Arshad Khan

Pubbl/distr/stampa

Singapore : , : Springer Singapore : , : Imprint : Springer, , 2020

ISBN

981-15-2918-3

Edizione

[1st ed. 2020.]

Descrizione fisica

1 online resource (XXIX, 109 p.)

Collana

Springer Theses, Recognizing Outstanding Ph.D. Research, , 2190-5053

Disciplina

541.3724

Soggetti

Materials—Surfaces

Thin films

Electronic circuits

Nanotechnology

Energy harvesting

Optical materials

Electronics - Materials

Surfaces and Interfaces, Thin Films

Electronic Circuits and Devices

Nanotechnology and Microengineering

Energy Harvesting

Optical and Electronic Materials

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di contenuto

Introduction to Transparent Conductors -- Introduction to Vacuum-free Fabrication Strategies for Embedded Metal-mesh Transparent Electrodes -- Micro Embedded Metal-mesh Transparent Electrodes (Micro-EMTEs) Fabricated by LEIT Strategy -- Micro Embedded Metal-mesh Transparent Electrodes (Micro-EMTEs) Fabricated by TEIT Strategy -- Nano Embedded Metal-mesh Transparent Electrodes (Nano-EMTEs) Fabricated by LEIT and TEIT -- Applications of Embedded Metal-mesh Transparent Electrodes in Flexible Electronic Devices -- Conclusions and Future Recommendations.



Sommario/riassunto

This book presents fabrication approaches that could be adapted for the high-throughput and low-cost manufacturing of the proposed transparent electrode. It proposes and demonstrates a new type of embedded metal-mesh transparent electrode (EMTE) that offers superior electrical, optical, and mechanical properties. The structure of the EMTE allows thick metal mesh to be used (for high conductivity) without sacrificing surface smoothness. In addition, the embedded structure improves the EMTE’s mechanical stability under high bending stress, as well as its chemical stability in ambient environments. These design aspects are then shown to be suitable for larger electrode areas, narrower metal-mesh line widths, and a wide range of materials, and can easily be adapted to produce flexible and even stretchable devices. In closing, the book explores the practical applications of EMTEs in flexible bifacial dye-sensitized solar cells and transparent thin-film heaters, demonstrating their outstanding performance. .