Toward roll-to-roll ALD of thermoelectric Al-doped ZnO thin films on flexible nanostructured PET membranes

E Esa Alakoski (Institute of New Industry, Jamk University of Applied Sciences 1 , Jyväskylä FI-40101,) S Sami Kinnunen (ALD CoCampus 2 , Jyväskylä FI-40101,) G Girish C. Tewari (Department of Chemistry and Materials Science, Aalto University 4 , Espoo FI-00076,) J Jaakko Julin (ALD CoCampus 2 , Jyväskylä FI-40101,) A Antti J. Soininen (Institute of New Industry, Jamk University of Applied Sciences 1 , Jyväskylä FI-40101,) M Maarit Karppinen (Department of Chemistry and Materials Science, Aalto University)

Abstract

Thin films are an effective way of manufacturing thermoelectric (TE) sensors for biomedical devices and wearable electronics. Excellent conformality and sub-nanometer thickness control of atomic layer deposition (ALD) make it a promising method of preparing TE thin films on flexible polymer and textile substrates suitable for sensor use. Here, Al-doped ZnO films were deposited on flexible perforated polyethylene terephthalate (PET) templates with 50/1 diethylzinc/trimethylaluminum pulsing ratio at a low temperature of 100 °C. Thermoelectric properties of the resulting nanocomposites were measured. The application potential of the present ALD-made TE coatings on flexible PET films for future roll-to-roll fabrication is discussed.

Article Details

Volume / Issue Vol. 126, Issue 11
Published March 01, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (6)

E

Esa Alakoski

Institute of New Industry, Jamk University of Applied Sciences 1 , Jyväskylä FI-40101,

S

Sami Kinnunen

ALD CoCampus 2 , Jyväskylä FI-40101,

G

Girish C. Tewari

Department of Chemistry and Materials Science, Aalto University 4 , Espoo FI-00076,

J

Jaakko Julin

ALD CoCampus 2 , Jyväskylä FI-40101,

A

Antti J. Soininen

Institute of New Industry, Jamk University of Applied Sciences 1 , Jyväskylä FI-40101,

M

Maarit Karppinen

Department of Chemistry and Materials Science, Aalto University