Printed origami thermoelectric generator achieves > 20 Wm−² from low-grade heat via material and process design

N Nan Luo Z Zirui Wang (State Key Laboratory of Structural Chemistry) A Ajay Kumar Verma M Muhammad Irfan Khan L Leonard Franke J Jiayi Liu A Alexei Nefedov M Marc Schneider H Holger Geßwein E Erich Müller K Kirsten Drüppel T Tobias Weingaertner Y Yolita M. Eggeler U Uli Lemmer M Md Mofasser Mallick

Abstract

Abstract Printing facilitates low-cost thermoelectric generators to power battery-free internet-of-things devices, wearables, and Industry 4.0 systems. However, scaling up requires printable thermoelectric materials with good mechanical properties and high performance. Here, we report a high-performance Ag 2 (Se 1- x S x ) 1.05 -based n-type printed thermoelectric film through a combination of engineering non-stoichiometric defects and sulfur substitution. An optimal sulfur substitution of 2 at. % facilitates an excellent flexibility and a power factor of~16 µWcm −1 K −2 at 360 K, a 65 % increase compared to a pristine Ag 2 Se film. A fully printed origami-thermoelectric generator produces a maximum power output $${P}_{\max }$$ P max of 907 µW at a temperature difference of 80 K. A record-high power density p d of 21 W m −2 (corresponding to 800 µW g −1 as a weight-normalized power density) is achieved, twice that of previously reported origami-thermoelectric generators. These results highlight cost-effective manufacturing of thermoelectric generators with the capability to power next-generation autonomous electronic devices.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 31, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

N

Nan Luo

Z

Zirui Wang

State Key Laboratory of Structural Chemistry

A

Ajay Kumar Verma

M

Muhammad Irfan Khan

L

Leonard Franke

J

Jiayi Liu

A

Alexei Nefedov

M

Marc Schneider

H

Holger Geßwein

E

Erich Müller

K

Kirsten Drüppel

T

Tobias Weingaertner

Y

Yolita M. Eggeler

U

Uli Lemmer

M

Md Mofasser Mallick