An all-in-one Ag2Se-based flexible solar-thermoelectric generator with photothermal integration
Интегрированный гибкий солнечно-термоэлектрический генератор на основе Ag2Se с фототермической интеграцией
2026-02-02
SCID: 54.1/q4wkw8d9
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Ag2Se thermoelectric thin filmsflexible solar-thermoelectric generatornarrow-bandgap thermoelectricsphotothermal conversionsolar-selective absorption
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Abstract (AI)
Flexible solar-thermoelectric generators hold great promise for efficient solar energy harvesting and power supply in wearable electronics. However, the achievement of strong photothermal and thermoelectric performance simultaneously within a single material remains a significant challenge. Here, we propose a fully integrated solar-thermoelectric generator that directly employs Ag2Se thermoelectric thin films as the light-absorbing terminal, combined with a bottom infrared-reflective layer and surface visible anti-reflective coating. This multilayer architecture enables solar-selective absorption and enhances the photothermal conversion efficiency of Ag2Se up to 87.6%, while demonstrating good generalizability to other narrow-bandgap thermoelectric films. The resulting ring-shaped flexible generator delivers a maximum temperature difference and power density of 19.6 K and 0.17 μW cm-2 under 1-sun irradiation and exhibits a stable peak output power of ~1 μW under prolonged outdoor sunlight. These results highlight an effective strategy for high-efficiency solar-thermoelectric generators design and broaden the application potential of narrow-bandgap thermoelectric thin films in photothermal energy conversion. A fully integrated flexible solar-thermoelectric generator is demonstrated utilizing Ag2Se thin films as both efficient photothermal absorber and thermoelectric generators. The device delivers a power density of 0.17 μW cm-2 under 1-sun illumination, attributed to enhanced photothermal conversion efficiency.
Key Findings
1
A fully integrated flexible solar-thermoelectric generator uses Ag2Se thermoelectric thin films simultaneously as light absorbers and thermoelectric generators.
2
A multilayer architecture with an infrared-reflective bottom layer and visible anti-reflective coating enables solar-selective absorption.
3
The architecture increases Ag2Se photothermal conversion efficiency to 87.6% and is reportedly generalizable to other narrow-bandgap thermoelectric films.
4
The generator maintains a stable peak output of approximately 1 μW during prolonged outdoor sunlight, supporting wearable power-supply applications.
5
Under 1-sun irradiation, the ring-shaped flexible device achieves a 19.6 K temperature difference and a power density of 0.17 μW cm-2.
Research Object
An all-in-one Ag2Se-based flexible solar-thermoelectric generator with multilayer photothermal integration
Research Subject
Solar-selective absorption, photothermal conversion efficiency, temperature difference, and power output of the flexible generator under 1-sun and outdoor sunlight
Publication Details
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2026-02-02
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