Author
Listed:
- Tao Li
(Sun Yat-sen University)
- Zhengwen Li
(Sun Yat-sen University)
- Weilong Chen
(Sun Yat-sen University)
- Junhao Chen
(Sun Yat-sen University)
- Haijie Zhou
(Sun Yat-sen University)
- Caiyan Wang
(Sun Yat-sen University)
- Xiaochun Cao
(Sun Yat-sen University)
- Bin Li
(Sun Yat-sen University
Sun Yat-sen University)
- Shujiang Ding
(Xi’an Jiaotong University)
- Lei Shi
(Sun Yat-sen University
Sun Yat-sen University)
Abstract
Flexible alternating-current electroluminescent (ACEL) devices combine light emission with mechanical flexibility, enabling applications in wearables, soft robotics, and human–machine interfaces. Previous attempts to lower the driving voltage using high-permittivity fillers (e.g., BaTiO₃, liquid metals, ionic liquids) improved dielectric properties, but the inclusion of these heterogeneous fillers often compromised transparency and pattern clarity. Here, we report a printable, transparent high-dielectric ink that addresses these issues. By incorporating small high-dielectric molecules into a polymer matrix and employing screen printing with one-step photopolymerization, we fabricated patterned ACEL devices of high quality. The ink exhibits a dielectric constant up to 25 and transparency up to 90%, enabling efficient emission at a low voltage of ~0.33 V µm⁻¹, among the lowest reported. Its excellent printability supports scalable, cost-effective patterning, and devices can be wirelessly powered by harvesting ambient electromagnetic energy for chip- and battery-free operation.
Suggested Citation
Tao Li & Zhengwen Li & Weilong Chen & Junhao Chen & Haijie Zhou & Caiyan Wang & Xiaochun Cao & Bin Li & Shujiang Ding & Lei Shi, 2025.
"A high-κ homogeneous ink for printable electroluminescent devices,"
Nature Communications, Nature, vol. 16(1), pages 1-11, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-64075-w
DOI: 10.1038/s41467-025-64075-w
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