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Role of Polymeric Metal Nucleation Inducers in Fabricating Large‐Area,Flexible, and Transparent Electrodes for Printable Electronics
Authors:Soyeong Jeong  Suhyun Jung  Hongkyu Kang  Dasol Lee  Sang‐Bae Choi  Seok Kim  Byoungwook Park  Kilho Yu  Jinho Lee  Kwanghee Lee
Affiliation:1. School of Materials Science and Engineering, Department of Nanobio Materials and Electronics, Heeger Center for Advanced Materials, Research Institute for Solar and Sustainable Energies, GIST‐ICL International Collaboration R&D Centre, Gwangju Institute of Science and Technology, Gwangju, Republic of Korea;2. Department of Chemistry and Centre for Plastic Electronics, Imperial College London, London, UK;3. Department of Nano‐Mechanics, Korea Institute of Machinery and Materials, Daejeon, Republic of Korea
Abstract:The advent of special types of transparent electrodes, known as “ultrathin metal electrodes,” opens a new avenue for flexible and printable electronics based on their excellent optical transparency in the visible range while maintaining their intrinsic high electrical conductivity and mechanical flexibility. In this new electrode architecture, introducing metal nucleation inducers (MNIs) on flexible plastic substrates is a key concept to form high‐quality ultrathin metal films (thickness ≈ 10 nm) with smooth and continuous morphology. Herein, this paper explores the role of “polymeric” MNIs in fabricating ultrathin metal films by employing various polymers with different surface energies and functional groups. Moreover, a scalable approach is demonstrated using the ionic self‐assembly on typical plastic substrates, yielding large‐area electrodes (21 × 29.7 cm2) with high optical transmittance (>95%), low sheet resistance (<10 Ω sq?1), and extreme mechanical flexibility. The results demonstrate that this new class of flexible and transparent electrodes enables the fabrication of efficient polymer light‐emitting diodes.
Keywords:flexible and transparent electrodes  nonconjugated polyelectrolytes  nucleation inducers  polymer light‐emitting diodes  ultrathin metal electrodes
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