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Vertically stacked skin-like active-matrix display with ultrahigh aperture ratio.

Juntong Li | Yanping Ni | Xiaoli Zhao | Bin Wang | Chuang Xue | Zetong Bi | Cong Zhang | Yongjun Dong | Yanhong Tong | Qingxin Tang | Yichun Liu
Light, science & applications | 2024

Vertically stacked all-organic active-matrix organic light-emitting diodes are promising candidates for high-quality skin-like displays due to their high aperture ratio, extreme mechanical flexibility, and low-temperature processing ability. However, these displays suffer from process interferences when interconnecting functional layers made of all-organic materials. To overcome this challenge, we present an innovative integration strategy called "discrete preparation-multilayer lamination" based on microelectronic processes. In this strategy, each functional layer was prepared separately on different substrates to avoid chemical and physical damage caused by process interferences. A single interconnect layer was introduced between each vertically stacked functional layer to ensure mechanical compatibility and interconnection. Compared to the previously reported layer-by-layer preparation method, the proposed method eliminates the need for tedious protection via barrier and pixel-defining layer processing steps. Additionally, based on active-matrix display, this strategy allows multiple pixels to collectively display a pattern of "1" with an aperture ratio of 83%. Moreover, the average mobility of full-photolithographic organic thin-film transistors was 1.04 cm2 V-1 s-1, ensuring stable and uniform displays. This strategy forms the basis for the construction of vertically stacked active-matrix displays, which should facilitate the commercial development of skin-like displays in wearable electronics.

Pubmed ID: 39060257

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Associated grants

  • Agency: National Natural Science Foundation of China (National Science Foundation of China),
    Id: 62225403, 62375046, 51973024, and U19A2091
  • Agency: Natural Science Foundation of Jilin Province (Natural Science Foundation of Jilin Province of China),
    Id: 20230101113JC
  • Agency: Department of Science and Technology of Jilin Province (Jilin Province Science and Technology Department),
    Id: 20230201058GX

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