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van der Waals oxide heteroepitaxy for soft transparent electronics

机译:范德瓦耳斯氧化物异质外延的柔软透明的电子产品

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摘要

The quest for multifunctional, low-power and environment friendly electronics has brought research on materials to the forefront. For instance, as the emerging field of transparent flexible electronics is set to greatly impact our daily lives, more stringent requirements are being imposed on functional materials. Inherently flexible polymers and metal foil templates have yielded limited success due to their incompatible high-temperature growth and non-transparency, respectively. Although the epitaxial-transfer strategy has shown promising results, it suffers from tedious and complicated lift-off-transfer processes. The advent of graphene, in particular, and 2D layered materials, in general, with ultrathin scalability has revolutionized this field. Herein, we review the direct growth of epitaxial functional oxides on flexible transparent mica substratesviavan der Waals heteroepitaxy, which mitigates misfit strain and substrate clamping for soft transparent electronics applications. Recent advances in practical applications of flexible and transparent electronic elements are discussed. Finally, several important directions, challenges and perspectives for commercialization are also outlined. We anticipate that this promising strategy to build transparent flexible optoelectronic devices and improve their performance will open up new avenues for researchers to explore.
机译:追求多功能、低功耗和环境友好的电子产品了材料研究前沿。实例,如透明的新兴领域灵活的电子产品将极大地影响我们日常生活中,更严格的要求对功能材料。灵活的聚合物和金属箔模板取得了有限的成功由于他们不相容的高温增长和不透明性,分别。策略显示了有前景的结果,它受到损害lift-off-transfer从繁琐和复杂流程。和二维层状材料,一般来说,超薄可伸缩性这发生了革命性变化字段。外延功能氧化物灵活异质外延,仿佛不是那么不合群和压力衬底柔软透明的夹紧电子产品的应用。灵活和实际应用透明的电子元件进行了讨论。最后,几个重要方向,挑战商业化和观点也概述了。构建透明灵活的策略光电设备和提高自己性能将开辟新的途径研究人员探索。

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