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首页> 外文期刊>Nanoscale >Recent progress in 2D hybrid heterostructures from transition metal dichalcogenides and organic layers: properties and applications in energy and optoelectronics fields
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Recent progress in 2D hybrid heterostructures from transition metal dichalcogenides and organic layers: properties and applications in energy and optoelectronics fields

机译:最近的进展2 d混合异质结构过渡金属dichalcogenides和有机在能源和层:属性和应用光电子学领域

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摘要

Atomically thin transition metal dichalcogenides (TMDs) present extraordinary optoelectronic, electrochemical, and mechanical properties that have not been accessible in bulk semiconducting materials. Recently, a new research field, 2D hybrid heteromaterials, has emerged upon integrating TMDs with molecular systems, including organic molecules, polymers, metal-organic frameworks, and carbonaceous materials, that can tailor the TMD properties and exploit synergetic effects. TMD-based hybrid heterostructures can meet the demands of future optoelectronics, including supporting flexible, transparent, and ultrathin devices, and energy-based applications, offering high energy and power densities with long cycle lives. To realize such applications, it is necessary to understand the interactions between the hybrid components and to develop strategies for exploiting the distinct benefits of each component. Here, we provide an overview of the current understanding of the new phenomena and mechanisms involved in TMD/organic hybrids and potential applications harnessing such valuable materials in an insightful way. We highlight recent discoveries relating to multicomponent hybrid materials. Finally, we conclude this review by discussing challenges related to hybrid heteromaterials and presenting future directions and opportunities in this research field.
机译:过渡金属dichalcogenides自动薄(tmd)呈现非凡的光电子,电化学和机械性能没有散装的半导体材料。混合heteromaterials,出现了与分子系统集成tmd,包括有机分子、聚合物、有机框架和碳质材料,可以定制TMD和属性利用协同效应。异质结构能够满足未来的需求光电子学,包括支持灵活,透明的,和超薄设备能源为基础的应用程序,提供高的能量功率密度和长周期的生活。意识到这样的应用程序,它是必要的理解之间的交互混合组件和开发策略利用不同的好处组件。当前对新现象的理解,参与TMD /有机混合动力和机制潜在的应用程序利用这种宝贵的材料以一种深刻的方式。最近的发现与多组分混合材料。审查通过讨论有关混合的挑战heteromaterials并提出未来的发展方向在这个研究领域和机会。

著录项

  • 来源
    《Nanoscale》 |2022年第30期|10648-10689|共42页
  • 作者

    Ji Jaehoon; Choi Jong Hyun;

  • 作者单位

    Purdue Univ;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
  • 关键词

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