...
首页> 外文期刊>Nanoscale >Graphene-based hybrid structures combined with functional materials of ferroelectrics and semiconductors
【24h】

Graphene-based hybrid structures combined with functional materials of ferroelectrics and semiconductors

机译:结合石墨烯混合结构功能材料的铁电体半导体

获取原文
获取原文并翻译 | 示例

摘要

Fundamental studies and applications of 2-dimensional (2D) graphene may be deepened and broadened via combining graphene sheets with various functional materials, which have been extended from the traditional insulator of SiO2 to a versatile range of dielectrics, semiconductors and metals, as well as organic compounds. Among them, ferroelectric materials have received much attention due to their unique ferroelectric polarization. As a result, many attractive characteristics can be shown in graphene/ ferroelectric hybrid systems. On the other hand, graphene can be integrated with conventional semiconductors and some newly-discovered 2D layered materials to form distinct Schottky junctions, yielding fascinating behaviours and exhibiting the potential for various applications in future functional devices. This review article is an attempt to illustrate the most recent progress in the fabrication, operation principle, characterization, and promising applications of graphene-based hybrid structures combined with various functional materials, ranging from ferroelectrics to semiconductors. We focus on mechanically exfoliated and chemical-vapor-deposited graphene sheets integrated in numerous advanced devices. Some typical hybrid structures have been highlighted, aiming at potential applications in non-volatile memories, transparent flexible electrodes, solar cells, photodetectors, and so on.
机译:基本的研究和应用二维(2 d)石墨烯可能加深,通过将石墨烯与扩大各种功能材料,已被从传统的二氧化硅绝缘子扩展一个多才多艺的电介质,半导体和金属,以及有机食品化合物。得到太多的关注,由于其独特的吗铁电极化。可以显示在有吸引力的特点石墨烯/铁电混合动力系统。另一方面,石墨烯可以集成传统的半导体和一些新发现的二维层状材料形成不同的肖特基结,产生引人入胜的行为和表现出的潜力在未来的功能的各种应用程序设备。说明最近的进展制造、操作原理、特性和应用前景结合石墨烯混合结构各种功能材料,从铁电体半导体。机械地清新,和chemical-vapor-deposited石墨烯在许多先进的设备集成。典型的混合结构突出显示,针对潜在的应用在非易失性记忆,透明灵活的电极、太阳能细胞,光电探测器,等等。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号