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Efficient growth and characterization of one-dimensional transition metal tellurides inside carbon nanotubes

机译:高效的增长和表征一维过渡金属碲化在碳纳米管

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Atomically thin one-dimensional (1D) van der Waals wires of transition metal monochalocogenides (TMMs) have been anticipated as promising building blocks for integrated nanoelectronics. While reliable production of TMM nanowires has eluded scientists over the past few decades, we finally demonstrated a bottom-up fabrication of MoTe nanowires inside carbon nanotubes (CNTs). Still, the current synthesis method is based on vacuum annealing of reactive MoTe2, and limits access to a variety of TMMs. Here we report an expanded framework for high-yield synthesis of the 1D tellurides including WTe, an previously unknown family of TMMs. Experimental and theoretical analyses revealed that the choice of suitable metal oxides as a precursor provides a useful yield for their characterization. These TMM nanowires exhibit a significant optical absorption in the visible-light region. More important, electronic properties of CNTs can be tuned by encapsulating different TMM nanowires.
机译:自动瘦一维(1 d)范德瓦耳斯过渡金属monochalocogenides电线(预防)预期的承诺集成电路的构建块。而可靠的生产TMM纳米线我们躲避过去几十年里,科学家最后演示了一个自下而上的加工MoTe纳米线在碳纳米管(碳纳米管)。然而,目前的合成方法是基于真空退火的活性MoTe2和限制访问各种各样的预防维修。扩大高收益的综合框架一维碲化包括WTe,之前未知的预防维修的家庭。理论分析表明的选择作为前体提供了一个合适的金属氧化物有用的屈服特性。TMM纳米线表现出显著的光吸收在可见光区域。重要的是,碳纳米管的电子性质调通过封装不同的TMM纳米线。

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