首页> 外文期刊>RSC Advances >Chemical transformation of Te into new ternary phase PbmCunTem+n nanorods and their surface atom diffusion and optical properties
【24h】

Chemical transformation of Te into new ternary phase PbmCunTem+n nanorods and their surface atom diffusion and optical properties

机译:TE进入新型三元相PBMCUNTEM + N纳米棒及其表面原子扩散及光学性能的化学转化

获取原文
获取外文期刊封面目录资料

摘要

A new stable phase of ternary Pb _( m ) Cu _( n ) Te _( m + n ) with rough surface, including one-dimensional (1D) bamboo-like shaped and curved nanorods with short branches, was first synthesized using Te as a sacrificial template. The structure does not exist in the bulk Cu _(2) Te–PbTe phase diagram. It is revealed that the optimal Pb ~(2+) /Cu ~(2+) chemical reactivity synergistic effect can preserve the initial shape of the Te nanorod parent template, which involves small volume changes and secondary nucleation phenomenon along the entire length of the nanorods. Furthermore, the diffusion of surface atoms and a surface pre-melting on the short branches of the nanorods were observed upon in situ electron-beam irradiation. The average Cu atom diffusion distance calculated (3 × 10 ~(?11) m s ~(?1) ) is higher than the reported value (1.34 × 10 ~(?12) m s ~(?1) ) in Cu _(2) O at 373 K, which is attributed to the local high temperature created by the incident electron irradiation and large surface to volume ratio of the nanomaterials. In addition, the Pb _( m ) Cu _( n ) Te _( m + n ) nanorods exhibit well-defined and size-dependent optical band gaps ( E _(g) ) in the near-IR region. We envision that the Te template strategy is general and robust and offers easy access to other new phase ternary PbTe-based nanomaterials via carefully balancing the chemical reactivity of the precursor.
机译:具有粗糙表面的三元PB _(M)Cu _(n)Te _(n)Te _(M + N)的新稳定相,包括具有短分支的一维(1d)竹状成形和弯曲的纳米棒,首先使用TE合成作为牺牲模板。该结构不存在于批量Cu _(2)TE-P​​BTE相图中。揭示了最佳PB〜(2+)/ Cu〜(2+)化学反应性协同效应可以保持TE Nanorod母体模板的初始形状,这涉及小体积变化和沿整个长度的次要成核现象纳米棒。此外,在原位电子束照射时观察到表面原子的扩散和在纳米棒的短分支上预热。计算的平均Cu原子扩散距离(3×10〜(α1)ms〜(α1))高于报告的值(1.34×10〜(Δ12)Cu _(2)中的ms〜(?1))(2 )o在373 k处,归因于由入射电子照射和大表面造成的局部高温和纳米材料的体积比。另外,PB _(m)Cu _(n)TE _(M + N)纳米码在近红外区域中表现出良好定义的和尺寸相关的光学频带间隙(E _(g))。我们设想TE模板策略是一般的且稳健的,通过仔细平衡前体的化学反应性,可以轻松地访问基于新的基于三元PBTE的纳米材料。

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