...
首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Designed Synthesis and Structure-Property Relationships of Kinetically Stable [(PbSe)(1+delta)](m)(VSe2)(1) (m=1, 2, 3, 4) Heterostructures
【24h】

Designed Synthesis and Structure-Property Relationships of Kinetically Stable [(PbSe)(1+delta)](m)(VSe2)(1) (m=1, 2, 3, 4) Heterostructures

机译:设计了动力学稳定的合成和结构性质关系[(PBSE)(1 +δ)](m)(vse2)(1)(m = 1,2,3,4)异质结构

获取原文
获取原文并翻译 | 示例
           

摘要

Understanding structure-function relationships is essential to guide the designed synthesis of novel materials with emergent properties. In this work, we targeted the metastable heterostructures [(PbSe)(1+delta)](m)(VSe2)(1), where m = 1-4, to test if the charge density wave (CDW) transition temperature increases as the layer thickness separating the VSe2 monolayers increases, as was observed when SnSe was the separating layer. The modulated elemental reactant approach was used to make the targeted products. This approach involves depositing elemental layers in which the number of atoms of each element per square angstrom in Pb vertical bar Se and V vertical bar Se bilayers equals the number calculated for a rock salt-structured PbSe bilayer and a CdI r structured VSe2 slab, respectively. Layered elemental precursors with the correct composition and nanoarchitecture for each of the targeted compounds were prepared by repeatedly depositing a single V vertical bar Se bilayer followed by m Pb vertical bar Se bilayers. Precursors close to the targeted number of atoms per unit area were determined via X-ray fluorescence and the correct nanoarchitecture self-assembled to the targeted compounds during a low-temperature anneal. Resistivity measurements show that the number of PbSe layers per repeat unit (m) does not change the charge density transition onset temperature as previously reported for the analogous [(SnSe)(1+delta)](m)(VSe2)(1) compounds. The temperature dependence and absolute values of the resistivity of the m = 3 and 4 heterostructures scale as expected for composite behavior. The difference in the thickness dependence of the CDW transition between the PbSe- and SnSe-containing compounds highlights that the identity of the intervening rock salt layer plays a more important role in modifying the CDW onset temperature than the separation of the VSe2 layers.
机译:了解结构功能关系对于指导设计的新材料与紧急性质的合成至关重要。在这项工作中,我们靶向亚稳异质结构[(PBSE)(1 +Δ)](m)(vse2)(1),其中M = 1-4,以测试电荷密度波(CDW)转变温度是否增加分离VSE2单层的层厚度增加,当SNSE是分离层时观察到的那样,如图所示。调节的元素反应性方法用于制备靶向产物。该方法涉及沉积元素层,其中PB垂直条SE和V垂直条SE双层在Pb垂直条SE和V垂直条SE双层的每个元件的原子数等于岩石结构的PBSE双层和CDI R结构vse2板计算的数量。通过重复沉积单个V垂直条SE双层,然后将M PB立式棒SE双层制备具有正确的组合物和纳米建筑学的分层元素前体。通过X射线荧光测定接近目标原子数的靶向原子的前体,并在低温退火期间通过X射线荧光和正确的纳米建筑自组装到靶向化合物。电阻率测量表明,每个重复单元(M)的PBSE层数不改变以前报道的类似[(SNSE)(1 +δ)](M)(Vse2)(1)化合物的电荷密度过渡开始温度。 M = 3和4个异质结构的温度依赖性和绝对值如复合行为所预期的。 CDW转变在含PBSE和SNSE的化合物之间的厚度依赖性的差异突出显示中间岩盐层的身份在改变CDW起始温度比VSE2层的分离中起着更重要的作用。

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