Yuan Jiaren, Chen Yuanping, Xie Yuee, Zhang Xiaoyu, Rao Dewei, Guo Yandong, Yan Xiaohong, Feng Yuan Ping, Cai Yongqing
College of Science, Jiangsu University, 212013 Zhenjiang, China.
School of Material Science and Engineering, Jiangsu University, 212013 Zhenjiang, China.
Proc Natl Acad Sci U S A. 2020 Mar 24;117(12):6362-6369. doi: 10.1073/pnas.1920036117. Epub 2020 Mar 11.
Shrinking the size of a bulk metal into nanoscale leads to the discreteness of electronic energy levels, the so-called Kubo gap δ. Renormalization of the electronic properties with a tunable and size-dependent δ renders fascinating photon emission and electron tunneling. In contrast with usual three-dimensional (3D) metal clusters, here we demonstrate that Kubo gap δ can be achieved with a two-dimensional (2D) metallic transition metal dichalcogenide (i.e., 1T'-phase MoTe) nanocluster embedded in a semiconducting polymorph (i.e., 1H-phase MoTe). Such a 1T'/1H MoTe nanodomain resembles a 3D metallic droplet squeezed in a 2D space which shows a strong polarization catastrophe while simultaneously maintaining its bond integrity, which is absent in traditional δ-gapped 3D clusters. The weak screening of the host 2D MoTe leads to photon emission of such pseudometallic systems and a ballistic injection of carriers in the 1T'/1H/1T' homojunctions which may find applications in sensors and 2D reconfigurable devices.
将块状金属缩小到纳米尺度会导致电子能级的离散化,即所谓的久保能隙δ。具有可调谐且依赖于尺寸的δ的电子特性的重整化产生了迷人的光子发射和电子隧穿。与通常的三维(3D)金属簇不同,在这里我们证明,嵌入半导体多晶型物(即1H相MoTe)中的二维(2D)金属过渡金属二硫属化物(即1T'相MoTe)纳米簇可以实现久保能隙δ。这样的1T'/1H MoTe纳米域类似于挤压在二维空间中的三维金属液滴,它显示出强烈的极化灾难,同时保持其键的完整性,这在传统的具有δ能隙的三维簇中是不存在的。主体二维MoTe的弱屏蔽导致这种准金属系统的光子发射以及在1T'/1H/1T'同质结中的载流子弹道注入,这可能在传感器和二维可重构器件中得到应用。