Black phosphorus transistors with van der Waals-type electrical contacts

Black phosphorus transistors with van der Waals-type electrical contacts
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具有范德瓦尔斯型电触点的黑磷晶体管

DOI:
10.1039/c7nr03941g
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发表时间:
2017
期刊:
影响因子:
6.7
通讯作者:
Lu Jing
Lu Jing
中科院分区:
材料科学2区
文献类型:
--
作者:
Quhe Ruge;Wang Yangyang;Ye Meng;Zhang Qiaoxuan;Yang Jie;Lu Pengfei;Lei Ming;Lu Jing

文献摘要

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Contact engineering is a possible solution to decrease the pervasive Schottky barrier in a two dimensional (2D) material transistor with bulk metal electrodes. In this paper, two kinds of typical van der Waals (vdW)-type electrical contacts (a 2D metal contact and a 2D material/bulk metal hybrid contact) in monolayer (ML) black phosphorus (BP) transistors are investigated by ab initio energy band calculations and quantum transport simulations. Compared with the traditional bulk metal Ni contact, the gate electrostatic control is significantly improved by using both 2D graphene and borophene electrodes featuring a decrease of 30–50% in the subthreshold swing and an increase by a factor of 4–7 in the on-state current due to the depressed metal induced gap states and reduced screening of the 2D metal electrodes to the gate. In contrast, graphene insertion between the Ni electrode and ML BP shows only a slight improvement in the gate electrostatic control ability and BN insertion shows almost no improvement. The higher efficiency using the 2D metal contact than the 2D material/bulk metal hybrid contact in improving the ML BP FET device performance also provides helpful guidance in the selection of vdW-type electrical contacts of other 2D transistors.