• 검색 결과가 없습니다.

Two-dimensional heterostructures for All-2D Electronics

N/A
N/A
Protected

Academic year: 2021

Share "Two-dimensional heterostructures for All-2D Electronics"

Copied!
1
0
0

로드 중.... (전체 텍스트 보기)

전체 글

(1)

100 한국진공학회 TST-003

Two-dimensional heterostructures for All-2D Electronics

이관형

연세대학교 신소재공학과

Among various two-dimensional (2D) materials, 2D semiconductors and insulators have attracted a great deal of interest from nanoscience community beyond graphene, due to their attractive and unique properties. Such excellent characteristics have triggered highly active researches on 2D materials, such as hexagonal boron nitride (hBN), molybdenum disulfide (MoS2), and tungsten diselenide (WSe2). New physics observed in 2D semiconductors allow for development of new-concept devices. Especially, these emerging 2D materials are promising candidates for flexible and transparent electronics. Recently, van der Waals heterostructures (vdWH) have been achieved by putting these 2D materials onto another, in the similar way to build Lego blocks. This enables us to investigate intrinsic physical properties of atomically-sharp heterostructure interfaces and fabricate high performance optoelectronic devices for advanced applications. In this talk, fundamental properties of various 2D materials will be introduced, including growth technique and influence of defects on properties of 2D materials. We also fabricate high performance electronic/optoelectronic devices of vdWH, such as transistors, memories, and solar cells. The device platform based on van der Waals heterostructures show huge improvement of devices performance, high stability and transparency/flexibility due to unique properties of 2D materials and ultra-sharp heterointerfaces. Our work paves a new way toward future advanced electronics based on 2D materials.

참조

관련 문서

The results obtained from this paper will provide important physical properties of opto-electronic devices based on two dimensional materials, and will be

7 Effect of annealing temperature on the tensile properties of high manganese austenitic stainless steel with two phases of reversed austenite and

The improvement factors of the performance showed significant increase in muscle strength, muscle endurance, cardiovascular endurance, power, agility and

INTRODUCTION Various kinds of optical polymers with a high refractive index (high-n) and a low birefringence (Dn) combined with good optical transparency and high thermal

Performance evaluation of Volume PTV based on Affine Performance evaluation of Volume PTV based on Affine Performance evaluation of Volume PTV based on Affine Performance

- Apply the concept of the control volume to derive equations for the conservation of mass for steady one- and two-dimensional flows.. - Derive the Reynolds transport

Laminar flow through a tube (pipe) of constant diameter → Poiseuelle flow.. for incompressible

Improvement of the Performance and Stability of Oxide Semiconductor Thin-Film Transistors Using Double-Stacked Active Layers.. Metal oxide semiconductor