eCommons

 

TWO-DIMENSIONAL MATERIALS: FROM BERRY CURVATURE TO WRAPPING A MICROSPHERE

Other Titles

Abstract

The study of atomically-thin, truly two-dimensional (2D) materials has morphed into its own field since the experimental isolation of graphene and similar 2D materials in 2005. Graphene, as a single layer of carbon atoms with a unique band structure, and monolayer molybdenum disulfide (MoS2), a three-atom-thick semiconductor, have been of particular interest both for the physics accessible in 2D crystals and the applications achievable with highly flexible materials. This dissertation presents a variety of experiments exploring the optoelectronic and mechanical properties of both monolayer MoS2 and graphene. In particular, we present three studies: (1) the experimental realization of the valley Hall effect, an effect based on the Berry curvature of a material’s energy bands, in monolayer MoS2; (2) methods for directly measuring the bending stiffness of graphene (and related 2D materials); and (3) an investigation of the wrapping of micro-spherical droplets by monolayer MoS2. We conclude by discussing the future outlook of both "valleytronics" and microencapsulation by 2D materials.

Journal / Series

Volume & Issue

Description

Sponsorship

Date Issued

2018-08-30

Publisher

Keywords

Graphene; bending stiffness; molybdenum disulfide; valley Hall effect; wrapping; Physics; 2D materials; Nanotechnology; Nanoscience

Location

Effective Date

Expiration Date

Sector

Employer

Union

Union Local

NAICS

Number of Workers

Committee Chair

McEuen, Paul L.

Committee Co-Chair

Committee Member

Arias, Tomas A.
Ralph, Daniel C.

Degree Discipline

Physics

Degree Name

Ph. D., Physics

Degree Level

Doctor of Philosophy

Related Version

Related DOI

Related To

Related Part

Based on Related Item

Has Other Format(s)

Part of Related Item

Related To

Related Publication(s)

Link(s) to Related Publication(s)

References

Link(s) to Reference(s)

Previously Published As

Government Document

ISBN

ISMN

ISSN

Other Identifiers

Rights

Attribution-NonCommercial-ShareAlike 4.0 International

Types

dissertation or thesis

Accessibility Feature

Accessibility Hazard

Accessibility Summary

Link(s) to Catalog Record