eCommons

 

USING THE COUPLED MICRO-REACTOR/UHV SURFACE ANALYSIS SYSTEM AND THE QCM-BASED VISCOUS FLOW REACTOR TO STUDY AREA-SELECTIVE DEPOSITION

Other Titles

Abstract

Patterning during a nanofabrication process could be designed with a variety of techniques to manifest spatial control of chemical reactions and it is categorized as a top-down or a bottom-up process in general. While the state-of-the-art top-down techniques meet challenges, a bottom-up deposition process shows advantages in some aspects. In our research, we focus our work on modified process of atomic layer deposition (ALD) and chemical vapor deposition (CVD) to achieve area-selective deposition (ASD). We have been trying to find a pathway to achieve ASD with the formation of a reversible blocking layer exclusively on the non-growth surface. During the deposition process, a third gas-phase molecule, what we refer to as “co-adsorbate”, is introduced to compete for adsorption sites on the non-growth surface while leave precursor adsorption unimpeded on the growth surface. It is a very promising approach mainly due to the self-aligning and high-throughput essence.

Journal / Series

Volume & Issue

Description

109 pages

Sponsorship

Date Issued

2021-08

Publisher

Keywords

ALD; ASD; CVD; QCM; XPS

Location

Effective Date

Expiration Date

Sector

Employer

Union

Union Local

NAICS

Number of Workers

Committee Chair

Engstrom, James R.

Committee Co-Chair

Committee Member

DiStasio, Jr, Robert A.

Degree Discipline

Chemical Engineering

Degree Name

M.S., Chemical Engineering

Degree Level

Master of Science

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

Rights URI

Types

dissertation or thesis

Accessibility Feature

Accessibility Hazard

Accessibility Summary

Link(s) to Catalog Record