Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle

Thesis (B.A.)--Boston University. University Professors Program Senior theses. === PLEASE NOTE: Boston University Libraries did not receive an Authorization To Manage form for this thesis. It is therefore not openly accessible, though it may be available by request. If you are the author or principa...

Full description

Bibliographic Details
Main Author: Alzaim, Safa
Language:en_US
Published: Boston University 2018
Online Access:https://hdl.handle.net/2144/27575
id ndltd-bu.edu-oai-open.bu.edu-2144-27575
record_format oai_dc
spelling ndltd-bu.edu-oai-open.bu.edu-2144-275752019-01-08T15:43:41Z Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle Alzaim, Safa Thesis (B.A.)--Boston University. University Professors Program Senior theses. PLEASE NOTE: Boston University Libraries did not receive an Authorization To Manage form for this thesis. It is therefore not openly accessible, though it may be available by request. If you are the author or principal advisor of this work and would like to request open access for it, please contact us at open-help@bu.edu. Thank you. In order to investigate the behavior of nanostructures during the widely-used process of ion bombardment, the mechanisms of ion bombardment on nanostructures were studied. Nanostructures were fabricated into silicon wafers. The fabrication process involved writing with scanning electron microscopy (SEM) a pattern in poly(methyl methacrylate) (PMMA) polymer resist layered over the silicon, removing the written PMMA in development with methyl isobutyl ketone (MIBK) and isopropanol, layering the wafer with chromium in thermal evaporation, removing the PMMA and its chromium covering with acetone, etching the chromium of the pattern with reactive ion etching, and finally removing the chromium with an etching reagent. The final structures were ion bombarded under 3*10^-3 torr for three hours at 1000 V and 40mA, with Argon; the bombarding was performed at degree angles of 60 and normal incidence. A sample without the fabrication of structures is bombarded at normal incidence as well. One sample with fabricated structures is studied without bombardment as an experimental control. The results were erosion of the bombarded structures, cones and dots. 2031-01-02 2018-03-20T17:39:54Z 2008 2008 Thesis/Dissertation https://hdl.handle.net/2144/27575 en_US Boston University
collection NDLTD
language en_US
sources NDLTD
description Thesis (B.A.)--Boston University. University Professors Program Senior theses. === PLEASE NOTE: Boston University Libraries did not receive an Authorization To Manage form for this thesis. It is therefore not openly accessible, though it may be available by request. If you are the author or principal advisor of this work and would like to request open access for it, please contact us at open-help@bu.edu. Thank you. === In order to investigate the behavior of nanostructures during the widely-used process of ion bombardment, the mechanisms of ion bombardment on nanostructures were studied. Nanostructures were fabricated into silicon wafers. The fabrication process involved writing with scanning electron microscopy (SEM) a pattern in poly(methyl methacrylate) (PMMA) polymer resist layered over the silicon, removing the written PMMA in development with methyl isobutyl ketone (MIBK) and isopropanol, layering the wafer with chromium in thermal evaporation, removing the PMMA and its chromium covering with acetone, etching the chromium of the pattern with reactive ion etching, and finally removing the chromium with an etching reagent. The final structures were ion bombarded under 3*10^-3 torr for three hours at 1000 V and 40mA, with Argon; the bombarding was performed at degree angles of 60 and normal incidence. A sample without the fabrication of structures is bombarded at normal incidence as well. One sample with fabricated structures is studied without bombardment as an experimental control. The results were erosion of the bombarded structures, cones and dots. === 2031-01-02
author Alzaim, Safa
spellingShingle Alzaim, Safa
Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
author_facet Alzaim, Safa
author_sort Alzaim, Safa
title Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
title_short Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
title_full Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
title_fullStr Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
title_full_unstemmed Studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
title_sort studies of nanostructure fabrication and morphology development during ion bombardment as a function of bombardment angle
publisher Boston University
publishDate 2018
url https://hdl.handle.net/2144/27575
work_keys_str_mv AT alzaimsafa studiesofnanostructurefabricationandmorphologydevelopmentduringionbombardmentasafunctionofbombardmentangle
_version_ 1718812721771708416