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1.
Materials for nonlinear optics: Semicontinuous gold films and fast saturable absorbers
by Piredda, Giovanni, Ph.D.  University of Rochester. 2008: 156 pages; 3326518.
3.
Investigations of redox-labeled silica and gold nanoparticles in solution and as films on electrodes
by Beasley, Christopher A., Ph.D.  The University of North Carolina at Chapel Hill. 2010: 163 pages; 3418706.
4.
Prediction Methods for Semi-continuous Data with Applications in Climate Science
by Popuri, Sai Kumar, Ph.D.  University of Maryland, Baltimore County. 2017: 156 pages; 10683046.
5.
Magnetic nanotubes and nanoporous gold nanowire sensors
by Liu, Zhu, Ph.D.  The Johns Hopkins University. 2008: 119 pages; 3309802.
6.
Phthalocyanine Growth Dependence on Gold Thin Film Roughness
by Corona, Joshua A., M.S.  California State University, Long Beach. 2019: 51 pages; 13426060.
7.
Copper Phthalocyanine Crystal Growth Dependence on Gold Roughness
by Escobar, Erika, M.S.  California State University, Long Beach. 2017: 59 pages; 10265048.
8.
Nanoparticle-Based Surface Modifications for Microtribology Control and Superhydrophobicity
by Hurst, Kendall Matthew, Ph.D.  Auburn University. 2010: 340 pages; 3446237.
9.
Optical Properties of Plasmonic Nanostructures for Bio-Imaging and Bio-Sensing Applications
by Kravets, Vira V., Ph.D.  University of Colorado at Colorado Springs. 2017: 106 pages; 10282081.
10.
Tuning coercivity via iron chains in phthalocyanine thin films
by Werber, Mathew Stephen, M.S.  California State University, Long Beach. 2013: 89 pages; 1523066.
11.
Poly(Ionic Liquid) Thin Films via Surface-Initiated Ring-Opening Metathesis Polymerization
by Njoroge, Ian Gitata, Ph.D.  Vanderbilt University. 2017: 244 pages; 13835169.
12.
Near-field optical investigation of vanadium dioxide thin films
by Torrico, Raul, M.S.  California State University, Long Beach. 2014: 60 pages; 1591618.
13.
14.
Molecular Interactions Between Pre-Formed Ligand-Capped Gold Nanoparticles and Two Dimensional Atomic Layered Materials
by Low, Serena Sin Man, M.S.  California State University, Long Beach. 2017: 87 pages; 10605217.
16.
Magnetic spin dynamics in iron phthalocyanine thin films
by Byrne, Matthew P., M.S.  California State University, Long Beach. 2016: 70 pages; 10167519.
17.
Effect of conformational change on nanoscale friction behavior of organic thin films
by Kanaga Subramanian, Kanaga Karuppiah, Ph.D.  Iowa State University. 2008: 188 pages; 3343999.
18.
Trap states dependence on morphology of zinc phthalocyanine thin films
by Karadayi, Alev Eren, M.S.  California State University, Long Beach. 2011: 71 pages; 1504487.
19.
Structurally Induced Magnetic Phase Transition in Manganese Phthalocyanine Thin Films
by Nguyen, Anh Thi Hong, M.S.  California State University, Long Beach. 2019: 78 pages; 22583494.
21.
Magnetic properties of manganese phthalocyanine thin films
by Duong, Larry Le Ngoc, M.S.  California State University, Long Beach. 2016: 53 pages; 10240059.
22.
Charakterisierung und Funktionalisierung von Filmen aus rekombinanten Spinnenseidenproteinen
by SpieƟ, Kristina, Ph.D.  Universitaet Bayreuth (Germany). 2012: 196 pages; 27610798.
23.
Understanding gold nanoisland formation using transport measurement
by Joshi, Toyanath, M.S.  California State University, Long Beach. 2010: 92 pages; 1490392.
24.
Magnetic relaxation in iron phthalocyanine thin films
by Ekstrand, Paul Daniel, M.S.  California State University, Long Beach. 2015: 89 pages; 1604875.
25.
Trap depth dependence on deposition temperature in copper phthalocyanine thin films from photocurrent
by Guerra, Jorge L., M.Sc.  California State University, Long Beach. 2012: 168 pages; 1517636.
26.
Investigation of Organic Thin Films for Application in Electro-optic Devices
by Jobanputra, Manish C., M.S.  University of Cincinnati. 2002: 88 pages; 10857218.
27.
Morphological characteristics of iron phthalocyanine thin films and magnetic properties of quasi one-dimensional iron chains
by Silverstein, Evan Asher, M.S.  California State University, Long Beach. 2010: 69 pages; 1486464.
29.
Molecular potentials in organic thin films for electronic devices
by Topham, Benjamin J., Ph.D.  Princeton University. 2012: 200 pages; 3522562.
30.
Magnesium Diboride Devices and Applications
by Melbourne, Thomas, Ph.D.  Temple University. 2018: 141 pages; 10689307.
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