Christopher Rouleau Senior R&D Staff Contact ROULEAUCM@ORNL.GOV All Publications A Facile High-speed Vibration Milling Method to Water-disperse Single- walled Carbon Nanohorns Anomalous oxidation states in oxide multilayers for fuel cell applications... Cumulative and Continuous Laser Vaporization Synthesis of Single Wall Carbon Nanotubes and Nanohorns... Pulsed Laser CVD Investigations of Single-Wall Carbon Nanotube Growth Dynamics... Altering the catalytic activity of thin metal catalyst films for controlled growth of chemical vapor deposited vertically aligned carbon nanotube arrays Interfaces in Perovskite Heterostructures... Excimer Laser Etching... Real-Time Imaging of Vertically Aligned Carbon Nanotube Array Growth Kinetics... In situ time-resolved measurements of carbon nanotube and nanohorn growth Tailoring of Single Walled Carbon Nanohorns for Hydrogen Storage and Catalyst Supports... Generalized Ellipsometry in Unusual Configurations Normal-Incidence Generalized Ellipsometry using the Two-Modulator Generalized Ellipsometry Microscope Nonequilibrium Interlayer Transport in Pulsed Laser Deposition R and D of RABiTS-Based Coated Conductors: Conversion of ex situ YBCO Superconductor Using a Novel Pulsed Electron-Beam Deposited Precursor Pulsed Electron Deposition of Fluorine-Based Precursors for YBa<sub>2</sub>Cu<sub>3</sub>O<sub>7-<i>x</i></sub> Coated Conductors Nanoscale effects on the ionic conductivity in highly textured YSZ thin films A Laser-Deposition Approach to Compositional-Spread Discovery of Materials on Conventional Sample Sizes Strong polarization enhancement in asymmetric three-component ferroelectric superlattices Thermal stability of epitaxial SrRuO<sub>3</sub> films as a function of oxygen pressure Pagination First page « First Previous page ‹‹ … Page 4 Page 5 Current page 6 Key Links Curriculum Vitae ORCID Organizations Physical Sciences Directorate User Facilities Center for Nanophase Materials Sciences Nanomaterials Synthesis Section Functional Hybrid Nanomaterials Group
Research Highlight Deep Learning with in situ Diagnostics Reveals Non-trivial Correlations to Film Growth