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Abrahamson, J. P., and R. L. Vander Wal, (2018). Carbon Nanostructure Curvature Induced from the Rapid Release of Sulfur upon Laser Heating, Journal of Carbon Research, 4(2), 33, doi:10.3390/c4020033.
Abrahamson, J. P., R. L. Vander Wal, P. Gokulakrishnan, R. Joklik, and C. Fuller, (2018). Laser Carbon Interactions, Materials for Energy, Efficiency and Sustainability: TechConnect Briefs 2018, pp 105-108.
Apicella, B., A. Ciajolo, A. Tregrossi, J. P. Abrahamson, R. L. Vander Wal, and C. Russo,(2018). HRTEM and EELS investigations of flame-formed soot nanostructure, Fuel, Volume 225, Pages 218-224, ISSN 0016-2361,
Ray, P., E. Xu, V. H. Crespi, J. V. Badding, and A. D. Lueking, (2018). In situ vibrational spectroscopy of adsorbed nitrogen in porous carbon materials, Physical Chemistry Chemical Physics, 20 (22), pp 15411-15418.
Singh, M., M. Srilomsak, Y. Wang, K. Hanamura, K., and R. Vander Wal, (2018). Nanostructure Changes in Diesel Soot during NO2–O2 Oxidation under Diesel Particulate Filter-like Conditions toward Filter Regeneration, International Journal of Engine Research,
Vander Wal, R., A. Sengupta, E. Musselman, and G. Skoptsov, (2018). Microwave-driven Plasma-mediated Methane Cracking: Product Carbon Characterization, Journal of Carbon Research, 4, 61, doi:10.3390/c4040061.
Adu, K., D. Ma, Y. Wang, M. Spencer. R. Rajagopalan, C-Y. Wang, and C. Randall, (2017), Flexible robust binder-free carbon nanotube membranes for solid state and microcapacitor application, Nanotechnology, Volume 29, Number 3.
Han, Y., M. Liu, K. Li, Q. Sun, C. Song, G. Zhang, Z. Zhang, and X. Guo, (2017). Cu2O Mediated Synthesis of Metal−Organic Framework UiO-66 in Nanometer Scale, Cryst. Growth Des., 17, 685−692, DOI: 10.1021/acs.cgd.6b01533.
Wang, C., T. Huddle, C.-H. Huang, W. Zhu, R. L. Vander Wal, E. Lester, and J. P. Mathews, (February 21, 2017). Improved Quantification of Curvature in High-Resolution Transmission Electron Microscopy Lattice Fringe Micrographs of Soots, Carbon, ISSN 0008-6223.
Xue, J., G. Dou, E. Ziade, and J. L. Goldfarb, (2017). “Integrating Sustainable Biofuel and Silver Nanomaterial Production for in situ Upgrading of Cellulosic Biomass Pyrolysis.” Energy Conversion & Management. 142, 143-252.
Dai, C. Y., A. F. Zhang, M. Liu, J. J. Li, F. Y. Song, C. S. Song, and X. W. Guo, (2016). Facile One-step Synthesis of Hierarchical Porous Carbon Monoliths as Superior Support of Fe-based Catalyst for CO2 Hydrogenation. RSC Advances, 6, 10831-10836.
Dai, C. Y., A. F. Zhang, M. Liu, L. Gu, X. W. Guo, and C. S. Song, (2016). Hollow Alveolus-like Nanovesicle Assembly with Metal-encapsulated Hollow Zeolite Nanocrystals. ACS Nano, 10 (8), 7401-7408.
Dai, C., A. Zhang, M. Liu, L. Gu, X. Guo, and C. Song, (2016). Hollow Alveolus-Like Nanovesicle Assembly with Metal-Encapsulated Hollow Zeolite Nanocrystals. ACS nano,10 (8), 7401-7408.
Huang, C. H., and R. L. Vander Wal, (2016). Partial premixing effects upon soot nanostructure. Combustion and Flame, 168, 403-408.
Huang, C. H., V. M. Bryg, and R. L. Vander Wal, (2016). A survey of jet aircraft PM by TEM in APEX III. Atmospheric Environment, 140, 614-622.
Kugai, J., J. T. Miller, E. B. Fox, and C. Song, (November 25, 2016). In-situ X-ray absorption study of ceria-supported Pd-Cu nanoparticles for oxygen-enhanced water gas shift, Applied Catalysis A: General, Volume 528, Pages 67-73, ISSN 0926-860X.
Luo, L., A. F. Zhang, M. J. Janik, C. S. Song, and X. W. Guo, (2016). Facile Fabrication of Metal-free Urchin-like g-C3N4 with Superior Photocatalytic Activity. RSC Advances, 6, 94496-94501.
Luo, L., A. F. Zhang, M. J. Janik, C. S. Song, and X. W. Guo, (2016). Facile Fabrication of Metal-free Urchin-like g-C3N4 with Superior Photocatalytic Activity. RSC Advances, 6, 94496-94501.
Ray, P., J. L. Gray, J. V. Badding, and A. D. Lueking, (2016). “High-Pressure Reactivity of Triptycene Probed by Raman Spectroscopy,” Journal of Physical Chemistry B, 120, 11035−11042.
Upneja, A., G. Dou, C. Gopu, C. A. Johnson, A. Newman, A. Suleimenov and J. L. Goldfarb, (2016). “Sustainable synthesis of biotemplated nanostructured ZnO for photocatalytic water treatment via hydrothermal carbonization of banana stalk.” RSC Advances. 6, 92813.
Yehliu, K., G. K. Lilik, R. L. Vander Wal, C. Sun, and A. L. Boehman, (2016). Impacts of advanced diesel combustion operation on soot nanostructure and reactivity. International Journal of Engine Research, 1468087416659947.
Zhang, A. F., K. K. Hou, H. Y. Duan, W. Tan, C. S. Song, and X. W. Guo, (2016). Zirconium-promoted Hydrothermal Synthesis of Hierarchical Porous Carbons with Ordered Cubic Mesostructures under Acidic Aqueous Conditions. RSC Advances, 6, 4343-4353.
Cheng, X. Q., M. Liu, A. F. Zhang, S. Hu, C. S. Song, G. L. Zhang, and X. W. Guo, (2015). Size-controlled silver nanoparticles stabilized on thiol-functionalized MIL-53 (Al) frameworks. Nanoscale, 7(21), 9738-9745.
Dai, C. Y., A. F. Zhang, M. Liu, X. W. Guo, and C. S. Song, (2015). Hollow ZSM‐5 with Silicon‐Rich Surface, Double Shells, and Functionalized Interior with Metallic Nanoparticles and Carbon Nanotubes. Advanced Functional Materials, 15, 7479–7487.
Dai, C. Y., S. H. Zhang, A. F. Zhang, C. S. Song, C. Shi, and X. W. Guo, (2015). Hollow Zeolite Encapsulated Ni-Pt Bimetals for Sintering and Coking Resistant Dry Reforming of Methane. Journal of Materials Chemistry A, 3, 16461-16468.
Jaramillo, I. C., C. K. Gaddam, R. L. Vander Wal, and J. S. Lighty, (2015). Effect of nanostructure, oxidative pressure and extent of oxidation on model carbon reactivity, I.C. Jaramillo et al., Combust. Flame,
Toth, P., A. B. Palotas, T. A. Ring, E. G. Eddings, R. L. Vander Wal, and J. S. Lighty, (2015). "The effect of oxidation pressure on the equilibrium nanostructure of soot particles," Combustion and Flame 162, 2422–2430.
Collins, L., A. Tselev, S. Jesse, M. B. Okatan, R. Proksch, J. P. Mathews, G. D. Mitchell, B. J. Rodriguez, S. V. Kalinin, and I. N. Ivanov, (2014). Breaking the limits of structural and mechanical imaging of the heterogeneous structure of coal macerals. Nanotechnology, 25, (43), 435402.
Vander Wal, R. L., C. K. Gaddam, and M. J. Kulis, (2014). “Spectroscopic characterization and comparison between biologics, organics and mineral compounds using a pulsed micro-hollow glow discharge,” DOI: 10.1039/C4JA00187G (Paper) J. Anal. At. Spectrom.
Wang, C. Y., J. L. Gray, Q. Gong, Y. Zhao, J. Li, E. Klontzas, G. Froudakis, and A. D. Lueking, (2014). Hydrogen Storage with Spectroscopic Identification of Chemisorption Sites in Cu-TDPAT via Spillover from a Pt/activated carbon catalyst. The Journal of Physical Chemistry C.
Wang, C.-Y., Q. Gong, Y. Zhao, J. Li, and A. D. Lueking, (October 2014). Stability and hydrogen adsorption of metal–organic frameworks prepared via different catalyst doping methods, Journal of Catalysis, Volume 318, Pages 128-142, ISSN 0021-9517.
Ye, P., C. Sun, M. Lapuerta, J. Agudelo, R. L. Vander Wal, A. L. Boehman, T. J Toops, and S. Daw, (December 26, 2014). “Impact of rail pressure and biodiesel fueling on the particulate morphology and soot nanostructures from a common-rail turbocharged direct injection diesel engine,” International Journal of Engine Research, 1468087414564229.
Ayala H., L. F., and P. Ye, (2013). Density-based decline performance analysis of natural gas reservoirs using a universal type-curve, J. of Energy Res. Tech., 135(4), p. 042701.
Vander Wal, R. L., and J. H. Fujiyama-Novak, (2011). Leading Fire Signatures of Spacecraft Materials: Light Gases, Condensables, and Particulates. Fire Safety Journal, Vo., 46, DE-j.firesaf.201106.008, pp. 506-519.
Vander Wal, R. L., and V. M. Bryg, (2011). XPS Analysis of Combustion Aerosols for Chemical Composition, Surface Chemistry, and Carbon Chemical State. Analytical Chemistry, Vo., 83, DE-ac102365s, pp. 1924-1930.
Vander Wal, R. L., J. H. Fujiyama-Novak, C. K. Gaddam, D. Das, A. Hariharan, and B. Ward, (2011). Atmospheric Mircoplasma Jet: Spectroscopic Database Development and Analytical Results. Applied Spectroscopy, Vo., 65, DE-10-06219, pp. 1073-1082.
Yehliu, K., R. L. Vander Wal, and A. L. Boehman, (2011) "A comparison of soot nanostructure obtained using two high-resolution transmission electron microscopy image analysis algorithms", Carbon 49:4256-4268.
Yehliu, K., R. L. Vander Wal, and A. L. Boehman, (2011). Development of an HRTEM Image Analysis Method to Quantify Carbon Nanostructure. Combustion and Flame, Vo., 158, DE-j.comvustflame.2011.01.009, p. 1837-1851.
Yehuli, K., R. L. Vander Wal, and A. L. Boehman, (2011). A Comparison of Soot Nanostructure Obtained using Two High Resolution Transmission Electron Microcopy Image Analysis Algorithms.
L. Evans, G. Hunter, J. Xu, G. Berger, and R. L. Vander Wal, (2010). "Controlled Fabrication of Nanostructure Material Based Chemical Sensors", Mater. Res. Soc. Symp. Proc., Vol. 1253, 1253-K08-04.
Vander Wal, R. L., V. M. Bryg, and M. D. Hays, (2010). Fingerprinting Soot (Towards Source Identification): Physical Structure and Chemical Composition. Journal of Aerosol Science, Vo., 41, DE-j.jaerpsci.2009.08.008, pp. 108-117.
Hunter, G. W., R. L. Vander Wal, C. C. Liu, J. C. Xu, and G. M. Berger, (2009). Comparative Sensing of Combustion Gases Using SnO2 Nanorods and Carbon Nanotubes, Sensor and Actuators B:138:113-119.
Rodriguez-Santiago, V., M. V. Fedkin, D. J. Wesolowski, J. Rosenqvist, and S. N. Lvov, (2009). Electrophoretic study the SnO2/aqueous solution interface up to 260 °C, Langmuir, 25, 8101–8110.
Vander Wal, R. L., (2009). Laser-induced Incandescence: Excitation and Detection Conditions, Material Transformations and Calibration. Applied Physics B-Lasers and Optics, Vo., 96, DE-s00340-009-3521-0, pp. 601-611.
Vander Wal, R. L., G. M. Berger, M. l. J. Kulis, G. W. Hunter, J. C. Xu, and L. Evans, (2009). Synthesis Methods, Microscopy Characterization and Device Integration of Nanoscale Metal Oxide Semiconductors for Gas Sensing. Sensors, Vo., 9, DE-s91007866, pp. 7866-7902.
Vander Wal, R. L., S. D. Mozes, and V. Pushkarev, (2009). “Nanocarbon nanofluids: Morphology and nanostructure comparisons,” Nanotechnology 20:105702-10.
Fedkin, M. V., E. Chalkova, D. J. Wesolowski, and S. N. Lvov, (2008). Understanding the Water Retention of Composite PEMs Based on Surface Chemistry of Inorganic Fillers, ECS Transactions, 11 (27) 189-198.
Rodriguez-Santiago, V., M. V. Fedkin, and S. N. Lvov, (2008). Electrophoresis system for high temperature mobility measurements of nanosize particles. Rev. Scientific Instr., 79, 093302.
Street, Jr., K. W., K. Miyoshi, and R. L. Vander Wal, (2007). "Application of Carbon Based Nano-particles to Aeronautics and Space Lubrication," Superlubricity, Chapter 19, pp 311-340. Edited by Drs. Jean-Michel Martin and Ali Erdemir, Elsevier, Amsterdam.
Fedkin, M. V., E. Chalkova, S. Komarneni, D. J. Wesolowski, and S. N. Lvov, (2006). Surface Electrochemistry of Composite Materials for High-Temperature PEM Fuel Cells, Electrochem. Soc. Trans., 1(6), 215-225.