{"id":37,"date":"2015-06-29T12:27:22","date_gmt":"2015-06-29T19:27:22","guid":{"rendered":"http:\/\/chem.wsu.edu\/mazur\/?page_id=37"},"modified":"2016-09-12T14:05:48","modified_gmt":"2016-09-12T21:05:48","slug":"publications","status":"publish","type":"page","link":"https:\/\/chem.wsu.edu\/mazur\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<br \/>\n<section id=\"builder-section-1435604086294\" class=\"row single gutter pad-top\">\n<div style=\"\" class=\"column one \">\n<h1>2010- present<\/h1>\n<hr \/>\n<ul>\n<li>U. Mazur, K. W. \u00a0Hipps,\u00a0J. R.\u00a0Eskelsen\u00a0and M.\u00a0Adinehnia.\u00a0<strong>Functional Porphyrin Nanostructures for Molecular Electronics: Structural, Mechanical, and Electronic Properties of Self-Assembled Ionic Metal-Free Porphyrins.<\/strong>\u00a0(Invited) In\u00a0<em>Handbook of Porphyrin Science.\u00a0<\/em>Kadish, K.M; Smith, K.M.; Guilard, R. eds.\u00a0<em>\u00a0<\/em><strong>2016<\/strong>,\u00a0<em>40<\/em>, 69-103.<\/li>\n<li>G.\u00a0Nandi, B.r Chilukuri, K. W. Hipps and U.\u00a0Mazur.\u00a0<strong>Surface directed reversible imidazole ligation to\u00a0nickel(II) octaethylporphyrin at the solution\/solid\u00a0interface: a single molecule level study<\/strong>. \u00a0<em>Phys. Chem. Chem. Phys.<\/em>\u00a02016, 18, 20819-20829.<\/li>\n<li>Ashish Bhattarai, Kevin Marchbanks-Owens, Ursula Mazur, and K. W. Hipps.\u00a0<strong>Influence of the Central Metal Ion on the Desorption Kinetics of a\u00a0Porphyrin from the Solution\/HOPG Interface.<\/strong>\u00a0<em>J. Phys. Chem. C<\/em>\u00a0<strong>2016<\/strong>,\u00a0<em>120<\/em>, 18140\u221218150.<\/li>\n<li>M.\u00a0van Zijll, B.\u00a0Borders, U.\u00a0Mazur and K. W. Hipps.\u00a0<strong>Persistent Conductivity in TPyP:TSPP Organic Nanorods Induced by\u00a0Ion Bombardment.<\/strong>\u00a0<em>J. Phys. Chem. C<\/em>\u00a0<strong>2016<\/strong>,\u00a0<em>120<\/em>, 14962\u221214968.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Kinetic and Thermodynamic Processes of Organic Species at the Solution Solid Interface: The view through an STM.<\/strong> <i>Chem. Comm.<\/i> <strong>2015<\/strong>, 51, 4737-4749.<\/li>\n<\/ul>\n<div id=\"pubtab\">\n<ul>\n<li>A. Bhattari, U. Mazur, and K.W. Hipps. <strong>Desorption Kinetics and Activation Energy for Cobalt Octaethylporphyrin from Graphite at the Phenyloctane Solution-Graphite Interface: An STM Study.<\/strong> <i>J. Phys. Chem. C<\/i> <strong>2015<\/strong>, 119, 9386\u20139394.<\/li>\n<li>J. R. Eskelsen, K. J. Phillips, K. W. Hipps, and U. Mazur. <strong>Hyperbranched Crystalline Nanostructure Produced from Ionic \u03c0-Conjugated Molecules.<\/strong> <i>Chem. Comm.<\/i> <strong>2015<\/strong>, 51, 2663-2666.<\/li>\n<li>A. Bhattari, U. Mazur, and K.W. Hipps. <strong>A Single Molecule Level Study of the Temperature Dependent Kinetics for the Formation of Metal Porphyrin Monolayers on Au(111) from Solution.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>2014<\/strong>, 136, 2142\u20132148.<\/li>\n<li>B.Chilukuri, U.Mazur, and K. W. Hipps. <strong>Effect of Dispersion on Surface Interactions of Cobalt(II) Octaethylporphyrin Monolayer on Au(111) and HOPG(0001) Substrates: A Comparative First Principles Study.<\/strong> <i>Phys. Chem. Chem. Phys.<\/i> <strong>2014<\/strong>, 16, 14096-14107.<\/li>\n<li>A. Jahanbekam, U. Mazur, and K. W. Hipps. <strong>A New Variable Temperature Solution-Solid Interface Scanning Tunneling Microscope.<\/strong> <i>Rev. Sci. Instrum.<\/i> <strong>2014<\/strong>, 85, 103701-103707.<\/li>\n<li>M. Adinehnia, U. Mazur, K.W. Hipps. <strong>Predicting the Size Distribution in Crystallization of TSPP: TMPyP Binary Porphyrin Nanostructures in a Batch Desupersaturation Experiment.<\/strong> <i>Crystal Growth &amp; Design<\/i> <strong>2014<\/strong>, 14, 6599\u22126606.<\/li>\n<li>J.R Eskelsen, Y.Qi, S. Schneider-Pollack, S. Schmitt, K.W. Hipps, and U. Mazur. <strong>Correlating elastic properties and molecular organization of an ionic organic nanostructure.<\/strong> <i>Nanoscale<\/i> <strong>2014<\/strong>, 6, 316\u2013327.<\/li>\n<li>A. Jahanbekam, S. Vorpahl, U. Mazur, K.W. Hipps, K. W. <strong>Temperature Stability of Three Commensurate Surface Structures of Coronene Adsorbed on Au(111) from Heptanoic Acid in the 0 to 60 \u00b0C Range.<\/strong> <i>J. Phys. Chem. C<\/i> <strong>2013<\/strong>, 117, 2914\u22122919.<\/li>\n<li>B. A. Friesen, A. Bhattari, U. Mazur and K. W. Hipps. <strong>Single Molecule Imaging of Oxygenation of Cobalt Octaethylporphyrin at the Solution\/solid Interface: Thermodynamics from Microscopy.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>2012<\/strong>, 134, 14897-14904. (cover art)<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>Electron Affinity States of Metal Supported Phthalocyanines Measured by Tunneling Spectroscopy.<\/strong> <i>J. Porph. Phthal.<\/i> <strong>2012<\/strong>, 16, 1-9.<\/li>\n<li>Y. Qi, J. R. Eskelsen, U. Mazur, and K. W. Hipps. <strong>Fabrication of Graphene with CuO by Chemical Vapor Deposition.<\/strong> <i>Langmuir<\/i> <strong>2012<\/strong>, 28, 3489-3493.<\/li>\n<li>Y. Qui, U. Mazur, and K. W. Hipps. <strong>Charge Transfer Induced Chemical Reaction of Tetracyano-p-quinodimethane Adsorbed on Graphene.<\/strong> <i>RSC Advances<\/i> <strong>2012<\/strong>, 2, 10579-10584.<\/li>\n<li>K. R. A. Nishida, B. Wiggins, K. W. Hipps, and U. Mazur. <strong>Structural and Electronic Properties of Columnar Supramolecular Assemblies Formed from Ionic Metal-Free Phthalocyanine on Au(111).<\/strong> <i>J. Phys. Chem. C<\/i> <strong>2011<\/strong>, 115, 16305\u201316314.<\/li>\n<li>K. R. A. Nishida, B. Wiggins, K. W. Hipps, and U. Mazur. <strong>Aggregation of Sulfonated Free-Base Phthalocyanine on Gold as a Function of Solution pH.<\/strong> <i>J. Porph. Phthal.<\/i> <strong>2011<\/strong>, 15, 1-8.<\/li>\n<li>B. A. Friesen, B. Wiggins, J. L. McHale, K.W. Hipps, and U. Mazur. <strong>A Self-Assembled Two-Dimensional Zwitterionic Structure: H6TSPP Studies on Graphite.<\/strong> <i>J. Phys. Chem. C.<\/i> <strong>2011<\/strong>, 115, 3990-3999.<\/li>\n<li>B. Friesen, C. Rich, U. Mazur, and J. L McHale. <strong>Resonance Raman Spectroscopy of Helical Porphyrin Nanotubes.<\/strong> <i>J. Phys. Chem. C<\/i> <strong>2010<\/strong>, 114, 16357-16366.<\/li>\n<li>T. Takami, A. U. Clark, C. Caldwell, U. Mazur, and K. W. Hipps. <strong>Building Self-Assembled Molecular Layers with Axially Substituted Titanium Phthalocyanines.<\/strong> <i>Langmuir<\/i> <strong>2010<\/strong>, 26, 12709-12715.<\/li>\n<li>B. A. Friesen, B. Wiggins, J. L. McHale, K.W. Hipps, and U. Mazur. <strong>Differing HOMO and LUMO Mediated Conduction in a Porphyrin Nanorod.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>2010<\/strong>, 132, 8554\u20138556.<\/li>\n<\/ul>\n<h1>2000- 2009<\/h1>\n<hr \/>\n<p>&nbsp;<\/p>\n<ul>\n<li>B. A. Friesen, K. R. A. Nishida, J. L. McHale, and U. Mazur. <strong>New Nanoscale Insights into the Internal Structure of Tetrakis(4-sulfonatophenyl) Porphyrin Nanorods.<\/strong> <i>J. Phys. Chem. C.<\/i> <strong>2009<\/strong>, 113, 1709-1718.<\/li>\n<li>T. Takami, U. Mazur, and K. W. Hipps. <strong>Solvent-Induced Variations in Surface Structure of a 2,9,16,23-Tetra-<i>tert<\/i>-butyl-phthalocyanine on Graphite.<\/strong> <i>J. Phys. Chem. C<\/i> <strong>2009<\/strong>, 113, 17479\u201317483.<\/li>\n<li>M. Halter, Y. Liao, R. M. Plocinik, D. C. Coffey, S. Bhattacharjee, U. Mazur, G. J. Simpson, B. H. Robinson, and S. L. Keller. <strong>Molecular Self-Assembly of Mixed High-Beta Zwitterionic and Neutral Ground-State NLO Chromophores.<\/strong> <i>Chem. Mater.<\/i> <strong>2008<\/strong>, 20, 1778-1787.<\/li>\n<li>U. Mazur, K. W. Hipps, and S. L. Riechers. <strong>Organization of Vanadyl and Metal-Free Tetraphenoxyphthalocyanine Complexes on Highly Oriented Pyrolytic Graphite in the Presence of Paraffinic Solvents: A STM Study.<\/strong> <i>J. Phys. Chem. C<\/i> <strong>2008<\/strong>, 112, 20347-20356.<\/li>\n<li>U. Mazur. <strong>Langmuir\u2013Blodgett Films: Fabrication, Characterization, and Nanomechanical Measurements.<\/strong> <i>Dekker Encyclopedia of Nanoscience and Nanotechnology.<\/i> <strong>2007<\/strong>, 1, 1-10.<\/li>\n<li>U. Mazur and J. D. Satterlee. <strong>Small molecule directed aggregation of heme peptides on metal surfaces: An STM study.<\/strong> <i>JPC B Letter<\/i> <strong>2006<\/strong>, 110(46), 22968-22970.<\/li>\n<li>U. Mazur, M. Leonetti, W. A. English, and K. W. Hipps. <strong>Redox driven assembly of cobalt phthalocyanine on gold(111)<\/strong> <i>J. Phys. Chem. B.<\/i> (Communication) <strong>2004<\/strong>, 108, 17003-17006.<\/li>\n<li>T. Oshiro, A. Backstrom, A. M. Cumberlidge, K.W. Hipps, S.P. Pevovar, D.F. Bahr, J. Smieja, and U. Mazur. <strong>Nanomechanical properties of ordered phthalocyanine Langmuir\u2013Blodgett layers.<\/strong> <i>J. Mater. Res.<\/i> <strong>2004<\/strong>, 19, 1462-1470.<\/li>\n<li>K. Stevenson, N. Miyashita, J. Smieja and U. Mazur. <strong>Highly ordered thin films prepared with octabutoxy copper phthalocyanine complexes.<\/strong> <i>Ultramicroscopy<\/i> <strong>2003<\/strong>, 97, 271\u2013278.<\/li>\n<li>U. Mazur and KW Hipps. <strong>Inelastic Electron Tunneling Spectroscopy<\/strong> in &#8220;Handbook of Vibrational Spectroscopy&#8221; Edited by John Chalmers and Peter Griffiths, John Wiley and Sons, NY. <strong>2002<\/strong>, pp. 812-829.<\/li>\n<li>L. Scudiero, D. E. Barlow, U. Mazur, and K.W. Hipps. <strong>Scanning Tunneling Microscopy, Orbital Mediated Tunneling Spectroscopy, and Ultraviolet Photoelectron Spectroscopy of Metal (II) Tetraphenylporphyrins Deposited from Vapor.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>2001<\/strong>, 123, 4073-4080.<\/li>\n<li>M. Higo, X. Lu, U. Mazur, and K.W. Hipps. <strong>Atomic Force Microscopy Observation of the Morphology of Tetracyanoquinodimethane (TCNQ) Deposited from Solution onto the Atomically Smooth Native Oxide Surface of Aluminum Films.<\/strong> <i>Thin Solid Films<\/i> <strong>2001<\/strong>, 384, 90-101.<\/li>\n<li>D. Barlow, U. Mazur, and K.W. Hipps. <strong>A Scanning Tunneling Microscopy and Spectroscopy Study of Vanadyl Phthalocyanine on Au(111): The Effect of Oxygen Binding and Orbital Mediated Tunneling on the Apparent Corrugation.<\/strong> <i>J. Phys. Chem. B.<\/i> <strong>2000<\/strong>, 104, 5993-6000.<\/li>\n<li>K.W. Hipps, Dan E. Barlow, and U. Mazur. <strong>Orbital Mediated Tunneling in Vanadyl Phthalocyanine Observed in Both Tunnel Diode and STM Environments.<\/strong> <i>J. Phys. Chem. B<\/i> <strong>2000<\/strong>, 104, 2444-2447.<\/li>\n<li>K.W. Hipps and U. Mazur. <strong>An Experimental Study of the Line Shape of Orbital Mediated Tunneling Bands Seen in IETS.<\/strong> <i>J. Phys. Chem. B.<\/i> <strong>2000<\/strong>, 104, 4707-4710.<\/li>\n<\/ul>\n<h1>1990- 1999<\/h1>\n<hr \/>\n<p>&nbsp;<\/p>\n<ul>\n<li>M. Higo, X. Lu, U. Mazur, and K. W. Hipps. <strong>Morphological Observation of Tetracyanoquinodimethane Deposited from Solution onto the Atomically Smooth Native Oxide Surface of an Al(111) Film by Atomic Force Microscopy.<\/strong> <em>Chem. Let.<\/em> <strong>1999<\/strong>, 679-680.<\/li>\n<li>U. Mazur and K.W. Hipps. <strong>Orbital Mediated Tunneling, Inelastic Electron Tunneling, and Electrochemical Potentials for Metal Phthalocyanine Thin Films.<\/strong> <em>J. Phys. Chem. B<\/em> <strong>1999<\/strong>, 103, 9721-9727.<\/li>\n<li>L. Huang, K.W. Hipps, U. Mazur, J.T. Dickinson, and X. D. Wang. <strong>Structure and Composition studies of Silicon Nitride Thin Films Deposited by Single Ion Beam Sputter Deposition.<\/strong> <em>Thin Solid Films<\/em> <strong>1997<\/strong>, 299, 104-109.<\/li>\n<li>M. Higo, X. Lu, U. Mazur, and K.W. Hipps. <strong>Characterization of Atomically Smooth Al Films by Transmission Electron Microscopy and Atomic Force Microscopy.<\/strong> <em>Chem. Let.<\/em> <strong>1997<\/strong>, 709 (1997).<\/li>\n<li>X. Lu, U. Mazur and K.W. Hipps. <strong>Scanning Tunneling Microscopy of Metal Phthalocyanines: d<sup>6<\/sup> and d<sup>8<\/sup> Cases.<\/strong> <em>J Phys. Chem. B<\/em> <strong>1997<\/strong>,101, 5391-5396.<\/li>\n<li>M. Higo, X. Lu, U. Mazur, and K.W. Hipps. <strong>Preparation of Atomically Smooth Aluminum Films: Characterization by Transmission Electron Microscopy and Atomic Force Microscopy.<\/strong> <em>Langmuir<\/em> <strong>1997<\/strong>, 13, 6176 &#8211; 6182.<\/li>\n<li>X. Lu, K.W. Hipps, X.D. Wang, and U. Mazur. <strong>Scanning Tunneling Microscopy of Metal Phthalocyanines: d<sup>7<\/sup> and d<sup>9<\/sup> Cases.<\/strong> <em>J. Am.Chem. Soc.<\/em> <strong>1996<\/strong>, 118 , 7197-7202.<\/li>\n<li>K.W. Hipps, Xing Lu, X.D. Wang, and U. Mazur. <strong>Metal d-orbital Occupation Dependent Images in the Scanning Tunneling Microscopy of Metal Phthalocyanines.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1996<\/strong>, 100, 11207-11210.<\/li>\n<li>L. Huang, X.D. Wang, K.W. Hipps, U. Mazur, R. Heffron, and J.T. Dickinson. <strong>Chemical Etching of Ion Beam Deposited AlN and AlN:H.<\/strong> <em>Thin Solid Films<\/em> <strong>1996<\/strong>, 279, 43-48.<\/li>\n<li>X. Lu, K. W. Hipps, X.D. Wang, and U. Mazur. <strong>Metal d-orbital Occupation Dependent Images in the Scanning Tunneling Microscopy of Metal Phthalocyanines.<\/strong> <em>J. Am. Chem. Soc.<\/em> <strong>1996<\/strong>, 118, 7197-7202.<\/li>\n<li>M. Harris, R. Heffron, K. W. Hipps, and U. Mazur. <strong>Raman Spectroscopic Study of CuTCNQ and AgTCNQ Films: The Presence of DCTC Anion.<\/strong> <em>Vibrational Spec.<\/em> <strong>1995<\/strong>, 9, 273-278.<\/li>\n<li>L. Huang, X.D. Wang, K.W. Hipps, U. Mazur, J.T. Dickinson, and R. Heffron. <strong>Chemical Effects of Substrate Temperature and Feed Gas Composition on Ion Beam Deposited AlN and AlN:H.<\/strong> <em>Proc.e Mate. Res. Soc.<\/em> <strong>1995<\/strong>, 388, 367-372.<\/li>\n<li>U. Mazur, and K. W. Hipps. <strong>Composition, Structure, and Properties of AlN and AlN:H Formed by Ion Beam Deposition.<\/strong> <em>Trends in Phys. Chem.<\/em> <strong>1995<\/strong>, 4, 61-68.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Resonant Tunneling Bands and Electrochemical Reduction Potentials.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1995<\/strong>, 99, 6684-6688.<\/li>\n<li>X. D. Wang, K. W. Hipps, T. J. Dickinson, U. Mazur. <strong>Amorphous or Nano-Crystalline AlN from Heated AlN:H.<\/strong> <em>J. Mater. Res.<\/em> <strong>1994<\/strong>, 9, 1449-1455.<\/li>\n<li>X. D. Wang, U. Mazur, K. W. Hipps, and T. J. Dickinson. <strong>Chemical Stability of Laminated AlN Films.<\/strong> <em>Thin Solid Films<\/em> <strong>1994<\/strong>, 240, 45-51.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Unoccupied Orbital Mediated Tunneling: Resonance-like Structures in the Tunneling Spectra of Polyacenes.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1994<\/strong>, 98, 5824-5829.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Resonant Tunneling in Metal Phthalocyanines.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1994<\/strong>, 98, 8169-8172.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Inelastic Electron Tunneling: An Alternative Molecular Spectroscopy.<\/strong> A Feature Article. in <em>J. Phys. Chem.<\/em> <strong>1993<\/strong>,97, 7803-7814.<\/li>\n<li>U. Mazur, X.D. Wang, and K.W. Hipps. <strong>Detection of Formic Acid Vapor: Inelastic Electron Tunneling Spectroscopy of Infused Al-Al2O3-M-Au Junctions.<\/strong> <em>Analytical Chemistry<\/em> <strong>1992<\/strong>, 64, 1845-1850.<\/li>\n<li>K.W. Hipps and Ursula Mazur. <strong>Inelastic Electron Tunneling in Al-A2O3-Au Junctions Exposed to Thiocyanate Ion: Sensitive Thiocyanate Detection.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1992<\/strong>, 96 1160-1164.<\/li>\n<li>K.W. Hipps and Ursula Mazur. <strong>Infrared and Morphological Studies of Hydrogenated AlN Thin Films.<\/strong> X.D. Wang, K.W. Hipps, and Ursula Mazur. <em>Langmuir<\/em> <strong>1992<\/strong>, 8, 1347-1353.<\/li>\n<li>X.D. Wang, K.W. Hipps, and U. Mazur. <strong>Infrared Study of Ion Beam Deposited Hydrogenated AlN Thin Films II: Effects of Deuterium Substitution.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1992<\/strong>, 96, 8485-8488.<\/li>\n<li>U. Mazur, G. Fried, and K. W. Hipps. <strong>Deposition of Metal Films for Imaging in Scanning Tunneling Microscopy.<\/strong> <em>Surf. Sci.<\/em> <strong>1991<\/strong>, 243, 179-192.<\/li>\n<li>U. Mazur and A. Cuneo Cleary. <strong>An Infrared and Tunneling Spectroscopy Study of AlN Films Prepared by Ion Beam Deposition.<\/strong> <em>J. Phys. Chem.<\/em> <strong>1990<\/strong>, 94, 189-197.<\/li>\n<li>U. Mazur. <strong>An Infrared Study of AlN Films Prepared by Ion Beam Deposition. I: Effects of Film Thickness, Aging, and Moisture.<\/strong> <em>Langmuir<\/em> <strong>1990<\/strong>, 6, 1331-1340.<\/li>\n<\/ul>\n<h1>1980- 1989<\/h1>\n<hr \/>\n<p>&nbsp;<\/p>\n<ul>\n<li>U. Mazur and K. W. Hipps. <strong>An Inelastic Electron Tunneling Spectroscopy Study of the Complexation Reaction of CoBr<sub>2<\/sub> and CoCl<sub>2<\/sub> With Silane Modified Alumina.<\/strong> <i>Surf. Sci.<\/i> <strong>1989<\/strong>, 207, 385-398.<\/li>\n<li>K. W. Hipps, E. A. Dunkle, and U. Mazur. <strong>The Adsorption of Ferricyanide Ion on Alumina.<\/strong> <i>Langmuir<\/i> <strong>1988<\/strong>, 4, 463469.<\/li>\n<li>U. Mazur and M. K. Konkin. <strong>Insulators for IETS Prepared by the Ion Beam Method.<\/strong> Mater. Res. Soc. Symp. Proc. on &#8220;Atomic and Molecular Processing of Electronic and Ceramic Materials&#8221;. <strong>1988<\/strong>, pg. 47.<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>Constant Resolution Tunneling Spectroscopy.<\/strong> <i>Rev. Sci. Instruments<\/i> <strong>1988<\/strong>, 59, 1903-1905.<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>The <sup>4<\/sup>A<sub>2<\/sub> \u2192 <sup>4<\/sup>T<sub>2<\/sub> and <sup>4<\/sup>A<sub>2<\/sub> \u2192 <sup>4<\/sup>T<sub>1<\/sub> Electronic Transitions in Cobalt(II) Tetrachloride: An FT-IR and Inelastic Electron Tunneling Spectroscopy Study.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>1987<\/strong>, 109, 3861-3865.<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>Vibrational and Low Lying Electronic Transitions in Tetraalkylammonium Salts of CoBr<sub>4<\/sub><sup>-2<\/sup>, CoCl<sub>4<\/sub><sup>-2<\/sup> and Co(SCN)<sub>4<\/sub><sup>-2<\/sup> as Observed by Raman, IR, and Tunneling Spectroscopy.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1987<\/strong>, 91, 5218-5224.<\/li>\n<li>K. W. Hipps, U. Mazur, R. Knochenmuss. <strong>Evidence for Dielectric Constant Dependence of Intensities in Inelastic Electron Tunneling Spectroscopy.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1986<\/strong>, 90, 1755-1759.<\/li>\n<li>K. W. Hipps, E. A. Dunkle, and U. Mazur. <strong>A Reactive Adsorption of DPPH on Alumina as Studied by Inelastic Electron Tunneling, FT-IR and EPR Spectroscopy.<\/strong> <i>Langmuir<\/i> <strong>1986<\/strong>, 2, 528532.<\/li>\n<li>M. Suzuki, U. Mazur, and K. W. Hipps. <strong>An Inelastic Electron Tunneling Study of the Insulator Formed an Aluminum in a Low Pressure Discharge Containing SO<sub>2<\/sub>.<\/strong> <i>Surf. Sci.<\/i> <strong>1985<\/strong>, 161, 156-162.<\/li>\n<li>K. W. Hipps, U. Geiser, U. Mazur, and R. D. Willett. <strong>Cesium Pentacyanopropenide: Crystal Structure, Vibrational Spectra and Assignments, and Vibronic Structure in the Visible Emission Spectrum.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1984<\/strong>, 88, 2498-2504.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>The Construction and Application of a Novel Combination Glove-Box Deposition System to the Study of Air-Sensitive Materials by Tunneling Spectroscopy.<\/strong> <i>Rev. Sci. Instrum.<\/i> <strong>1984<\/strong>, 55, 1120-1124.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Chemisorption of Tetracyanoethylene and its Mono- and Di-Anion on Alumina: An Inelastic Electron Tunneling Study.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1984<\/strong>, 88, 1555-1559.<\/li>\n<li>K. W. Hipps, S. D. Williams, and U. Mazur. <strong>Forbidden Vibrational Modes in Iron(II), Ruthenium(II), and Osmium(II) Hexacyanides: A Tunneling, IR, and Raman Spectroscopy Study.<\/strong> <i>Inorg. Chem.<\/i> <strong>1984<\/strong>, 23, 3500-3505.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Absorption, Fluorescence, and Thermal Modulation of Fluorescence Spectra of the Cesium Salt of 1,1,2,3,3-Pentacyanopropropenide Anion.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1983<\/strong>, 87, 4641-4647.<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>The Study of Inorganic Ions.<\/strong> in &#8220;Tunneling Spectroscopy: Capabilities, Applications, and New Techniques.&#8221; P. K. Hansma (Editor), Plenum Press (<strong>1982<\/strong>).<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Spectroscopic Characterization of Tricyanovinylalcoholate and Pentacyano propenide Salts in Solid, Solution, and Adsorbed Phases: NMR, IR, Raman, and Tunneling Spectra.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1982<\/strong>, 86, 2854-2860.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Characterization of Alumina Supported OySiHx by Inelastic Electron Tunneling Spectroscopy.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1981<\/strong>, 85, 2244-2247.<\/li>\n<li>U. Mazur, S. D. Williams, and K. W. Hipps. <strong>A Novel Top Metal-Adsorbate Reaction Observed by Tunneling Spectroscopy.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1981<\/strong>, 85, 2305-2308.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>Reactive Adsorption of Tetracyanoethylene on Alumina from Solution: A Tunneling Spectroscopy Study.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1981<\/strong>, 86, 5105-5110.<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>The pH Dependence of Surface Species Formed by the Adsorption of Cobalt and Nickel Glycinates on Alumina. A Tunneling Spectroscopy Study.<\/strong> <i>Inorg. Chem.<\/i> <strong>1981<\/strong>, 20, 13911395.<\/li>\n<li>U. Mazur and K.W. Hipps. <strong>An IETS of Alumina and Magnesia Supported Si-Hx and their Use as Substrates for Inorganic Vibrational Spectroscopy.<\/strong> <i>Chem. Phys Lett.<\/i> <strong>1981<\/strong>, 79, 54-58.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>The Role of the Crystal Lattice in the Electronic Spectra of the Hexacyano Cobaltate Ion, II: Franck-Condon Analysis of the Luminescence.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1980<\/strong>, 84, 194-197.<\/li>\n<li>K. W. Hipps and U. Mazur. <strong>An Inelastic Electron Tunneling Spectroscopy Study of Some Iron Cyanide Complexes.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1980<\/strong>, 84, 3162-3172.<\/li>\n<\/ul>\n<h1>1971- 1979<\/h1>\n<hr \/>\n<p>&nbsp;<\/p>\n<ul>\n<li>U. Mazur and R. L. Kuczkowski. <strong>Microwave Spectrum and Structure of Ethylene Ozonide-D4.<\/strong> <i>J. Mol. Spec.<\/i> <strong>1977<\/strong>, 65, 84-89.<\/li>\n<li>U. Mazur, R. L. Lattimer, A. Lopata, and R. L. Kuczkowski. <strong>Ozonolysis of Vinyl Fluoride: Identification of Ozonides and Doubly Fluorinated Products.<\/strong> <i>J. Org. Chem.<\/i> <strong>1979<\/strong>, 44, 3181-3185.<\/li>\n<li>U. Mazur and R. L. Kuczkowski. <strong>Ozonolysis of Ethylene, Vinyl Fluoride and 1,2-Difluoromethylene: Isotopic Labeling Experiments.<\/strong> <i>J. Org. Chem.<\/i> <strong>1979<\/strong>, 44, 3 185-190.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>The Role of the Crystal Lattice in the Electronic Spectra of Hexacyano Cobaltate Ion, I: Experimental Results.<\/strong> <i>J. Chem. Phys.<\/i> <strong>1979<\/strong>, 83, 1884-1889.<\/li>\n<li>U. Mazur and K. W. Hipps. <strong>On Inelastic Electron Tunneling Spectroscopy of the Adsorption of SCN-, OCN-, and CN- from Water Solution by Al2O3.<\/strong> <i>J. Phys. Chem.<\/i> <strong>1979<\/strong>, 83, 2773-2777.<\/li>\n<li>K. W. Hipps, U. Mazur, and M. S. Pearce. <strong>A Tunneling Spectroscopy Study of the Adsorption of Ferrocyanide from Water Solution by Al2O3.<\/strong> <i>Chem. Phys. Let.<\/i> <strong>1979<\/strong>, 68, 433-437.<\/li>\n<li>R. P. Lattimer, U. Mazur, and R. L. Kuczkowski. <strong>Ozonolysis of Fluroalkenes: The Synthesis, Conformation, and Microwave Spectrum of 3-fluoro-1,2,4-trioxolane.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>1976<\/strong>, 98, 4012-4013.<\/li>\n<li>R. D. Bach and U. Mazur. <strong>Nonplanar Cyclopropylcarbinol Cations. Theoretical Treatment.<\/strong> <i>Chem. Biochem. React. Pros. Int. Symp.<\/i> <strong>1973<\/strong>, 6, 319-321.<\/li>\n<li>R. D. Bach, U. Mazur, and R. Brumell. <strong>The Absolute Configuration of 1,2-cyclononadiene and cis-acetoxycyclonone.<\/strong> <i>J. Am. Chem. Soc.<\/i> <strong>1971<\/strong>, 93, 7120-7121.<\/li>\n<\/ul>\n<\/div><\/div>\n<\/section>\n","protected":false},"excerpt":{"rendered":"<p> 2010- present<\/p>\n<p>U. Mazur, K. W. \u00a0Hipps,\u00a0J. R.\u00a0Eskelsen\u00a0and M.\u00a0Adinehnia.\u00a0<strong>Functional Porphyrin Nanostructures for Molecular Electronics: Structural, Mechanical, and Electronic Properties of Self-Assembled Ionic Metal-Free Porphyrins.<\/strong>\u00a0(Invited) In\u00a0<em>Handbook of Porphyrin Science.\u00a0<\/em>Kadish, K.M; Smith, K.M.; Guilard, R. eds.\u00a0<em>\u00a0<\/em><strong>2016<\/strong>,\u00a0<em>40<\/em>, 69-103.<br \/> G.\u00a0Nandi, B.r Chilukuri, K. W. Hipps and U.\u00a0Mazur.\u00a0<strong>Surface directed reversible imidazole ligation to\u00a0nickel(II) octaethylporphyrin at the solution\/solid\u00a0interface: a single molecule level study<\/strong>. \u00a0<em>Phys. Chem. Chem. Phys.<\/em>\u00a02016, 18, 20819-20829.<br \/> Ashish Bhattarai, Kevin Marchbanks-Owens, Ursula Mazur, and K. W. Hipps.\u00a0<strong>Influence of the Central Metal Ion on the Desorption Kinetics of a\u00a0Porphyrin from the Solution\/HOPG Interface.<\/strong>\u00a0<em>J. Phys. Chem. C<\/em>\u00a0<strong>2016<\/strong>,\u00a0<em>120<\/em>, 18140\u221218150.<br \/> M.\u00a0van Zijll, B.\u00a0Borders, U.\u00a0Mazur and K. W. Hipps.\u00a0<strong>Persistent Conductivity &#8230; <a href=\"https:\/\/chem.wsu.edu\/mazur\/publications\/\" class=\"more-link\"><span class=\"more-default\">&raquo; More &#8230;<\/span><\/a><\/strong><\/p>\n","protected":false},"author":1424,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"template-builder.php","meta":[],"wsuwp_university_location":[],"wsuwp_university_org":[],"_links":{"self":[{"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/pages\/37"}],"collection":[{"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/users\/1424"}],"replies":[{"embeddable":true,"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/comments?post=37"}],"version-history":[{"count":23,"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/pages\/37\/revisions"}],"predecessor-version":[{"id":212,"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/pages\/37\/revisions\/212"}],"wp:attachment":[{"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/media?parent=37"}],"wp:term":[{"taxonomy":"wsuwp_university_location","embeddable":true,"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/wsuwp_university_location?post=37"},{"taxonomy":"wsuwp_university_org","embeddable":true,"href":"https:\/\/chem.wsu.edu\/mazur\/wp-json\/wp\/v2\/wsuwp_university_org?post=37"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}