Hamers Group Publications

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Hamers RJ. Scanning tunneling microscopy. In: Chiarotti G. Physics of Solid Surfaces. Landolt-Bornstein; 1989.
Hamers RJ. Nanotechnology - Diamonds are for tethers. Nature [Internet]. 2008;454:708-709. <Go to ISI>://000258228000031
Hamers RJ. Immobilization of biomolecules at semiconductor surfaces. In: Tao F, Bernasek S. Functionalization of semiconductor surfaces. J. Wiley and Sons; 2011.
Hamers RJ. Scanning tunneling microscopy. Lerner RG, Triggs GL. VCH-Wiley; 2005.
Hamers RJ. CHARACTERIZATION OF LOCALIZED ATOMIC SURFACE-DEFECTS BY TUNNELING MICROSCOPY AND SPECTROSCOPY. Journal of Vacuum Science & Technology B [Internet]. 1988;6:1462-1467. <Go to ISI>://A1988P729100076
Hamers RJ. Integrating biological molecules with Group IV semiconductors for bioelectronic sensing. In: Katz E, Willner I. Bioelectronics: Theory and application. VCH Publishers; 2004.
Hamers RJ, Kohler UK, Demuth JE. EPITAXIAL-GROWTH OF SILICON ON SI(001) BY SCANNING TUNNELING MICROSCOPY. Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films [Internet]. 1990;8:195-200. <Go to ISI>://A1990CL59400038
Hamers RJ, Houston PL, Merrill RP. COMPETITION BETWEEN DIRECT-INELASTIC AND TRAPPING DESORPTION CHANNELS IN THE SCATTERING OF NO (V=O,J) FROM IR(111). Journal of Chemical Physics [Internet]. 1988;88:6548-6555. <Go to ISI>://A1988N555800057
Hamers RJ, Cai W, Strother TC, Smith LM. MODIFIED CARBON, SILICON AND GERMANIUM SURFACES. Wisconsin Alumni Research Foundation; 2002.
Hamers RJ. Formation and Characterization of Organic Monolayers on Semiconductor Surfaces. Annual Review of Analytical Chemistry [Internet]. 2008;1:707-736. <Go to ISI>://000262525200024
Hang MN, Gunsolus IL, Wayland H, Melby ES, Mensch AC, Hurley KR, et al. Impact of Nanoscale Lithium Nickel Manganese Cobalt Oxide (NMC) on the Bacterium Shewanella oneidensis MR-1. Chemistry of Materials [Internet]. 2016;. http://pubs.acs.org/doi/abs/10.1021/acs.chemmater.5b04505
Hashizume T, Hamers RJ, Demuth JE, Markert K, Sakurai T. INITIAL-STAGE DEPOSITION OF AG ON THE SI(100)2X1 SURFACE STUDIED BY SCANNING TUNNELING MICROSCOPY. Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films [Internet]. 1990;8:249-250. <Go to ISI>://A1990CL59400050
Higgins SR, Hamers RJ. Chemical dissolution of the galena(001) surface observed using electrochemical scanning tunneling microscopy. Geochimica Et Cosmochimica Acta [Internet]. 1996;60:3067-3073. <Go to ISI>://A1996VC98000010
Higgins SR, Hamers RJ. Morphology and dissolution processes of metal sulfide minerals observed with the electrochemical scanning tunneling microscope. Journal of Vacuum Science & Technology B [Internet]. 1996;14:1360-1364. <Go to ISI>://A1996UH89000161
Hovis JS, Liu HB, Hamers RJ. Cycloaddition chemistry of 1,3-dienes on the silicon(001) surface: Competition between 4+2 and 2+2 reactions. Journal of Physical Chemistry B [Internet]. 1998;102:6873-6879. <Go to ISI>://000075744000027
Hovis JS, Hamers RJ, Greenlief CM. Preparation of clean and atomically flat germanium(001) surfaces. Surface Science [Internet]. 1999;440:L815-L819. <Go to ISI>://000083026600003
Hovis JS, Liu H, Hamers RJ. Cycloaddition chemistry and formation of ordered organic monolayers on silicon (001) surfaces. Surface Science [Internet]. 1998;402:1-7. <Go to ISI>://000074610800002
Hovis JS, Hamers RJ. Structure and bonding of ordered organic monolayers of 1,3,5,7-cyclooctatetraene on the Si(001) surface: Surface cycloaddition chemistry of an antiaromatic molecule. Journal of Physical Chemistry B [Internet]. 1998;102:687-692. <Go to ISI>://000071802900007
Hovis JS, Lee S, Liu HB, Hamers RJ. Controlled formation of organic layers on semiconductor surfaces. Journal of Vacuum Science & Technology B [Internet]. 1997;15:1153-1158. <Go to ISI>://A1997XT08800067
Hovis JS, Liu H, Hamers RJ. Scanning tunneling microscopy of cyclic unsaturated organic molecules on Si(001). Applied Physics a-Materials Science & Processing [Internet]. 1998;66:S553-S557. <Go to ISI>://000076887000113
Hovis JS, Coulter SK, Hamers RJ, D'Evelyn MP, Russell JN, Butler JE. Cycloaddition chemistry at surfaces: Reaction of alkenes with the diamond(001)-2 x 1 surface. Journal of the American Chemical Society [Internet]. 2000;122:732-733. <Go to ISI>://000085165200032
Hovis JS, Hamers RJ. Structure and bonding of ordered organic monolayers of 1,5-cyclooctadiene on the silicon(001) surface. Journal of Physical Chemistry B [Internet]. 1997;101:9581-9585. <Go to ISI>://A1997YG46300024
Johnson PS, Cook PL, Zegkinoglou I, Garcia-Lastra JM, Rubio A, Ruther RE, et al. Electronic structure of Fe- vs. Ru-based dye molecules. Journal of Chemical Physics [Internet]. 2013;138(4):044709. <Go to ISI>://WOS:000314725900057
Kang H, Detcheverry FA, Mangham AN, Stoykovich MP, Daoulas KC, Hamers RJ, et al. Hierarchical assembly of nanoparticle superstructures from block copolymer-nanoparticle composites. Physical Review Letters [Internet]. 2008;100. <Go to ISI>://000254940900072
Kapilashrami M, Conti G, Zegkinoglou I, Nemsak S, Conlon CS, Torndahl T, et al. Boron Doped diamond films as electron donors in photovoltaics: An X-ray absorption and hard X-ray photoemission study. Journal of Applied Physics [Internet]. 2014;116. <Go to ISI>://WOS:000343988000019
Kim H, Colavita PE, Paoprasert P, Gopalan P, Kuech TF, Hamers RJ. Grafting of molecular layers to oxidized gallium nitride surfaces via phosphonic acid linkages. Surface Science [Internet]. 2008;602:2382-2388. <Go to ISI>://000259062200015
Kim M-S, Louis KM, Pedersen JA, Hamers RJ, Peterson RE, Heideman W. Using citrate-functionalized TiO2 nanoparticles to study the effect of particle size on zebrafish embryo toxicity. ANALYST. 2014;{139}:964-972.
Kim H, Colavita PE, Metz KM, Nichols BM, Sun B, Uhlrich J, et al. Photochemical functionalization of gallium nitride thin films with molecular and biomolecular layers. Langmuir [Internet]. 2006;22:8121-8126. <Go to ISI>://000240250600029
King-Heiden TC, Wiecinski PN, Mangham AN, Metz KM, Nesbit D, Pedersen JA, et al. Quantum Dot Nanotoxicity Assessment Using the Zebrafish Embryo. Environmental Science & Technology [Internet]. 2009;43:1605-1611. <Go to ISI>://000263758600062
Knickerbocker T, Strother T, Schwartz MP, Russell JN, Butler J, Smith LM, et al. DNA-modified diamond surfaces. Langmuir [Internet]. 2003;19:1938-1942. <Go to ISI>://000181562700006
Kohler UK, Demuth JE, Hamers RJ. SURFACE RECONSTRUCTION AND THE NUCLEATION OF PALLADIUM SILICIDE ON SI(111). Physical Review Letters [Internet]. 1988;60:2499-2502. <Go to ISI>://A1988N799600015
Kohler U, Demuth JE, Hamers RJ. SCANNING TUNNELING MICROSCOPY STUDY OF LOW-TEMPERATURE EPITAXIAL-GROWTH OF SILICON ON SI(111)-(7X7). Journal of Vacuum Science & Technology a-Vacuum Surfaces and Films [Internet]. 1989;7:2860-2867. <Go to ISI>://A1989AG67700063
Landis EC, Klein KL, Liao A, Pop E, Hensley DK, Melechko AV, et al. Covalent Functionalization and Electron-Transfer Properties of Vertically Aligned Carbon Nanofibers: The Importance of Edge-Plane Sites. Chemistry of Materials [Internet]. 2010;22:2357-2366. <Go to ISI>://000276394800025
Landis EC, Hamers RJ. Covalent Grafting of Ferrocene to Vertically Aligned Carbon Nanofibers: Electron-transfer Processes at Nanostructured Electrodes. Journal of Physical Chemistry C [Internet]. 2008;112:16910-16918. <Go to ISI>://000260357800029
Landis EC, Hamers RJ. Covalent Grafting of Redox-Active Molecules to Vertically Aligned Carbon Nanofiber Arrays via "Click" Chemistry. Chemistry of Materials [Internet]. 2009;21:724-730. <Go to ISI>://000263431600019
Lasseter TL, Cai W, Hamers RJ. Frequency-dependent electrical detection of protein binding events. Analyst [Internet]. 2004;129:3-8. <Go to ISI>://000187784900002
Lasseter TL, Clare BH, Abbott NL, Hamers RJ. Covalently modified silicon and diamond surfaces: Resistance to nonspecific protein adsorption and optimization for biosensing. Journal of the American Chemical Society [Internet]. 2004;126:10220-10221. <Go to ISI>://000223433700014
Lee SW, Hovis JS, Coulter SK, Hamers RJ, Greenlief CM. Cycloaddition chemistry on germanium(001) surfaces: the adsorption and reaction of cyclopentene and cyclohexene. Surface Science [Internet]. 2000;462:6-18. <Go to ISI>://000088970500006