LEADER 04568oam 2200517 450 001 9910792211903321 005 20190911112728.0 010 $a1-299-46214-6 010 $a981-277-901-9 010 $a9789812279007 035 $a(OCoLC)844310991 035 $a(MiFhGG)GVRL8RGG 035 $a(EXLCZ)992560000000320250 100 $a20141126h20132013 uy 0 101 0 $aeng 135 $aurun|---uuuua 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 04$aThe X-ray standing wave technique $eprinciples and applications /$feditors, Jorg Zegenhagen, European Synchrotron Radiation Facility, France, Alexander Kazimirov, Cornell University, USA 210 $aSingapore ;$aHackensack, NJ $cWorld Scientific$dc2013 210 1$aNew Jersey :$cWorld Scientific,$d[2013] 210 4$d?2013 215 $a1 online resource (xxii, 534 pages) $cillustrations (some color) 225 1 $aSeries on synchrotron radiation techniques & applications ;$vv. 7 311 $a978-981-227-900-7 311 $a981-277-900-0 320 $aIncludes bibliographical references and index. 327 $a1. X-ray standing waves in a nutshell / Jorg Zegenhagen and Alexander Kazimirov -- 2. Dynamical theory of X-ray standing waves in perfect crystals / Andre Authier -- 3. X-ray standing wave in complex crystal structures / Victor Kohn -- 4. X-ray standing wave in a backscattering geometry / D.P. Woodruff -- 5. X-ray standing wave at the total reflection condition / Michael J. Bedzyk -- 6. X-ray standing wave at grazing incidence and exit / Osami Sakata and Terrence Jach -- 7. X-ray standing wave in multilayers / Michael J. Bedzyk and Joseph A. Libera -- 8. Kinematical X-ray standing waves / Martin Tolkiehn and Dmitri V. Novikov -- 9. X-ray waveguides / Ianna Bukreev [and 4 others] -- 10. Compton scattering from X-ray standing wave field / Vladimir Bushuev -- 11. Theory of photoelectron emission from an X-ray interference field / Ivan A. Vartanyants and Jorg Zegenhagen -- 12. Site-specific X-ray photoelectron spectroscopy using X-ray standing waves / Joseph C. Woicik -- 13. Experimental basics / Alexander Kazimirov and Jorg Zegenhagen -- 14. XSW imaging / Michael J. Bedzyk and Paul Fenter -- 15. X-ray standing waves in quasicrystals : atomic positions in an aperiodic lattice / Terrence Jach -- 16. X-ray standing waves in thin crystals : probing the polarity of thin epitaxial films / Alexander Kazimirov, Jorg Zegenhagen, Tien-Lin Lee and Michael Bedzyk -- 17. Isotopic effect on the lattice constant of germanium and silicon / Alexander Kazimirov [and 4 others] -- 18. Biomembrane models and organic monolayers on liquid and solid surfaces / S.I. Zheludeva [and 6 others] -- 19. Applications of XSW in interfacial geochemistry / Paul Fenter -- 20. Complex surface phases of Sb on Si(113) : combining XSW and density functional theory / M. Siebert, Th. Schmidt, J.I. Flege and J. Falta -- 21. X-ray standing wave analysis of non-commensurate adsorbate structures produced by Ga adsorption on Ge(111) / Jorg Zegenhagen -- 22. Photon stimulated desorption / Jan Ingo Flege [and 4 others] -- 23. Depth-profiling of marker layers using X-ray waveguides / Ajay Gupta -- 24. Coherent diffraction imaging with hard X-ray waveguides / Liberato de Caro [and 4 others] -- 25. X-ray standing wave for chemical-state specific surface structure determination / D.P. Woodruff -- 26. Site-specific X-ray photoelectron spectra of transition-metal oxides / Joseph C. Woicik -- 27. Probing multilayer nanostructures with photoelectron and X-ray emission spectroscopies excited by X-ray standing waves / S.-H. Yang, B.C. Sell, B.S. Mun and C.S. Fadley. 330 $aThis volume presents the theoretical background, technical requirements and distinguished experimental highlights of the X-ray standing wave (XSW) technique. It equips scientists with the necessary information and knowledge to understand and use the XSW technique in practically all applications. 410 0$aWorld Scientific series on synchrotron radiation techniques and applications ;$vvol. 7. 606 $aX-rays 606 $aStanding waves 606 $aElectromagnetic waves 615 0$aX-rays. 615 0$aStanding waves. 615 0$aElectromagnetic waves. 676 $a530.141 702 $aZegenhagen$b Jorg 702 $aKazimirov$b Alexander 801 0$bMiFhGG 801 1$bMiFhGG 906 $aBOOK 912 $a9910792211903321 996 $aThe X-ray standing wave technique$93683091 997 $aUNINA LEADER 01740nam 2200517 450 001 9910825025503321 005 20230706192838.0 010 $a1-118-76991-0 010 $a1-5231-0978-5 010 $a1-118-76981-3 010 $a1-118-76963-5 035 $a(CKB)4330000000007040 035 $a(EBL)4613266 035 $a(MiAaPQ)EBC4613266 035 $a(Au-PeEL)EBL4613266 035 $a(CaPaEBR)ebr11239162 035 $a(CaONFJC)MIL943455 035 $a(OCoLC)956646294 035 $a(EXLCZ)994330000000007040 100 $a20160510h20162016 uy| 0 101 0 $aeng 135 $aur|n|---||||| 181 $2rdacontent 182 $2rdamedia 183 $2rdacarrier 200 10$aDeactivation of heavy oil hydroprocessing catalysts $efundamentals and modeling /$fJorge Ancheyta 210 1$aHoboken, New Jersey :$cJohn Wiley & Sons,$d[2016] 210 4$dİ2016 215 $a1 online resource (339 p.) 300 $aDescription based upon print version of record. 311 $a1-118-76984-8 320 $aIncludes bibliographical references and index. 327 $aProperties of heavy oils -- Properties of catalysts for heavy oil hydroprocessing -- Deactivation of hydroprocessing catalysts -- Characterization of spent hydroprocessing catalyst -- Modeling catalyst deactivation. 606 $aPetroleum$xRefining 606 $aCatalyst poisoning 615 0$aPetroleum$xRefining. 615 0$aCatalyst poisoning. 676 $a622/.33827 700 $aAncheyta$b Jorge$0915445 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910825025503321 996 $aDeactivation of heavy oil hydroprocessing catalysts$94076614 997 $aUNINA