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1

Hau, Jörg. Ionisation bei Atmosphärendruck. Wiesbaden: Deutscher Universitätsverlag, 1994. http://dx.doi.org/10.1007/978-3-663-14609-4.

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2

Jarvis, Gary K. Ionisation phenomena in perfluorocarbons. Birmingham: University of Birmingham, 1997.

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3

Hamilton, Gavin. Negative air ionisation in buildings. Bracknell: Building Services Research and Information Association, 1985.

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4

Lockyer, N. P. Laser ionisation mass spectrometry of biomolecules. Manchester: UMIST, 1995.

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5

1936-, Payne M. G., ed. Principles and applications of resonance ionisation spectroscopy. Bristol: A. Hilger, 1988.

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6

Smith, S. M. Sputtered neutral mass spectometry using electron beamanddischarge post ionisation. Manchester: UMST, 1994.

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7

Pavey, N. L. Ionisation water treatment: For hot and cold water services. Bracknell: Building Services Research and Information Association, 1996.

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8

Gates, Paul Jonathan. Matrix-assisted laser desorption/ionisation mass spectrometry of saccharides. [s.l.]: typescript, 1995.

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9

Giannakopulos, Anastassios E. Matrix-assisted laser desorption/ionisation collisions of bio-molecules. [s.l.]: typescript, 1994.

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10

universitet, Uppsala, ed. Single and double ionisation of free molecules and condensed matter. Uppsala: Uppsala University, 1991.

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11

Chan, Tak-Wah Dominic. Matrix-assisted ultraviolet laser desorption/ionisation mass spectrometry of macromolecules. [s.l.]: typescript, 1992.

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12

Charnley, Nicholas Carl. Developing new matrices for matrix-assisted laser desorption/ionisation mass spectrometry. [s.l.]: typescript, 2000.

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13

Bernard, Piraux, and Institute of Physics (Great Britain), eds. Electron and photon impact ionization and related topics 2004: Proceedings of the International Conference on Electron and Photon Impact Ionization and Related Topics, Louvain-la-Neuve, Belgium, 1-3 July 2004. Bristol: Institute of Physics Pub., 2005.

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14

T, Whelan Colm, Walters H. R. J, and European Conference on Coincidence Studies of Electron and Photon Impact Ionization (1996 : Belfast, Northern Ireland), eds. Coincidence studies of electron and photon impact ionization. New York: Plenum Press, 1997.

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15

Aplin, Karen L. Electrifying Atmospheres: Charging, Ionisation and Lightning in the Solar System and Beyond. Dordrecht: Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-6633-4.

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16

McConkey, Andrew Greer. Electron correlations in electron and photon impact ionisation of atoms and molecules. Manchester: University of Manchester, 1993.

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17

Lloyd, Paul Maxwell. Matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry of synthetic polymers. [s.l.]: typescript, 1998.

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18

Kroon, Jacobus Petrus Cornelis. Experiments on state selection and penning ionisation with fast metastable rare gas atoms. Eindhoven?]: J.P.C. Kroon, 1985.

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19

Aggarwal, S. K. Burn-up determination of irradiated thoria samples by isotope dilution-thermal ionisation mass spectrometry. Mumbai: Bhabha Atomic Research Centre, 2010.

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20

Myatt, Christopher Paul. The development of a matrix-assisted laser desorption/chemical ionisation time-of-flight mass spectrometer. [s.l.]: typescript, 1999.

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21

Wallace, James Ian. The analysis of biological molecules by electrospray ionisation Fourier transform ion cyclotron resonance (ESIFTICR) mass spectrometry. [s.l.]: typescript, 1999.

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22

Scrivener, E. The development and characterisation of a system for non-resonantmultiphon ionisation (NRMPI) of sputtered neutral species. Manchester: UMIST, 1994.

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23

Reiner, Hartmut. Chemische Ionisation von 2,(w-1)-Dioxoalkanen [Omega-Dioxoalkanen]: Eine massenspektrometrische Untersuchung der Fragmentierungsprozesse nach Protonierung. [S.l.]: [s.n.], 1985.

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24

D, Borisov N., and Milikh G. M, eds. Physics of microwave discharges: Artifically ionized regions in the atmosphere. Amsterdam, The Netherlands: Gordon and Breach, 1997.

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25

Illenberger, E. Gaseous molecular ions: An introduction to elementary processes induced by ionization. Darmstadt: Steinkopff Verlag, 1992.

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26

Lausecker, Berthold Bruno. Evaluation of strategies for coupling high performance micro separation techniques to atmospheric pressure ionisation mass spectrometry for the analysis of complex mixtures. [s.l.]: [s.n.], 1997.

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27

Gallis, M. A. Modelling of ionisation reactions and of the resulting electric fields in one-dimensional hypersonic shock waves with the direct simulation Monte Carlo method. London, England: Imperial College of Science Technology & Medicine, Dept. of Aeronautics, 1992.

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28

Gallis, M. A. The maximum entropy approach applied to energy exchange, chemical reactions and ionisation in the direct simulation Monte Carlo method for rarefied hypersonic flows. London: Imperial College of Science Technology and Medicine, 1993.

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29

L, Cho Young, ed. Plasma discharge in liquid: Water treatment and applications. Boca Raton: Taylor & Francis, 2012.

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30

Rimke, Hubertus. Resonanz-Ionisations-Massenspektrometrie an Uran und Technetium. [s.l.]: [s.n.], 1989.

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31

Varèse, Edgar. Ionisation. Ricordi, 2000.

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32

Hervé, Robert. ionisation sante vitalite. Artulen, 1991.

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33

Hau, Jörg. Ionisation Bei Atmosphärendruck. Deutscher Universitäts Verlag, 1994.

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34

Ionisation Water Treatment (Technical Note). BSRIA, 1996.

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35

Eland, John H. D., and Raimund Feifel. Core–core and core–valence double ionisation. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198788980.003.0008.

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Basic concepts of inner shell double ionisation phenomena are discussed and examples are presented. An empirical model to calculate single-site K-shell double ionisation energies is proposed and the enhanced chemical shifts in double L-shell ionisation are illustrated. Core–valence double ionisation spectra are shown to closely resemble photoelectron spectra from single ionisation in many cases. Core–valence double ionisation spectra of NH3, CO, CO2, OCS, CS2, CF4, Si(CH3)4, benzene, and C60 are presented with analysis. In the context of core ionisation it is customary to use the very economical ‘KLM’ notation, which is universally used in Auger spectroscopy, as well as the chemists’ familiar 1s, 2s, 2p, and so on. This chapter uses the KLM notation sparingly where its brevity is an advantage, so a short table list of equivalents is also included here.
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36

Eland, John H. D., and Raimund Feifel. Introduction. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198788980.003.0001.

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After very brief historical notes, the basis of the TOF-PEPECO technique is explained and other techniques for spectra of doubly charged positive ions are described and compared with this modern method. The meaning of ionisation energies in the context of molecular double ionisation is discussed, with their relationship to electron orbital configurations. With the advent of photoelectron spectroscopy in the 1960s, new techniques allowed complete spectra of valence electron ionisations for each molecule to be revealed in a single measurement. The effects on the spectra of the different major pathways from starting molecules to final doubly ionised states are explained. Details of the experiments are given, including pulsed lamps, synchrotron radiation as light sources, and the magnetic bottle time-of-flight electron spectrometer.
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37

Chemisorption und Ionisation in Metall-Metall-Systemen. Springer London, Limited, 2013.

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38

Moesta, Hasso. Chemisorption und Ionisation in Metall-Metall-Systemen. Springer, 2012.

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39

Electron Impact Ionization. Vienna: Springer Vienna, 1985.

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40

Gonzalez, Maria Belen Hernandez. Ultratrace analysis by resonance ionisation mass spectrometry (RIMS). 2001.

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41

Eland, John, and Raimund Feifel. Double Photoionisation Spectra of Molecules. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198788980.001.0001.

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This book contains spectra of the doubly charged positive ions (dications) of some 75 molecules, including the major constituents of terrestrial and planetary atmospheres and prototypes of major chemical groups. It is intended to be a new resource for research in all areas of molecular spectroscopy involving high energy environments, both terrestrial and extra-terrestrial. All the spectra have been produced by photoionisation using laboratory lamps or synchrotron radiation and have been measured using the magnetic bottle time-of-flight technique by coincidence detection of correlated electron pairs. Full references to published work on the same species are given, though for several molecules these are the first published spectra. Double ionisation energies are listed and discussed in relation to the molecular electronic structure of the molecules. A full introduction to the field of molecular double ionisation is included and the mechanisms by which double photoionisation can occur are examined in detail. A preliminary chapter covers double photoionisation of an atom in order to explain the basic principles of the technique, then five chapters present spectra of molecules of increasing size. A seventh chapter on the new fields of core–core and core–valence double ionisations, with selected examples, completes the main body of the book. Appendices explain the detailed mechanisms of double photoionisation, the calibration of the electron spectrometers, and give a brief summary of the methods by which double ionisation energies are calculated theoretically.
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42

Ancarani, L. U., ed. Electron and Photon Impact Ionisation and Related Topics 2002. CRC Press, 2003. http://dx.doi.org/10.1201/9781482289572.

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43

Varese, Edgard. Ionisation for Percussion Ensemble of 13 Players: Full Score. Ricordi, 1989.

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44

Watts, Mark Frederick. Charge transfer and ionisation in collisions between positive ions. 1986.

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45

Herweg, August Julius. Beiträge Zur Kenntnis der Ionisation Durch Röntgen- und Kathodenstrahlen... Creative Media Partners, LLC, 2018.

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46

Herweg, August Julius. Beiträge Zur Kenntnis der Ionisation Durch Röntgen- und Kathodenstrahlen... Creative Media Partners, LLC, 2018.

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47

D, Perrin D. Ionisation Constants of Inorganic Acids and Bases in Aqueous Solution. Elsevier Science & Technology Books, 2016.

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48

Butler, Andrew Michael. Mass - resolved resonant two - photon ionisation spectroscopy of jet - cooled Cu₂. 1989.

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49

Kowalski, Torsten. Evaluating a surface ionisation detector for measuring alkalis in biomass gasification. 2007.

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50

Eland, John H. D., and Raimund Feifel. Diatomic molecules. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198788980.003.0003.

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Double ionisation of most of the experimentally accessible diatomic molecules has been studied previously by several techniques, including Auger spectroscopy, double electron transfer, kinetic energy release, and high-level theory. New double photoionisation spectra of HBr, HI, N2, CO, NO, O2, Br2, ICl, and I2 are presented here with analysis to identify the electronic states of the doubly charged ions. A simple empirical model is introduced to estimate double ionisation energies on the basis of orbital energies. For CO, NO, and O2, an indirect double ionisation mechanism is found, involving dissociation of a singly charged molecular ion followed by atomic autoionisation of one fragment. Energies of the dication states are listed with distinction between adiabatic and vertical values.
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