83. Warren BE, Averbach BL (1952) The separation of cold-work distortion on X-ray patterns. J
Appl Phys 21:595–599
84. Lovesey SW (1984) Theory of neutron diffraction from condensed matter. Volume 1: Neutron
scattering. Clarendon Press, Oxford University Press, Oxford
85. Piccoli PMB, Koetzle TF, Schultz AJ (2007) Single crystal neutron diffraction for the
inorganic chemist – a practical guide. Comments Inorg Chem 28:303
86. Bau R, Drabnis MH (1997) Structures of transition metal hydrides determined by neutron
diffraction. Inorg Chim Acta 259:27–50
87. Shull C (1995) Early development of neutron scattering. Rev Mod Phys 67:753–757
88. Ibberson RM, David WIF (2002) Neutron powder diffraction structure determination from
powder diffraction data, Chapter 5. Oxford University Press, Oxford
89. Jeffrey GA (1997) An introduction to hydrogen bonding. Oxford University Press, Oxford, pp
235–245
90. Davies M (1947) The physical aspects of the hydrogen bond. Annu Rep Prog Chem 43:5–29
91. Hunter L (1947) The hydrogen bond. Annu Rep Prog Chem 43:141–154
92. Flierler U, Stalke D (2012) More than just distances from electron density studies. Struct Bond
146:1–20
93. Madsen AO (2012) Modelling and analysis of hydrogen atoms. Struct Bond 146:21–52
94. Engles B, Schmidt TC, Gati C, Schirmeister T, Fink RF (2012) Challenging problems in
charge density: polar bonds and the influence of the environment determination. Struct Bond
147:47–98
95. Coppens P (2005) Charge density comes of age. Angew Chem Int Ed 44:6800–6811
96. Coppens P (1997) X-ray charge densities and chemical bonding. Oxford University Press,
Oxford
97. Bader RF (1990) Atoms in molecules – a quantum theory. Oxford University Press, Oxford
98. Popelier PA (2014) The quantum theory of atoms in molecules. In: Frenking G, Shaik S (eds)
The nature of the chemical bond revisited. Weinheim, Wiley, pp 271–308
99. Izyumov Yu A, Naish VE, Ozerov RP (1991) Neutron diffraction of magnetic materials,
translated from Russian by Joachim Buchner. New York Consultants Bureau, New York
100. Seip HM (1973) Molecular structure by diffraction methods. Specialist Periodical Report, vol
1, p 1
101. Rankin DWH, Mitzel N, Morrison C (2013) Structural methods in molecular inorganic
chemistry. Wiley, Weinhem
102. Hargittai I, Hargittai M (eds) (1988) Stereochemical applications of gas phase electron
diffraction. VCH Publishers, Weinheim
103. Hilderbrandt RL, Bonham RL (1971) Structure determination by gas electron diffraction.
Annu Rev Phys Chem 22(1):279–312
104. Rankin DWH, Robertson HE (2009) Davidson G, Ebsworth EAV (eds) Spectroscopic properties of inorganic and organometallic compounds, vol 40. Royal Society of Chemistry,
London, pp 1927-1935
105. Wann DA, Rankin DWH, McCaffrey D, Martin JML, Mawhorter RJ (2014) Equilibrium
gas-phase structures of sodium fluoride, bromide, and iodide monomers and dimers. J Phys
Chem A 118:1925–1937
106. Wann DA, Reilly AM, Rataboul F, Lickiss PD, Rankin DWH (2009) The gas-phase structure
of the hexasilsesquioxane Si 6 O 9 (OSiMe 3 ) 6 . Zeit Naturforsch B 64:1269–1275
107. Hnyk D, Rankin DWH (2009) Stereochemistry of free boranes and heteroboranes from
electron scattering and model chemistries. J Chem Soc Dalton Trans 4:585–599
108. Haaland A (2007) Molecules and models – the molecular structures of main group molecules.
Oxford University Press, Oxford
109. Hargattai M (2000) Structures of metal halides in the gas phase. Chem Rev 100:2233
110. Haaland A (1988) Organometallic compounds of main group elements in stereochemical. In:
Harattai I, Hargattai M, van Nostrand E (eds) Applications of gas phase electron diffraction,
part B, Structural information for selected classes of compound. Wiley, New York
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