161. Clegg JK, Brock AJ, Jolliffe KA, Lindoy LF, Parsons S, Tasker PA, White FJ (2017)
Reversible pressure-controlled depolymerization of a copper(II)-containing coordination polymer. Chem Eur J 23:12480–12483
162. Prescimone A, Morien C, Allan D, Schlueter JA, Tozer SW, Manson JL, Parsons S, Brechin
EK, Hill S (2012) Pressure-driven orbital reorientations and coordination-sphere reconstructions in [CuF2(H2O)2(pyz)]. Angew Chem Int Ed 51:7490–7494
163. Willett RD, Gatteschi D, Kahn O (1985) Magneto-structural correlations in exchange coupled
systems. D Reidel Publishing, Boston
164. Parois P, Moggach SA, Sanchez-Benitez J, Kamenev KV, Lennie AR, Warren JE, Brechin
EK, Parsons S, Murrie M (2010) Pressure-induced Jahn–Teller switching in a Mn12
nanomagnet. Chem Commun 46:1881–1883
165. Ghannadzadeh S, Möller JS, Goddard PA et al (2013) Evolution of magnetic interactions in a
pressure-induced Jahn-Teller driven magnetic dimensionality switch. Phys Rev B 87:241102
166. Ovcharenko V, Romanenko G, Polushkin A et al (2019) Pressure-controlled migration of
paramagnetic centers in a heterospin crystal. Inorg Chem 58:9187–9194
167. Dobe C, Strässle T, Juranyi F, Tregenna-Piggott PLW (2006) Pressure-induced switch of the
direction of the unique JahnÀTeller axis of the Chromium(II) hexaqua cation in the deuterated
ammonium chromium Tutton salt. Inorg Chem 45:5066–5072
168. Augustyniak MA, Krupski M (1999) The temperature dependence of the pressure switching of
Jahn–Teller deformation in the deuterated ammonium copper Tutton salt. Chem Phys Lett
311:126–130
169. Prescimone A, Milios CJ, Sanchez-Benitez J et al (2009) High pressure induced spin changes
and magneto-structural correlations in hexametallic SMMs. Dalt Trans 25:4858–4867
170. Craig GA, Sarkar A, Woodall CH et al (2018) Probing the origin of the giant magnetic
anisotropy in trigonal bipyramidal Ni(ii) under high pressure. Chem Sci 9:1551–1559
171. Shepherd HJ, Rosa P, Vendier L, Casati N, Létard J-F, Bousseksou A, Guionneau P, Molnár G
(2012) High-pressure spin-crossover in a dinuclear Fe(ii) complex. Phys Chem Chem Phys
14:5265–5271
172. Shepherd HJ, Bonnet S, Guionneau P, Bedoui S, Garbarino G, Nicolazzi W, Bousseksou A,
Molnár G (2011) Pressure-induced two-step spin transition with structural symmetry breaking:
X-ray diffraction, magnetic, and Raman studies. Phys Rev B 84:144107
173. Laisney J, Shepherd HJ, Rechignat L, Molnár G, Rivière E, Boillot ML (2018) Pressureinduced switching properties of the iron(iii) spin-transition complex [FeIII(3-OMeSalEen)2]
PF6. Phys Chem Chem Phys 20:15951–15959
174. Shepherd HJ, Palamarciuc T, Rosa P, Guionneau P, Molnár G, Létard J-F, Bousseksou A
(2012) Antagonism between extreme negative linear compression and spin crossover in [Fe
(dpp)2(NCS)2]Ápy. Angew Chem Int Ed 51:3910–3914
175. Batten Stuart R, Champness Neil R, Chen X-M, Garcia-Martinez J, Kitagawa S, Öhrström L,
O’Keeffe M, Paik Suh M, Reedijk J (2013) Terminology of metal–organic frameworks and
coordination polymers (IUPAC recommendations 2013). Pure Appl Chem 85:1715
176. Bennett TD, Cheetham AK (2014) Amorphous metal–organic frameworks. Acc Chem Res
47:1555–1562
177. Gaillac R, Pullumbi P, Beyer KA, Chapman KW, Keen DA, Bennett TD, Coudert F-X (2017)
Liquid metal–organic frameworks. Nat Mater 16:1149
178. Moggach SA, Bennett TD, Cheetham AK (2009) The effect of pressure on ZIF-8: increasing
pore size with pressure and the formation of a high-pressure phase at 1.47 GPa. Angew Chem
Int Ed 48:7087–7089
179. Serre C, Millange F, Thouvenot C, Noguès M, Marsolier G, Louër D, Férey G (2002) Very
large breathing effect in the first nanoporous Chromium(III)-based solids: MIL-53 or CrIII
(OH)Á{O2CÀC6H4ÀCO2}Á{HO2CÀC6H4ÀCO2H}xÁH2Oy.
J
Am
Chem
Soc
124:13519–13526
Crystallography Under High Pressures
197
Précédent

- 205/285

Suivant