Register      Login
Australian Journal of Chemistry Australian Journal of Chemistry Society
An international journal for chemical science

Articles citing this paper

Structural, Magnetic and Mössbauer Spectral Studies of Salts of Bis[2,6-bis(pyrazol-3-yl)pyridine]iron(II)—a Spin Crossover System

KH Sugiyarto, DC Craig, AD Rae and HA Goodwin
47(5) pp.869 - 890


84 articles found in Crossref database.

A Guideline to the Design of Molecular‐Based Materials with Long‐Lived Photomagnetic Lifetimes
Létard Jean‐François, Guionneau Philippe, Nguyen Olivier, Costa José Sánchez, Marcén Silvia, Chastanet Guillaume, Marchivie Mathieu, Goux‐Capes Laurence
Chemistry – A European Journal. 2005 11(16). p.4582
Spin Crossover in [Fe(2-Picolylamine)3]2+ Adjusted by Organosulfonate Anions
Zhao Xin-Hua, Zhang Shao-Liang, Shao Dong, Wang Xin-Yi
Inorganic Chemistry. 2015 54(16). p.7857
Spin transitions in a series of [Fe(pybox)2]2+ complexes modulated by ligand structures, counter anions, and solvents
Zhu Yuan-Yuan, Li Hong-Qing, Ding Zhong-Yu, Lü Xiao-Jin, Zhao Liang, Meng Yin-Shan, Liu Tao, Gao Song
Inorganic Chemistry Frontiers. 2016 3(12). p.1624
High‐Spin → Low‐Spin Relaxation in [Fe(bpp)2](CF3SO3)2 H2O after LIESST and Thermal Spin‐State Trapping—Dynamics of Spin Transition Versus Dynamics of Phase Transition
Buchen T., Gütlich P., Sugiyarto K. H., Goodwin H. A.
Chemistry – A European Journal. 1996 2(9). p.1134
Spin‐Crossover Materials (2013)
Létard Jean‐François, Chastanet Guillaume, Guionneau Philippe, Desplanches Cedric
Iron(ii) complexes of 4-sulfanyl-, 4-sulfinyl- and 4-sulfonyl-2,6-dipyrazolylpyridine ligands. A subtle interplay between spin-crossover and crystallographic phase changes
Kershaw Cook Laurence J., Kulmaczewski Rafal, Barrett Simon A., Halcrow Malcolm A.
Inorganic Chemistry Frontiers. 2015 2(7). p.662
Spin Crossover, Polymorphism and Porosity to Liquid Solvent in Heteroleptic Iron(III) {Quinolylsalicylaldimine/Thiosemicarbazone‐Salicylaldimine} Complexes
Phonsri Wasinee, Davies Casey G., Jameson Guy N. L., Moubaraki Boujemaa, Murray Keith S.
Chemistry – A European Journal. 2016 22(4). p.1322
On the dielectric properties of the spin crossover complex [Fe(bpp)2] [BF4]2
Guillon Thomas, Bonhommeau Sébastien, Costa José Sanchez, Zwick Antoine, Létard Jean‐François, Demont Philippe, Molnár Gábor, Bousseksou Azzedine
physica status solidi (a). 2006 203(11). p.2974
Synthesis, Structure, and Magnetic Characterization of a Series of Iron(II) Coordination Frameworks with 2, 6‐Bis(1, 2,4‐triazole‐4‐yl)pyridine
Liu Yue, Huo Jian Zhong, Liu Yuan Yuan, Su XiuMei, Guo Jian Hua, Ding Bin, Wang Xiu Guang, Xia Jun
Zeitschrift für anorganische und allgemeine Chemie. 2015 641(14). p.2422
Complexation of 2,6‐Bis(3‐pyrazolyl)pyridine–Bis(thiocyanato)iron(II) with a Bridging 4,4′‐Bipyridine: A New Example of a Dinuclear Spin Crossover Complex
Fedaoui Dalila, Bouhadja Yacine, Kaiba Abdellah, Guionneau Philippe, Létard Jean‐François, Rosa Patrick
European Journal of Inorganic Chemistry. 2008 2008(7). p.1022
Local Coordination Geometry and Spin State in Novel FeII Complexes with 2,6‐Bis(pyrazol‐3‐yl)pyridine‐Type Ligands as Controlled by Packing Forces: Structural Correlations
Craig Gavin A., Costa José Sánchez, Roubeau Olivier, Teat Simon J., Aromí Guillem
Chemistry – A European Journal. 2012 18(37). p.11703
Spin-crossover compounds based on iron(ii) complexes of 2,6-bis(pyrazol-1-yl)pyridine (bpp) functionalized with carboxylic acid and ethyl carboxylic acid
García-López Víctor, Palacios-Corella Mario, Abhervé Alexandre, Pellicer-Carreño Isaac, Desplanches Cédric, Clemente-León Miguel, Coronado Eugenio
Dalton Transactions. 2018 47(47). p.16958
Handbook on the Physics and Chemistry of Rare Earths Volume 40 (2010)
Piguet Claude, Bünzli Jean-Claude G.
Ditopic bis-heteroazolylpyridines for construction of fluorescent silver(I) bridged metalloligands
Kershaw Cook Laurence J., Ramsay Massimiliano L.A.
Inorganic Chemistry Communications. 2019 104 p.207
Unusual Electronic Effects of Electron-Withdrawing Sulfonamide Groups in Optically and Magnetically Active Self-Assembled Noncovalent Heterodimetallic d−f Podates
Edder Carine, Piguet Claude, Bernardinelli Gérald, Mareda Jiri, Bochet Christian G., Bünzli Jean-Claude G., Hopfgartner Gérard
Inorganic Chemistry. 2000 39(22). p.5059
A π–π 3D network of tetranuclear μ2/μ3-carbonato Dy(iii) bis-pyrazolylpyridine clusters showing single molecule magnetism features
Gass Ian A., Moubaraki Boujemaa, Langley Stuart K., Batten Stuart R., Murray Keith S.
Chemical Communications. 2012 48(15). p.2089
Photomagnetism of iron(ii) spin crossover complexes—the T(LIESST) approach
Létard Jean-François
J. Mater. Chem.. 2006 16(26). p.2550
Synthesis, Structures, Magnetic and Luminescent Properties of a Series of Iron(II) and Zinc(II) Coordination Frameworks with Versatile 4‐Substitued 1, 2,4‐Triazole Ligands
Zhai Bin, Li Zhong‐Yi, Zhang Xiang‐Fei, Wu Xiang‐Xia, Guo Jian‐Hua, Huo Jian‐Zhong, Ding Bin
Zeitschrift für anorganische und allgemeine Chemie. 2016 642(3). p.260
How to Switch Spin‐Crossover Metal Complexes at Constant Room Temperature
Khusniyarov Marat M.
Chemistry – A European Journal. 2016 22(43). p.15178
Spin state switching in 2,6-bis(pyrazol-3-yl)pyridine (3-bpp) based Fe(II) complexes
Craig Gavin A., Roubeau Olivier, Aromí Guillem
Coordination Chemistry Reviews. 2014 269 p.13
Lattice water molecules tuned spin-crossover for an iron(ii) complex with thermal hysteresis
Luo Yang-Hui, Yang Li-Jing, Liu Qing-Ling, Ling Yang, Wang Wei, Sun Bai-Wang
Dalton Trans.. 2014 43(44). p.16937
Spin crossover in iron(II) hexafluorophosphate complexes with 2-(pyridin-2-yl)-4-(3,5-di-R-1H-pyrazol-1-yl)-6-methylpyrimidines
Bushuev Mark B., Vinogradova Katerina A., Gatilov Yuri V., Korolkov Ilya V., Nikolaenkova Elena B., Krivopalov Viktor P.
Inorganica Chimica Acta. 2017 467 p.238
Control of the spin state of Fe(II) 2,6-di(pyrazol-1-yl)pyridine complexes by distal ligand substitution
Holland Joanne M., Barrett Simon A., Kilner Colin A., Halcrow Malcolm A.
Inorganic Chemistry Communications. 2002 5(5). p.328
Spin-crossover in [Fe(3-bpp)2][BF4]2 in different solvents – A dramatic stabilisation of the low-spin state in water
Barrett Simon A., Kilner Colin A., Halcrow Malcolm A.
Dalton Transactions. 2011 40(45). p.12021
Reversible On–Off Switching of the Hysteretic Spin Crossover in a Cobalt(II) Complex via Crystal to Crystal Transformation
Shao Dong, Shi Le, Shen Fu-Xing, Wei Xiao-Qin, Sato Osamu, Wang Xin-Yi
Inorganic Chemistry. 2019 58(17). p.11589
The synthesis and coordination chemistry of 2,6-bis(pyrazolyl)pyridines and related ligands — Versatile terpyridine analogues
Halcrow Malcolm A.
Coordination Chemistry Reviews. 2005 249(24). p.2880
Spin crossover in polymeric and heterometallic FeIIspecies containing polytopic dipyridylamino-substituted-triazine ligands
Ross Tamsyn M., Moubaraki Boujemaa, Batten Stuart R., Murray Keith S.
Dalton Trans.. 2012 41(9). p.2571
Spin Crossover in Transition Metal Compounds I (2004)
Goodwin Harold A.
Unravelling the spin-state of solvated [Fe(bpp)2]2+ spin-crossover complexes: structure–function relationship
Giménez-López Maria del Carmen, Clemente-León Miguel, Giménez-Saiz Carlos
Dalton Transactions. 2018 47(31). p.10453
Synthesis and spin-crossover characteristics of polynuclear 4-(2′-hydroxy-ethyl)-1,2,4-triazole Fe(II) molecular materials
Garcia Yann, van Koningsbruggen Petra J., Lapouyade René, Rabardel Louis, Kahn Olivier, Wieczorek Maciej, Bronisz Robert, Ciunik Zbigniew, Rudolf Mikolaj F.
Comptes Rendus de l'Académie des Sciences - Series IIC - Chemistry. 1998 1(8). p.523
Switching on thermal and light-induced spin crossover by desolvation of [Fe(3-bpp)2](XO4)2·solvent (X = Cl, Re) compounds
Djemel Abdelhak, Stefanczyk Olaf, Desplanches Cédric, Kumar Kunal, Delimi Rachid, Benaceur Farouk, Ohkoshi Shin-ichi, Chastanet Guillaume
Inorganic Chemistry Frontiers. 2021 8(13). p.3210
Co-crystallisation as a modular approach to the discovery of spin-crossover materials
Birchall Lee T., Truccolo Giada, Jackson Lewis, Shepherd Helena J.
Chemical Science. 2022 13(11). p.3176
Synthesis, Structure, and Magnetic Properties of a Tris[3-(2-pyridyl)-1,2,4-triazole]iron(II) Spin-Crossover Complex
Stassen Arno F., de Vos Matthijs, van Koningsbruggen Petra J., Renz Franz, Ensling Jürgen, Kooijman Huub, Spek Anthony L., Haasnoot Jaap G., Gütlich Philipp, Reedijk Jan
European Journal of Inorganic Chemistry. 2000 2000(10). p.2231
Structural Transformations and Magnetic Effects Induced by Solvent Exchange in the Spin Crossover Complex [Fe(bpp)2][Cr(bpy)(ox)2]2
Giménez‐López Mari Carmen, Clemente‐León Miguel, Coronado Eugenio, Romero Francisco M., Shova Sergiu, Tuchagues Jean‐Pierre
European Journal of Inorganic Chemistry. 2005 2005(14). p.2783
Spin Crossover in Transition Metal Compounds I (2004)
van Koningsbruggen Petra J.
The spin-states and spin-transitions of mononuclear iron(II) complexes of nitrogen-donor ligands
Halcrow Malcolm A.
Polyhedron. 2007 26(14). p.3523
Spin crossover active iron(II) complexes of selected pyrazole-pyridine/pyrazine ligands
Olguín Juan, Brooker Sally
Coordination Chemistry Reviews. 2011 255(1-2). p.203
Interplay between spin crossover and proton migration along short strong hydrogen bonds
Jornet-Mollá Verónica, Giménez-Saiz Carlos, Cañadillas-Delgado Laura, Yufit Dmitry S., Howard Judith A. K., Romero Francisco M.
Chemical Science. 2021 12(3). p.1038
Spin crossover complexes as building units of hydrogen-bonded nanoporous structures
Coronado Eugenio, Giménez-López M. Carmen, Giménez-Saiz Carlos, Romero Francisco M.
CrystEngComm. 2009 11(10). p.2198
2,6‐Bis(pyrazol‐3‐yl)pyridine as Meridional Capping Ligand: Synthesis, Characterization, and Crystal Structure of the First Corresponding Hexanuclear Iron(III) Complex 
Plaul Daniel, Spielberg Eike T., Plass Winfried
Zeitschrift für anorganische und allgemeine Chemie. 2010 636(7). p.1268
Anion-dependent spin crossover in solution for an iron(ii) complex of a 1H-pyrazolyl ligand
Barrett Simon A., Halcrow Malcolm A.
RSC Advances. 2014 4(22). p.11240
A Sequential Method to Prepare Polymorphs and Solvatomorphs of [Fe(1,3‐bpp)2](ClO4)2⋅nH2O (n=0, 1, 2) with Varying Spin‐Crossover Behaviour
Bartual‐Murgui Carlos, Codina Carlota, Roubeau Olivier, Aromí Guillem
Chemistry – A European Journal. 2016 22(36). p.12767
The syntheses, spectra and structures of five-coordinate cobalt(II) complexes of pyrazolyl-containing ligands
Dong Gordon, Matthews Jeremy P., Craig Donald C., Baker Anthony T.
Inorganica Chimica Acta. 1999 284(2). p.266
Hydrogen bonding influences on the properties of heavily hydrated chloride salts of iron(ii) and ruthenium(ii) complexes of 2,6-bis(pyrazol-3-yl)pyridine, 2,6-bis(1,2,4-triazol-3-yl)pyridine and 2,2′∶6′,2″-terpyridine
Scudder Marcia L., Craig Donald C., Goodwin Harold A.
CrystEngComm. 2005 7(107). p.642
Metal Dilution of Cooperative Spin‐Crossover Compounds: When Stable and Metastable High‐Spin States Meet
Paradis Nicolas, Chastanet Guillaume, Varret François, Létard Jean‐François
European Journal of Inorganic Chemistry. 2013 2013(5-6). p.968
Spin state transition in iron(II): a review on bis-[(2,6-bis(pyrazol-3-yl)pyridine]iron(II) complex
Sugiyarto K H
Journal of Physics: Conference Series. 2019 1156 p.012007
A study of the thermal and light induced spin transition in [FeL2](BF4)2and [FeL2](ClO4)2L = 2,6-di(3-methylpyrazol-1-yl)pyrazine
Money Victoria A., Elhaïk Jerome, Radosavljevic Evans Ivana, Halcrow Malcolm A., Howard Judith A. K.
Dalton Trans.. 2004 (1). p.65
A Range of Spin‐Crossover Temperature T1/2>300 K Results from Out‐of‐Sphere Anion Exchange in a Series of Ferrous Materials Based on the 4‐(4‐Imidazolylmethyl)‐2‐(2‐imidazolylmethyl)imidazole (trim) Ligand, [Fe(trim)2]X2 (X=F, Cl, Br, I): Comparison of Experimental Results with Those Derived from Density Functional Theory Calculations
Lemercier Gilles, Bréfuel Nicolas, Shova Sergiu, Wolny Juliusz A., Dahan Françoise, Verelst Marc, Paulsen Hauke, Trautwein Alfred X., Tuchagues Jean‐Pierre
Chemistry – A European Journal. 2006 12(28). p.7421
Molecular Magnetism: From Molecular Assemblies to the Devices (1996)
Gütlich Philipp, Jung Jürgen, Goodwin Harold A.
FeII Spin crossover materials based on dissymmetrical N4 Schiff bases including 2-pyridyl and 2R-imidazol-4-yl rings: Synthesis, crystal structure and magnetic and Mössbauer properties
Bréfuel Nicolas, Vang Isabelle, Shova Sergiu, Dahan Françoise, Costes Jean-Pierre, Tuchagues Jean-Pierre
Polyhedron. 2007 26(8). p.1745
Influence of Hydrogen Bonding on the Hysteresis Width in Iron(II) Spin‐Crossover Complexes
Weber Birgit, Bauer Wolfgang, Pfaffeneder Toni, Dîrtu Marinela M., Naik Anil D., Rotaru Aurelian, Garcia Yann
European Journal of Inorganic Chemistry. 2011 2011(21). p.3193
Two new 4′,4′′-disubstituted dipyrazolylpyridine derivatives, and the structures and spin states of their iron(II) complexes
Pritchard Ruth, Kilner Colin A., Barrett Simon A., Halcrow Malcolm A.
Inorganica Chimica Acta. 2009 362(12). p.4365
A Brønsted‐Ligand‐Based Iron Complex as a Molecular Switch with Five Accessible States
Shiga Takuya, Saiki Ryo, Akiyama Lisa, Kumai Reiji, Natke Dominik, Renz Franz, Cameron Jamie M., Newton Graham N., Oshio Hiroki
Angewandte Chemie. 2019 131(17). p.5714
Copper(II) compounds of the planar-tridentate ligand 2,6-bis(pyrazol-3-yl)pyridine
Gamez Patrick, Steensma Rosienne H, Driessen Willem L, Reedijk Jan
Inorganica Chimica Acta. 2002 333(1). p.51
Triazole‐Based One‐Dimensional Spin‐Crossover Coordination Polymers
Roubeau Olivier
Chemistry – A European Journal. 2012 18(48). p.15230
Gels, xerogels and films of polynuclear iron(ii)–aminotriazole spin-crossover polymeric complexes
Sánchez-Ferrer Antoni, Bräunlich Irene, Ruokolainen Janne, Bauer Matthias, Schepper Rahel, Smith Paul, Caseri Walter, Mezzenga Raffaele
RSC Adv.. 2014 4(105). p.60842
Iron(ii) complexes of 2,6-di(1H-pyrazol-3-yl)-pyridine derivatives with hydrogen bonding and sterically bulky substituents
Roberts Thomas D., Little Marc A., Kershaw Cook Laurence J., Halcrow Malcolm A.
Dalton Transactions. 2014 43(20). p.7577
Photomagnetic properties of iron(ii) spin crossover complexes of 2,6-dipyrazolylpyridine and 2,6-dipyrazolylpyrazine ligands
Carbonera Chiara, Sánchez Costa José, Money Victoria A., Elhaïk Jérôme, Howard Judith A. K., Halcrow Malcolm A., Létard Jean-François
Dalton Trans.. 2006 (25). p.3058
Spin Crossover in Transition Metal Compounds III (2004)
Létard Jean-François, Guionneau Philippe, Goux-Capes Laurence
Structure:function relationships in molecular spin-crossover complexes
Halcrow Malcolm A.
Chemical Society Reviews. 2011 40(7). p.4119
Spin crossover iron(ii) complexes as PARACEST MRI thermometers
Jeon Ie-Rang, Park Jesse G., Haney Chad R., Harris T. David
Chem. Sci.. 2014 5(6). p.2461
Magnetism: Molecules to Materials (2004)
Gütlich Philipp, Garcia Yann, Spiering Hartmut
Coordination Dependence of Magnetic Properties within a Family of Related [FeII2] Complexes of a Triazine‐Based Ligand
Quesada Manuel, de Hoog Paul, Gamez Patrick, Roubeau Olivier, Aromí Guillem, Donnadieu Bruno, Massera Chiara, Lutz Martin, Spek Anthony L., Reedijk Jan
European Journal of Inorganic Chemistry. 2006 2006(7). p.1353
One pot synthesis of two Mn(II) perchlorate complexes with s -triazine NNN -pincer ligand; molecular structure, Hirshfeld analysis and DFT studies
Soliman Saied M., El-Faham Ayman
Journal of Molecular Structure. 2018 1164 p.344
A Brønsted‐Ligand‐Based Iron Complex as a Molecular Switch with Five Accessible States
Shiga Takuya, Saiki Ryo, Akiyama Lisa, Kumai Reiji, Natke Dominik, Renz Franz, Cameron Jamie M., Newton Graham N., Oshio Hiroki
Angewandte Chemie International Edition. 2019 58(17). p.5658
Supramolecular aspects of iron(II) crown-dipyridyl spin-crossover compounds
Gass Ian A., Batten Stuart R., Forsyth Craig M., Moubaraki Boujemaa, Schneider Caspar J., Murray Keith S.
Coordination Chemistry Reviews. 2011 255(17-18). p.2058
Water-soluble NNN-pincer complexes of cobalt, nickel and palladium: Solid-state structures and catalytic activity
Heidebrecht Joshua, Gendy Chris, Gelfand Benjamin S., Roesler Roland
Polyhedron. 2018 143 p.138
Recent advances in the synthesis and applications of 2,6-dipyrazolylpyridine derivatives and their complexes
Halcrow Malcolm A.
New J. Chem.. 2014 38(5). p.1868
Structural, thermal and photomagnetic properties of spin crossover [Fe(bpp)2]2+ salts bearing [Cr(L)(ox)2]− anions
Clemente-León Miguel, Coronado Eugenio, Giménez-López M. Carmen, Romero Francisco M., Asthana Saket, Desplanches Cédric, Létard Jean-François
Dalton Transactions. 2009 (38). p.8087
Deciphering the Influence of Meridional versus Facial Isomers in Spin Crossover Complexes
Lathion Timothée, Guénée Laure, Besnard Céline, Bousseksou Azzedine, Piguet Claude
Chemistry – A European Journal. 2018 24(63). p.16873
Influences of Temperature, Pressure, and Lattice Solvents on the Spin Transition Regime of the Polymeric Compound [Fe(hyetrz)3]A2·3H2O (hyetrz = 4-(2‘-hydroxyethyl)-1,2,4-triazole and A- = 3-nitrophenylsulfonate)
Garcia Yann, van Koningsbruggen Petra J., Lapouyade René, Fournès Léopold, Rabardel Louis, Kahn Olivier, Ksenofontov Vadim, Levchenko Georg, Gütlich Philipp
Chemistry of Materials. 1998 10(9). p.2426
Magnetism: A Supramolecular Function (1996)
Lemercier G., Verelst M., Bousseksou A., Varret F., Tuchagues J.-P.
Doubly Pyrazolate-Bridged Dinuclear Complexes of a Highly Constrained Bis-terdentate Ligand: Observation of a [High Spin-Low Spin] State for [FeII2(PMAP)2][SbF6]2·2.25(C3H8O) (PMAP = 3,5-bis{[N-(2-pyridylmethyl)amino]-methyl}-1H-pyrazolate)
Noble Andy, Olguín Juan, Clérac Rodolphe, Brooker Sally
Inorganic Chemistry. 2010 49(10). p.4560
New Iron(II) Spin Crossover Coordination Polymers [Fe(μ-atrz)3]X2·2H2O (X = ClO4¯, BF4¯) and [Fe(μ-atrz)(μ-pyz)(NCS)2]·4H2O with an Interesting Solvent Effect
Chuang Yu-Chun, Liu Chi-Tsun, Sheu Chou-Fu, Ho Wei-Lun, Lee Gene-Hsiang, Wang Chih-Cheh, Wang Yu
Inorganic Chemistry. 2012 51(8). p.4663
Spin Transition Regime in New One-Dimensional Polymeric Iron(II) Compounds. Importance of the Water Content for the Thermal and Optical Properties
Roubeau Olivier, Haasnoot Jaap G., Codjovi Epiphane, Varret François, Reedijk Jan
Chemistry of Materials. 2002 14(6). p.2559
Spin state behavior of iron(II)/dipyrazolylpyridine complexes. New insights from crystallographic and solution measurements
Kershaw Cook Laurence J., Mohammed Rufeida, Sherborne Grant, Roberts Thomas D., Alvarez Santiago, Halcrow Malcolm A.
Coordination Chemistry Reviews. 2015 289-290 p.2
Spin Transition of [Fe(btr)3](ClO4)2 Studied by X‐ray Absorption Spectroscopy
Lin Yen‐Chen, Hsu I‐Jui, Hsieh Hui‐Huang, Lee Jyh‐Fu, Chen Jin‐Ming, Lee Jenn‐Min, Wang Yu
Journal of the Chinese Chemical Society. 2006 53(6). p.1571
Critical temperature of the LIESST effect in a series of hydrated and anhydrous complex salts [Fe(bpp)2]X2
Marcén S., Lecren L., Capes L., Goodwin H.A., Létard J.-F.
Chemical Physics Letters. 2002 358(1-2). p.87
Unusual Crystal Packing in a Family of [Fe{2,6‐bis(pyrazol‐3‐yl)pyridine}2]2+ Compounds and the Effect on the Occurrence of Spin Crossover and Its Cooperative Character
Barrios Leoní A., Peyrecave‐Lleixà Eugènia, Craig Gavin A., Roubeau Olivier, Teat Simon J., Aromí Guillem
European Journal of Inorganic Chemistry. 2014 2014(35). p.6013
Does cooperativity influence the lifetime of the photo-induced HS state?
Létard Jean-François, Costa José Sanchez, Marcen Silvia, Carbonera Chiara, Desplanches Cédric, Kobayashi Atsushi, Daro Nathalie, Guionneau Philippe, Ader Jean-Pierre
Journal of Physics: Conference Series. 2005 21 p.23
When Stable and Metastable HS States Meet in Spin‐Crossover Compounds
Paradis Nicolas, Chastanet Guillaume, Létard Jean‐François
European Journal of Inorganic Chemistry. 2012 2012(22). p.3618
Supramolecular Tuning of Spin Crossover Properties in Isostructural Cocrystal Solvates
Birchall Lee T., Raja Amber T., Jackson Lewis, Shepherd Helena J.
Crystal Growth & Design. 2023 23(3). p.1768
The Effect of Ligand Design on Metal Ion Spin State—Lessons from Spin Crossover Complexes
Halcrow Malcolm
Crystals. 2016 6(5). p.58
Molecular Magnetism and Iron(II) Spin‐State Equilibrium as Structural Probes in Heterodinuclear d–f Complexes
Piguet Claude, Rivara‐Minten Elisabeth, Hopfgartner Gérard, Bünzli Jean‐Claude G.
Helvetica Chimica Acta. 1995 78(7). p.1651

Committee on Publication Ethics


Abstract Export Citation Get Permission