The Impact of the Next-Nearest Neighbor Dispersion Interactions on Spin Crossover Transition Enthalpy Evidenced by Experimental and Computational Analyses of Neutral π-Extended Heteroleptic Fe(III) Complexes.
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[1] Y. Einaga,et al. High-Temperature Cooperative Spin Crossover Transitions and Single-Crystal Reflection Spectra of [FeIII(qsal)2](CH3OSO3) and Related Compounds , 2019, Crystals.
[2] W. Nicolazzi,et al. Complete Set of Elastic Moduli of a Spin-Crossover Solid: Spin-State Dependence and Mechanical Actuation. , 2018, Journal of the American Chemical Society.
[3] J. Tao,et al. Monitoring the Spin States of Ferrous Ions by Fluorescence Spectroscopy in Spin-Crossover-Fluorescent Hybrid Materials. , 2018, Chemistry.
[4] S. Hayami,et al. Intermolecular Interaction Tuning of Spin-Crossover Iron(III) Complexes with Aromatic Counteranions. , 2018, Inorganic chemistry.
[5] Peter R. Spackman,et al. Accurate Lattice Energies for Molecular Crystals from Experimental Crystal Structures. , 2018, Journal of chemical theory and computation.
[6] Y. Einaga,et al. Contribution of Coulomb Interactions to a Two-Step Crystal Structure Phase Transformation Coupled with a Significant Change in Spin Crossover Behavior for a Series of Charged FeII Complexes from 2,6-Bis(2-methylthiazol-4-yl)pyridine. , 2018, Inorganic chemistry.
[7] S. Agarwal,et al. Spin-Crossover Iron(II) Coordination Polymer with Fluorescent Properties: Correlation between Emission Properties and Spin State. , 2018, Journal of the American Chemical Society.
[8] R. Xiong,et al. A Ferroelectric Iron(II) Spin Crossover Material. , 2017, Angewandte Chemie.
[9] G. Molnár,et al. A Bistable Microelectromechanical System Actuated by Spin-Crossover Molecules. , 2017, Angewandte Chemie.
[10] S. Tsuzuki,et al. Intermolecular interactions of oligothienoacenes: Do S⋯S interactions positively contribute to crystal structures of sulfur-containing aromatic molecules? , 2016, The Journal of chemical physics.
[11] M. Halcrow,et al. A Unified Treatment of the Relationship Between Ligand Substituents and Spin State in a Family of Iron(II) Complexes , 2016, Angewandte Chemie.
[12] Y. Einaga,et al. A New Family of Anionic Fe(III) Spin Crossover Complexes Featuring a Weak-Field N2O4 Coordination Octahedron. , 2016, Chemistry.
[13] A. Bousseksou,et al. Fe(II)(pap-5NO2)2 and Fe(II)(qsal-5NO2)2 Schiff-base spin-crossover complexes: a rare example with photomagnetism and room-temperature bistability. , 2015, Inorganic chemistry.
[14] M. Shatruk,et al. Photomagnetic response in highly conductive iron(II) spin-crossover complexes with TCNQ radicals. , 2015, Angewandte Chemie.
[15] M. J. Turner,et al. Accurate and Efficient Model Energies for Exploring Intermolecular Interactions in Molecular Crystals. , 2014, The journal of physical chemistry letters.
[16] Y. Einaga,et al. Synergistic spin transition between spin crossover and spin-Peierls-like singlet formation in the halogen-bonded molecular hybrid system: [Fe(Iqsal)2 ][Ni(dmit)2 ]⋅CH3 CN⋅H2 O. , 2014, Angewandte Chemie.
[17] A. Namai,et al. 90-degree optical switching of output second-harmonic light in chiral photomagnet , 2013, Nature Photonics.
[18] Yang-guang Li,et al. Rational design of a photomagnetic chain: bridging single-molecule magnets with a spin-crossover complex. , 2013, Journal of the American Chemical Society.
[19] Yann Garcia,et al. Spin state switching in iron coordination compounds , 2013, Beilstein journal of organic chemistry.
[20] M. Halcrow. Spin-crossover materials : properties and applications , 2013 .
[21] S. Ohkoshi,et al. Light-induced spin-crossover magnet. , 2011, Nature chemistry.
[22] Kazuya Saito,et al. Multiple bistability and tristability with dual spin-state conversions in [Fe(dpp)2][Ni(mnt)2]2 x MeNO2. , 2010, Journal of the American Chemical Society.
[23] Y. Einaga,et al. Evidence of the chemical uniaxial strain effect on electrical conductivity in the spin-crossover conducting molecular system: [Fe(III)(qnal)2][Pd(dmit)2]5.acetone. , 2008, Journal of the American Chemical Society.
[24] Osamu Sato,et al. Electrical conductivity modulation coupled to a high-spin-low-spin conversion in the molecular system [FeIII(qsal)2][Ni(dmit)2]3.CH3CN.H2O. , 2006, Inorganic chemistry.
[25] M. Reiher,et al. Estimation of the vibrational contribution to the entropy change associated with the low- to high-spin transition in Fe(phen)2(NCS)2 complexes: Results obtained by IR and Raman spectroscopy and DFT calculations , 2002 .
[26] H. Toftlund. Spin Equilibrium in Solutions , 2001 .
[27] Philipp Gütlich,et al. Thermal and Optical Switching of Iron(II) Complexes , 1994 .
[28] Harry G. Drickamer,et al. Pressure‐Induced Electronic Changes in Compounds of Iron , 1972 .
[29] E. M. Schubert. Utilizing the Evans method with a superconducting NMR spectrometer in the undergraduate laboratory , 1992 .