Symmetry of octa-coordination environment has a substantial influence on dinuclear TbIII triple-decker single-molecule magnets
Literature Information
Keiichi Katoh, Brian K. Breedlove, Masahiro Yamashita
Single-molecule magnet (SMM) properties of terbium(III)-phthalocyaninato and porphyrinato mixed ligand triple-decker complexes, [(TTP)Tb(Pc)Tb(TTP)] (1) and [(Pc)Tb(Pc)Tb(TTP)] type (2), were studied and were compared with those of the TbIII homoleptic triple-decker complex [(obPc)Tb(obPc)Tb(obPc)] (3) in order to elucidate the relationship between octa-coordination environments and SMM properties (TbIII = terbium(III), TTP2− = tetraphenylporphyrinato, Pc2− = phthalocyaninato, obPc2− = 2,3,9,10,16,17,23,24-octabutoxyphthalocyaninato). By combining TTP2− and Pc2− with TbIII ions, it is possible to make three octa-coordination environments: SP–SP, SAP–SP and SAP–SAP sites, where SAP is square-antiprismatic and SP is square-prismatic. The direction and magnitude of the ligand field (LF) strongly affect the magnetic properties. Complexes 2 and 3, which have SAP–SAP sites, undergo dual magnetic relaxation processes in the low temperature region in a direct current magnetic field. On the other hand, 1, which has an SP–SP environment, undergoes a single magnetic relaxation process, indicating that the octa-coordination environments strongly influence the SMM properties. The SMM behaviour of dinuclear TbIII SMMs 1–3 were explained by using X-ray crystallography and static and dynamic susceptibility measurements. This work shows that the SMM properties can be fine-tuned by introducing different octa-coordination geometries with the same TbIII–TbIII distances.
Related Literature
A polyoxometalate-based polymer electrolyte with an improved electrode interface and ion conductivity for high-safety all-solid-state batteries
Xiangfei Yuan, Cui Sun, Jia-Ning Duan, Jingmin Fan, Ruming Yuan, Jiajia Chen, Jeng-Kuei Chang, Mingsen Zheng, Quanfeng Dong
DOI: 10.1039/C9TA04714J
Smartphone-based optical analysis systems
Sarah Di Nonno, Roland Ulber
DOI: 10.1039/D1AN00025J
Graphene oxide–polybenzimidazolium nanocomposite anion exchange membranes for electrodialysis
Joseph Baugh, Adetunji Alabi, Ahmed AlHajaj, Linda Zou, Robert A. W. Dryfe
DOI: 10.1039/C8TA09160A
Syntheses, crystal structures of a series of novel alkali metal or alkaline earth metal phosphites
Jian-Han Zhang, Jun-Ling Song, Fang Kong, Jiang-Gao Mao
DOI: 10.1039/C3CE26885C
Exceptional TcO4− sorption capacity and highly efficient ReO4− luminescence sensing by Zr4+ MOFs
Sofia Rapti, Stavros A. Diamantis, Argyro Dafnomili, Anastasia Pournara, Euaggelia Skliri, Gerasimos S. Armatas, Athanassios C. Tsipis, Ioannis Spanopoulos, Christos D. Malliakas, Mercouri G. Kanatzidis, John C. Plakatouras, Fotini Noli, Theodore Lazarides, Manolis J. Manos
DOI: 10.1039/C8TA07901C
A coordination polymer of copper(i) iodide with 654 topology constructed from Cu4I4(DABCO)4
Minghui Bi, Guanghua Li, Jia Hua, Xiaomin Liu, Yawei Hu, Zhan Shi, Shouhua Feng
DOI: 10.1039/B709852A
Facile fabrication and application of near-IR light-responsive drug release system based on gold nanorods and phase change material
Junseok Lee, Cherlhyun Jeong, Won Jong Kim
DOI: 10.1039/C4TB01631A
Smartphone-based colorimetric detection systems for glucose monitoring in the diagnosis and management of diabetes
Özlem Kap, Volkan Kılıç, Nesrin Horzum
DOI: 10.1039/D0AN02031A
Sample preparation method for analysis of swipe samples by inductively coupled plasma mass spectrometry
Éva Széles, Zsolt Varga, Zsolt Stefánka
DOI: 10.1039/B926332B
Fabrication and characterization of laser-heated, multiplexed electrospray emitter
Emily R. Groper, Jack A. Barnes, Rory McEwen, Younès Messaddeq, Richard D. Oleschuk
DOI: 10.1039/D1AN00264C
You might also like
How is Ethyl 4-chlorothieno[2,3-b]pyridine-5-carboxylate (CAS: 59713-58-5) typically synthesized?
Ethyl 4-chlorothieno[2,3-b]pyridine-5-carboxylate (CAS: 59713-58-5) can be synth...
What regulatory guidelines apply to 5-Methyl-1H-indole-3-carbaldehyde (CAS: 52562-50-2)?
5-Methyl-1H-indole-3-carbaldehyde (CAS: 52562-50-2) is subject to various regula...
What are the physical and chemical properties of (1,3-Dimethyl-2,4-dioxo-1,2,3,4-tetrahydro-5-pyrimidinyl)boronic acid (CAS: 223418-73-3)?
(1,3-Dimethyl-2,4-dioxo-1,2,3,4-tetrahydro-5-pyrimidinyl)boronic acid is a white...
How should waste containing Sulfocostunolide A (CAS: 1016983-51-9) be handled?
Waste containing Sulfocostunolide A (CAS: 1016983-51-9) should be handled with c...
What precautions should be taken when handling Murraxocin (CAS: 88478-44-8)?
When handling Murraxocin (CAS: 88478-44-8), ensure proper personal protective eq...
What are the physical and chemical properties of Formvar (CAS: 63148-64-1)?
Formvar (CAS: 63148-64-1) is an alkyd resin characterized by a high molecular we...
Is (S)-4-benzyl-2-((benzyloxy)methyl)morpholine (CAS: 205242-66-6) safe?
(S)-4-benzyl-2-((benzyloxy)methyl)morpholine is generally safe when handled with...
What industries use Methyl 1-(5-bromo-2-pyrimidinyl)cyclopropanecarboxylate (CAS: 1447607-69-3)?
Methyl 1-(5-bromo-2-pyrimidinyl)cyclopropanecarboxylate (CAS: 1447607-69-3) is p...
Is 2-Methyl-1-phenyl-1-propanamine hydrochloride (CAS: 24290-47-9) safe?
2-Methyl-1-phenyl-1-propanamine hydrochloride (CAS: 24290-47-9) is generally con...
How is 3-(4-Bromophenyl)-2-methylpropanoic acid (CAS: 66735-01-1) typically synthesized?
3-(4-Bromophenyl)-2-methylpropanoic acid is synthesized through a multi-step pro...
Source Journal
Chemical Science

Our journal has a wide-ranging scope which covers the full breadth of the chemical sciences. The research we publish contains the sorts of novel ideas, challenging questions and progressive thinking that bring undiscovered breakthroughs within reach. Your paper could focus on a single area, or cross many. It could be beyond the accepted bounds of the chemical sciences. It might address an immediate challenge, contribute to a future breakthrough or be wholly conceptual. We’re a team from every field of the chemical sciences, and know from experience that breakthroughs that drive the solutions to global challenges can come from anywhere, at any time. You could even start an entirely new area of research. Too bold? Too progressive? No such thing














