TY - JOUR
T1 - Novel lanthanide-based polymeric chains and corresponding ultrafast dynamics in solution
AU - Thielemann, Dominique
AU - Klinger, Melanie
AU - Wolf, Thomas
AU - Lan, Yanhua
AU - Wernsdorfer, Wolfgang
AU - Busse, Madleen
AU - Roesky, Peter
AU - Unterreiner, Andreas
AU - Powell, Annie
AU - Junk, Peter
AU - Deacon, Glen
PY - 2011
Y1 - 2011
N2 - Two types of structurally related one-dimensional coordination polymers were prepared by reacting lanthanide trichloride hydrates [LnCl(3) center dot (H(2)O)(m)] with dibenzoyl-methane (Ph(2)acacH) and a base. Using cesium carbonate (Cs(2)CO(3)) and praseodymium, neodymium, samarium, or dysprosium salts yielded [Cs Ln(Ph(2)acac)(4) ) (Ln = Pr (1), Nd (2), Sm (3), Dy (4)) in considerable yields. Reaction of potassium tert-butoxide (KOtBu) and the neodymium salt [NdCl(3) center dot (H(2)O)(6)] with Ph(2)acacH resulted in [K Nd(Ph(2)acac)(4) (n) (5). All polymers exhibit a heterobimetallic backbone composed of alternating lanthanide and alkali metal atoms which are bridged by the Ph(2)acac ligands in a linear fashion. ESI-MS investigations on DMF solutions of 1-5 revealed a dissociation of all the five compounds upon dissolution, irrespective of the individual lanthanide and alkali metal present. Temporal profiles of changes in optical density were acquired performing pump/probe experiments with DMF solutions of 1-5 via femtosecond laser spectroscopy, highlighting a lanthanide-specific relaxation dynamic. The corresponding relaxation times ranging from seven picoseconds to a few hundred picoseconds are strongly dependent on the central lanthanide atom, indicating an intramolecular energy transfer from ligands to lanthanides. This interpretation also demands efficient intersystem crossing within one to two picoseconds from the SI to T, level of the ligands. Magnetic studies show that [Cs Dy(Ph(2)acac)(4) (n) (4) has slow relaxation of the magnetization arising from the single Dy(3+) ions and can be described as a single-ion single molecule magnet (SMM). Below 0.5 K, hysteresis loops of the magnetization are observed, which show weak single chain magnet (SCM) behavior.
AB - Two types of structurally related one-dimensional coordination polymers were prepared by reacting lanthanide trichloride hydrates [LnCl(3) center dot (H(2)O)(m)] with dibenzoyl-methane (Ph(2)acacH) and a base. Using cesium carbonate (Cs(2)CO(3)) and praseodymium, neodymium, samarium, or dysprosium salts yielded [Cs Ln(Ph(2)acac)(4) ) (Ln = Pr (1), Nd (2), Sm (3), Dy (4)) in considerable yields. Reaction of potassium tert-butoxide (KOtBu) and the neodymium salt [NdCl(3) center dot (H(2)O)(6)] with Ph(2)acacH resulted in [K Nd(Ph(2)acac)(4) (n) (5). All polymers exhibit a heterobimetallic backbone composed of alternating lanthanide and alkali metal atoms which are bridged by the Ph(2)acac ligands in a linear fashion. ESI-MS investigations on DMF solutions of 1-5 revealed a dissociation of all the five compounds upon dissolution, irrespective of the individual lanthanide and alkali metal present. Temporal profiles of changes in optical density were acquired performing pump/probe experiments with DMF solutions of 1-5 via femtosecond laser spectroscopy, highlighting a lanthanide-specific relaxation dynamic. The corresponding relaxation times ranging from seven picoseconds to a few hundred picoseconds are strongly dependent on the central lanthanide atom, indicating an intramolecular energy transfer from ligands to lanthanides. This interpretation also demands efficient intersystem crossing within one to two picoseconds from the SI to T, level of the ligands. Magnetic studies show that [Cs Dy(Ph(2)acac)(4) (n) (4) has slow relaxation of the magnetization arising from the single Dy(3+) ions and can be described as a single-ion single molecule magnet (SMM). Below 0.5 K, hysteresis loops of the magnetization are observed, which show weak single chain magnet (SCM) behavior.
UR - http://pubs.acs.org/doi/pdfplus/10.1021/ic201157m
UR - https://www.scopus.com/pages/publications/82355187783
U2 - 10.1021/ic201157m
DO - 10.1021/ic201157m
M3 - Article
SN - 0020-1669
VL - 50
SP - 11990
EP - 12000
JO - Inorganic Chemistry
JF - Inorganic Chemistry
IS - 23
ER -