Javascript must be enabled to continue!
Trigonal planar heteroleptic lanthanide(III) bis(silyl)amide complexes containing aminoxyl radicals and anions
View through CrossRef
Modulation of the crystal field (CF) in lanthanide (Ln) complexes can enhance optical and magnetic properties, and large CF-splitting can be achieved with low coordination numbers in specific geometries. We previously reported that the homoleptic near-linear Sm2+ complex [Sm{N(SiiPr3)2}2] (1-Sm) is oxidized by 2,2,6,6-tetramethylpiperidinyl-1-oxy (TEMPO•) radical to give the heteroleptic, approximately trigonal planar Sm3+ complex, [Sm{N(SiiPr3)2}2(TEMPO)] (2-Sm). Here we report the synthesis of homologous [Ln{N(SiiPr3)2}2(TEMPO)] (2-Ln; Ln = Tm, Yb) complexes by the oxidation of the parent [Ln{N(SiiPr3)2}2] (1-Ln; Ln = Tm, Yb) with TEMPO•; complexes 2-Ln all contain TEMPO– anions. The homoleptic bent Ln3+ complexes [Ln{N(SiiPr3)2}2][B(C6F5)4] (3-Ln; Ln = Sm, Tm, Yb) were also treated with TEMPO• to yield the heteroleptic, approximately trigonal planar Ln3+ complexes [Ln{N(SiiPr3)2}2(TEMPO)][B(C6F5)4] (4-Ln; Ln = Sm, Tm, Yb); the cations of 4-Ln all contain TEMPO• radicals. We have used a combination of UV-vis-NIR and EPR spectroscopy, magnetic measurements and ab initio calculations to compare the electronic structures of geometrically similar 2-Ln and 4-Ln cations. These studies revealed no single-molecule magnet behavior for 2-Yb despite evidence for sizable CF-splitting and high degree of purity of the ground stabilized mJ = |±├ 7/2⟩┤ state, while the radical TEMPO• in 4-Yb did not significantly improve performance.
American Chemical Society (ACS)
Title: Trigonal planar heteroleptic lanthanide(III) bis(silyl)amide complexes containing aminoxyl radicals and anions
Description:
Modulation of the crystal field (CF) in lanthanide (Ln) complexes can enhance optical and magnetic properties, and large CF-splitting can be achieved with low coordination numbers in specific geometries.
We previously reported that the homoleptic near-linear Sm2+ complex [Sm{N(SiiPr3)2}2] (1-Sm) is oxidized by 2,2,6,6-tetramethylpiperidinyl-1-oxy (TEMPO•) radical to give the heteroleptic, approximately trigonal planar Sm3+ complex, [Sm{N(SiiPr3)2}2(TEMPO)] (2-Sm).
Here we report the synthesis of homologous [Ln{N(SiiPr3)2}2(TEMPO)] (2-Ln; Ln = Tm, Yb) complexes by the oxidation of the parent [Ln{N(SiiPr3)2}2] (1-Ln; Ln = Tm, Yb) with TEMPO•; complexes 2-Ln all contain TEMPO– anions.
The homoleptic bent Ln3+ complexes [Ln{N(SiiPr3)2}2][B(C6F5)4] (3-Ln; Ln = Sm, Tm, Yb) were also treated with TEMPO• to yield the heteroleptic, approximately trigonal planar Ln3+ complexes [Ln{N(SiiPr3)2}2(TEMPO)][B(C6F5)4] (4-Ln; Ln = Sm, Tm, Yb); the cations of 4-Ln all contain TEMPO• radicals.
We have used a combination of UV-vis-NIR and EPR spectroscopy, magnetic measurements and ab initio calculations to compare the electronic structures of geometrically similar 2-Ln and 4-Ln cations.
These studies revealed no single-molecule magnet behavior for 2-Yb despite evidence for sizable CF-splitting and high degree of purity of the ground stabilized mJ = |±├ 7/2⟩┤ state, while the radical TEMPO• in 4-Yb did not significantly improve performance.
Related Results
Preparations of Silyl Anions
Preparations of Silyl Anions
AbstractThis review collates synthetic procedures for the synthesis of different silyl anions, which are valuable reagents for chemists, particularly in the field of organic synthe...
Synthesis, Characterization and Antimicrobial Activities of Homoleptic and Heteroleptic Ni²⁺, Cu²⁺, and Zn²⁺ Complexes
Synthesis, Characterization and Antimicrobial Activities of Homoleptic and Heteroleptic Ni²⁺, Cu²⁺, and Zn²⁺ Complexes
The emergence of multidrug-resistant bacteria and fungi has become a major challenge in the pharmaceutical industry. Therefore, there is urgent need for new synthetic antimicrobial...
Monodromías geométricas en familias de curvas de género 4
Monodromías geométricas en familias de curvas de género 4
The goal of the thesis is the effective computation of the geometric monodromy, equivalently the monodromy in the fundamental group, for families of compact connected Riemann surfa...
Engineering Design Methodology for Robot-Based Non-Planar Additive Manufacturing (RbNPAM)
Engineering Design Methodology for Robot-Based Non-Planar Additive Manufacturing (RbNPAM)
Robot-Based Non-Planar Additive Manufacturing (RbNPAM) explores advancements in integrating robotics with additive manufacturing, focusing on the development and application of non...
Lanthanides: Divalent Organometallic Chemistry
Lanthanides: Divalent Organometallic Chemistry
Abstract
This article focuses on the chemistry of Ln
2+
(Ln = lanthanide) complexes that exhibit at least one Ln–C bond. We include t...
4.4.44 Product Subclass 44: Silyl Radicals
4.4.44 Product Subclass 44: Silyl Radicals
AbstractSilyl radicals are short-lived species that have found widespread use in various areas, including organic and polymer chemistry and, more recently, material science. These ...
Recent Advances in Four‐Coordinated Planar Cobalt Catalysis in Organic Synthesis
Recent Advances in Four‐Coordinated Planar Cobalt Catalysis in Organic Synthesis
AbstractIn the field of transition metal‐catalyzed organic transformations, four‐coordinated planar cobalt complexes represent an active area of research due to their low cost, abu...
Review on the Electroluminescence Study of Lanthanide Complexes
Review on the Electroluminescence Study of Lanthanide Complexes
AbstractThanks to their characteristic photophysical properties, lanthanide complexes are of great value in many fields. Especially, high‐purity green and red lights from Tb(III) a...

