
Tobias Bötel
Shared posts
[ASAP] Cross-Coupling of NHC/CAAC-Based Carbodicarbene: Synthesis of Electron-Deficient Diradicaloids
(Phosphino)(stannyl)carbene
DOI: 10.1039/D4CC03275F, Communication
Stable (phosphino)(stannyl)carbene has been synthesized and characterized. Reactivity and DFT calculations demonstrate its ambiphilicity and potential for unusual stannyl-substituted compounds.
The content of this RSS Feed (c) The Royal Society of Chemistry
Phospha-bicyclohexene-germylenes exhibiting unexpected reactivity
DOI: 10.1039/D4SC04034A, Edge Article
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Featuring mostly nucleophilic but also electrophilic properties, phosphorus-bridged bicyclic germylenes require steric shielding to be protected from decomposition. The two nucleophilic sites, Ge and P, show competing reactivity.
The content of this RSS Feed (c) The Royal Society of Chemistry
Thorium(iv)–antimony complexes exhibiting single, double, and triple polar covalent metal–metal bonds
Nature Chemistry, Published online: 20 February 2024; doi:10.1038/s41557-024-01448-6
Actinide–metal multiple bonds are relatively rare, with isolable examples under normal experimental conditions typically restricted to complexes containing a polar covalent σ bond supplemented by up to two dative π bonds. Now complexes featuring polar covalent double and triple bonds between thorium and antimony have been synthesized.Lanthanide‐Based Probes for Imaging Detection of Enzyme Activities by NIR Luminescence, T1‐ and ParaCEST MRI
We demonstrate that using a single ligand complexed to different lanthanide ions, successful visualization of β-galactosidase activity is possible in complementary optical and MR modalities : NIR luminescence (Yb3+), CEST (Yb3+) and T1 (Gd3+) MR imaging.
Abstract
Applying a single molecular probe to monitor enzymatic activities in multiple, complementary imaging modalities is highly desirable to ascertain detection and to avoid the complexity associated with the use of agents of different chemical entities. We demonstrate here the versatility of lanthanide (Ln3+) complexes with respect to their optical and magnetic properties and their potential for enzymatic detection in NIR luminescence, CEST and T1 MR imaging, controlled by the nature of the Ln3+ ion, while using a unique chelator. Based on X-ray structural, photophysical, and solution NMR investigations of a family of Ln3+ DO3A-pyridine model complexes, we could rationalize the luminescence (Eu3+, Yb3+), CEST (Yb3+) and relaxation (Gd3+) properties and their variations between carbamate and amine derivatives. This allowed the design of probes which undergo enzyme-mediated changes detectable in NIR luminescence, CEST and T1-weighted MRI, respectively governed by variations in their absorption energy, in their exchanging proton pool and in their size, thus relaxation efficacy. We demonstrate that these properties can be exploited for the visualization of β-galactosidase activity in phantom samples by different imaging modalities: NIR optical imaging, CEST and T1-weighted MRI.