2019•Inorganic ChemistryRequires access

Synthesis, Spectroscopy, and Theoretical Details of Uranyl Schiff-Base Coordination Complexes

Bonnie E. Klamm, Cory J. Windorff, Cristian Celis‐Barros, Matthew L. Marsh, Thomas E. Albrecht‐Schmitt

Open publisher page 45 citations

Abstract

Two uranyl Schiff-base coordination complexes, UO 2 L(MeOH) and UO 2 Cl 2 ( H 2 L ) {L = N, N ′-bis[(4,4′-diethylamino)salicylidene]-1,2-phenylenediamine}, have been synthesized that feature a rigid phenyl backbone. These complexes have been characterized by structural, spectroscopic, and theoretical analysis to offer an electronic structure basis to explain the bonding parameters and stability. Single-crystal X-ray analysis reveals that UO 2 L(MeOH) adopts the typical “soft taco confirmation” characteristic of uranyl salophen complexes, whereas UO 2 Cl 2 ( H 2 L ) features an unusual neutral ligand coordination that contains an internal hydrogen bond between the phenol and imine. Rate constants calculated from electrochemical experiments confirm a quasi-reversible UO 2 2+ /UO 2 + couple. Single-configurational and multiconfigurational methods were used to explore the bonding in UO 2 L(MeOH) and UO 2 Cl 2 ( H 2 L ) . For UO 2 Cl 2 ( H 2 L ), the U–Cl bond exhibits more covalent contributions than U–O L .

About this research paper

What this paper is about

Two uranyl Schiff-base coordination complexes, UO 2 L(MeOH) and UO 2 Cl 2 ( H 2 L ) {L = N, N ′-bis[(4,4′-diethylamino)salicylidene]-1,2-phenylenediamine}, have been synthesized that feature a rigid phenyl backbone. These complexes have been characterized by structural, spectroscopic, and theoretical analysis to offer an electronic structure basis to explain the bonding parameters and stability. Single-crystal X-ray analysis reveals that UO 2 L(MeOH) adopts the typical “soft taco confirmation” characteristic of uranyl salophen complexes, whereas UO 2 Cl 2 ( H 2 L ) features an unusual neutral ligand coordination that contains an internal hydrogen bond between the phenol and imine. Rate constants calculated from electrochemical experiments confirm a quasi-reversible UO 2 2+ /UO 2 + couple. Single-configurational and multiconfigurational methods were used to explore the bonding in UO 2 L(MeOH) and UO 2 Cl 2 ( H 2 L ) . For UO 2 Cl 2 ( H 2 L ), the U–Cl bond exhibits more covalent contributions than U–O L .

Why it matters

OpenAlex reports 45 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Two uranyl Schiff-base coordination complexes, UO 2 L(MeOH) and UO 2 Cl 2 ( H 2 L ) {L = N, N ′-bis[(4,4′-diethylamino)salicylidene]-1,2-phenylenediamine}, have been synthesized that feature a rigid phenyl backbone. These complexes have been characterized by structural, spectroscopic, and theoretical analysis to offer an electronic structure basis to explain the bonding parameters and stability. Single-crystal X-ray analysis reveals that UO 2 L(MeOH) adopts the typical “soft taco confirmation” characteristic of uranyl salophen complexes, whereas UO 2 Cl 2 ( H 2 L ) features an unusual neutral ligand coordination that contains an internal hydrogen bond between the phenol and imine. Rate constants calculated from electrochemical experiments confirm a quasi-reversible UO 2 2+ /UO 2 + couple. Single-configurational and multiconfigurational methods were used to explore the bonding in UO 2 L(MeOH) and UO 2 Cl 2 ( H 2 L ) . For UO 2 Cl 2 ( H 2 L ), the U–Cl bond exhibits more covalent contributions than U–O L .

Key concepts: Chemistry, Uranyl, Schiff base, Imine, Hydrogen bond, Ligand (biochemistry), Crystallography, Covalent bond

Related papers

Back to paper searchBrowse research topicsOriginal source
Synthesis, Spectroscopy, and Theoretical Details of Uranyl Schiff-Base Coordination Complexes — Research Paper | ScholarLens