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Formation and characterization of polymetallic {Cr<sub>x</sub>M<sub>y</sub>} rings in vacuo

Chemistry

Formation and characterization of polymetallic {Cr<sub>x</sub>M<sub>y</sub>} rings in vacuo

N. Geue, G. A. Timco, et al.

This groundbreaking research by Niklas Geue and colleagues reveals the disassembly of heterometallic complexes, uncovering previously unknown heptametallic rings like Cr3Cu and Cr3Gd2. The study utilizes CID-MS and IM-MS to characterize these fascinating polymetallic structures, promising to push the boundaries of bulk phase synthesis.... show more
Abstract
Understanding the (dis)assembly mechanisms of large metallosupra-molecules is critical in their design, stability and application. The inherent complexity of these structures leads to many potential pathways for combining (or separating) the constituent building blocks, which makes this task difficult. Here we use collision-induced dissociation mass spectrometry to study the disassembly of heterometallic complexes. Collisional activation leads to the formation of a series of previously unknown smaller ring products and we characterize their geometry using ion mobility. The disassembly of both {Cr_xCu_2} hourglass structures (x = 10, 12) and of a {Cr_12Gd_4} cluster shows the formation of rare closed, heptametallic species {Cr_3Cu}, {Cr_3Cu_2} and {Cr_3Gd_2} as dominant products, as well as other closed ions such as {Cr_7Cu}, {Cr_10Cu}, {Cr_12Cu}, {Cr_10}, {Cr_12} and {Cr_6Gd_2}. The collision cross-section of cyclic products and precursors has a linear correlation with ion mass—a relationship that does not hold for acyclic systems. As these rings are non-trivial to synthesize individually in solution, we propose the presented workflow to identify and characterize feasible molecules for bulk phase synthesis.
Publisher
Nature Synthesis
Published On
Sep 04, 2023
Authors
Niklas Geue, Grigore A. Timco, George F. S. Whitehead, Eric J. L. McInnes, Neil A. Burton, Richard E. P. Winpenny, Perdita E. Barran
Tags
heterometallic complexes
collision-induced dissociation
mass spectrometry
ion mobility
polymetallic rings
bulk phase synthesis
Cr-Cu-Gd clusters
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