Andrew Boggiano

@acboggiano.bsky.social

Postdoc at UW Madison Cyclotron Group. PhD from Georgia Tech. Synthetic inorganic chemist, lanthanides, actinides. Single-crystal XRD for life. 🏳️‍🌈

A 100 years ago, Nature published a landmark study reporting the discovery of Australopithecus africanus; it put the African continent at the centre of the story of humanity In our editorial this week, we look back to 1925 🧪 @nature.com @natureportfolio.nature.com www.nature.com/articles/d41...

Out of Africa: celebrating 100 years of human-origins research

A landmark study reporting the discovery of Australopithecus africanus one century ago put the African continent at the centre of the story of humanity.

nature.com

This article was years in the making. Did you think water could coordinate to Sm(II) without being reduced? Well it can. Congratulations Todd! #Chemsky #Bluesci #samarium #rareearths #fblockrocks pubs.acs.org/doi/10.1021/...

Isolation of Inner-Sphere Aquo Complexes of Samarium(II)

The cis-anti-cis and cis-syn-cis isomers of [Sm(dicyclohexano-18-crown-6)(H2O)2]I2 exhibiting trans water molecules bound to the Sm2+ ion have been isolated and characterized. Sm2+ possesses an electrochemical potential sufficient for water reduction, and thus these complexes add to the recent body of evidence that the oxidation of Sm2+ by water can operate by a mechanism that is not straightforward. These complexes are obtained by the direct addition of stoichiometric amounts of water to solutions of the respective Sm(dicyclohexano-18-crown-6)I2 isomers under an inert atmosphere. The parent complex, Sm(dicyclohexano-18-crown-6)I2, lacking coordinating water molecules can be obtained through rigorous exclusion of water. It was determined that the bulky cyclohexano-substituents deter intramolecular interactions between [Sm(dicyclohexano-18-crown-6)(H2O)2]I2 complexes and slow the oxidization of the metal centers. The extent of the stability of these complexes to the presence of water has been further probed through cyclic voltammetry, where it was found that the redox potential of both isomers of [Sm(dicyclohexano-18-crown-6)(H2O)2]I2 maintains quasi-reversible behavior with a 50,000-fold excess of water to Sm2+ in solution with the cis-syn-cis complex being quasi-reversible at even higher concentrations of water. Solution-phase spectroscopy of these complexes in acetonitrile shows a corresponding hypsochromic shift of the Sm2+ 4f → 5d transition typically observed in the visible region from Sm2+ complexes. The crystalline compounds obtained in this study support solid-state spectroscopic trends observed from other Sm2+ crown-ether complexes containing iodide counterions, wherein the proximity of the iodide ions to the metal center determines whether the complex can exhibit 4f → 4f photoluminescence.

pubs.acs.org

A fantastic opportunity for undergraduates (travel and expenses covered!). Learn about opportunities from PIs at all institutions within the center including groups at U Iowa, UCSB, WSU, GT, and many national lab partners. Spanning diverse focuses from synthetic chemistry, theory, and more!

La Pierre Group@f-orbitals.bsky.social · 2y ago

Considering graduate research with actinides, or a career in the National Laboratories? Join us for the DOE/NNSA Graduate Studies Workshop! -Lectures from National Lab Researchers -networking, grad school Q&As, lab tours, and more - Apply by Feb.15th: trucorechemistry.com/apply

I hate the direction lab equipment design has gone in recent years. I don't want touchscreens, I don't want wifi integration, I don't want centrifuges demanding to know what time zone they're in. I just want reliable instruments - with physical buttons - that do the one task they were made for.