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Thomas Albrecht

@teasactinides.bsky.social
327 followers 258 following 36 posts

University Distinguished Professor at the Colorado School of Mines. Jointly appointed at Idaho National Laboratory and Los Alamos National Laboratory.

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Reposted by Thomas Albrecht
Nature Synthesis @natsynth.nature.com · 15/05/2026
Now online: Article by C. Michael McGuirk & co-workers A permanently porous chalcogen-bonded organic framework www.nature.com/articles/s44... ($) #Chemsky
nature.com
A permanently porous chalcogen-bonded organic framework - Nature Synthesis
A permanently porous organic framework assembled and stabilized solely by non-covalent chalcogen bonding is reported. Empirical and computational studies reveal the characteristic influence of the ope...
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Thomas Albrecht @teasactinides.bsky.social · 02/03/2026
Really happy with Bai's newest paper on unexpected bonding trends in #plutonium, #americium, and #curium coordination complexes. Covalency of M–N Bonds in Isomorphous Lanthanide and Actinide 5-(2-Pyridyl)-1H-tetrazolate Complexes | JACS Au pubs.acs.org/doi/10.1021/...
pubs.acs.org
Covalency of M–N Bonds in Isomorphous Lanthanide and Actinide 5-(2-Pyridyl)-1H-tetrazolate Complexes
Experimental and computational analyses of [M(pdtz)3(H2O)3]·3.5H2O (M3+ = Pu3+–Cm3+, La3+–Nd3+, and Sm3+–Ho3+, pdtz– = 5-(2-pyridyl)-1H-tetrazolate) were conducted to understand potential differences ...
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Reposted by Thomas Albrecht
Harder Research Group @harder-research.bsky.social · 02/09/2025
P4 REDUCTION generally results in multi-nuclear Zintl anions: P8(2-), P4(2-) or P7(3-). Reaction with a soluble Mg(0) complex gave full reduction to P(3-). Latter anion serves as a triple base, a three-fold nucleophile or 3e-reducing agent. onlinelibrary.wiley.com/doi/epdf/10.10
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Thomas Albrecht @teasactinides.bsky.social · 22/08/2025
Super happy to see Nick's article published. #actinides #chemsky #transuranium #nuclear #californium www.nature.com/articles/s41...
nature.com
Non–linear bonding trends in maleonitrile-1,2–dithiolate complexes of the transuranium actinides - Nature Communications
Although the trivalent actinides are similar to the lanthanide series in terms of chemistry and bonding, their structures and properties can diverge significantly. Here, the authors report a series of...
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Reposted by Thomas Albrecht
Chemistry World @chemistryworld.com · 15/08/2025
Complexes containing nobelium were created as part of new research into the chemistry of the actinide series.
chemistryworld.com
Nobelium becomes heaviest element with identified compounds
Complexes containing hydroxide, water and dinitrogen ligands detected as researchers probe chemistry on the edge of the actinide series
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Reposted by Thomas Albrecht
Joe Sperling @jsperling91.bsky.social · 25/07/2025
@hbwineinger.bsky.social wrote this review for those interested in low valent f elements #fblockrocks www.sciencedirect.com/science/arti...
sciencedirect.com
Molecular complexes of low-valent f-elements from lanthanum to californium
This review outlines the structure and chemistry of divalent lanthanides and actinides in small molecule systems, focusing on the less accessible diva…
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Reposted by Thomas Albrecht
Valérie Vallet @valevallet.bsky.social · 18/06/2025
doi.org/10.1021/acs.... Unravelling UV–vis spectra of U4+-containing aqueous solutions and their relationship with the nature of complexes present at different pH levels. Selected as Featured article in Inorg. Chem. and a cornerstone of @gemarh.bsky.social PhD at @unisevilla.bsky.social
doi.org
U4+ Speciation in Acidic Aqueous Solution: Insights from UV–Vis, EXAFS, XANES, and Quantum-Statistical Simulations
This theoretical study investigates the UV–vis absorption properties of U4+-containing aqueous solutions and their relationship with the nature of aqua-complexes present at varying acidic levels. High...
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Reposted by Thomas Albrecht
Joe Sperling @jsperling91.bsky.social · 10/06/2025
249Bk (t1/2 ~330 days) is a beta blasting bully, but sometimes things work out #fblockrocks #bkallday @teasactinides.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Effects of the Inverse Trans-Influence in a Berkelium(III) Phosphine Oxide Complex
An example of a 249Bk3+ phosphine oxide complex has been prepared to examine and quantify the effects of the inverse trans-influence (ITI) on a late actinide complex. This has been accomplished through a comparison of cis and trans Bk-ligand bonds in the meridional berkelium(III) complex, BkBr3(OPCy3)3 (OPCy3 = tricyclohexylphosphine oxide). A detailed bond metric analysis was completed that includes the shortest published distance for a Bk3+–O bond, attributed to the smaller coordination number of Bk3+ of six in mer-BkBr3(OPCy3)3. ITI calculations of the trans Bk3+–O bond provide an ITI value (98.5(2)%) comparable to that of mer-AmBr3(OPCy3)3 (98.2(2)%) and indicate a small 5f orbital contribution to bonding. This effect is discussed in the context of the isomorphous lanthanide(III) series where the ITI is calculated to be higher for mer-BkBr3(OPCy3)3 than in most Ln3+ analogues.
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Reposted by Thomas Albrecht
Chemistry World @chemistryworld.com · 25/05/2025
A new water stable carbene validates a hypothesis put forward almost 70 years ago by the famed organic chemist Ronald Breslow. www.chemistryworld.com/news/super-s...
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Thomas Albrecht @teasactinides.bsky.social · 16/05/2025
Yep
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Reposted by Thomas Albrecht
Joe Sperling @jsperling91.bsky.social · 13/05/2025
Plutonium chemistry is wack and this compound is another reason to provide evidence towards that #fblockrocks @teasactinides.bsky.social pubs.rsc.org/en/content/a...
pubs.rsc.org
Unveiling the covalency of versatile Pu(iii)-N bonds in a unique plutonium(iii) complex
A trivalent plutonium–pyrazinyl–tetrazolate complex Na2[Pu(Hdtp)(dtp)2(H2O)4]·9H2O (Pu_dtp, H2dtp = 2,3-di-1H-tetrazol-5-ylpyrazine) was synthesized through metathesis reaction of plutonium bromide an...
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Reposted by Thomas Albrecht
Chemical Science @chemicalscience.rsc.org · 12/05/2025
Porphyrin-based organic materials have exciting optical properties and wide applications. In this study, the authors report a B(III) complex of a new sub-m-benziporphyrin with an unusual planar tridentate 14π-aromatic network. Read it for free 👉pubs.rsc.org/doi/D4S... #ChemSky
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Thomas Albrecht @teasactinides.bsky.social · 06/05/2025
Congratulations!!!
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Reposted by Thomas Albrecht
La Pierre Group @f-orbitals.bsky.social · 07/04/2025
We are excited to share praseodymium 5+! Finally in print! A new PR for Pr! rdcu.be/egHf6
rdcu.be
Praseodymium in the formal +5 oxidation state
Nature Chemistry - The most common oxidation state for lanthanide elements is +3, and, beyond cerium, examples of these elements exhibiting higher oxidation states remain scarce. Now, a molecular...
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Reposted by Thomas Albrecht
Chemistry World @chemistryworld.com · 13/03/2025
Researchers have synthesised a triple bond between carbon and boron for the first time, in a discovery that could inspire other researchers to synthesise compounds that might seem improbable.
chemistryworld.com
Carbon–boron triple bond formed for the first time in a neutral novel molecule
Synthesis could help chemists better understand bonding
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Reposted by Thomas Albrecht
Joe Sperling @jsperling91.bsky.social · 12/03/2025
This is a heavy hitting americium structure great job brian! @teasactinides.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Insights into the Complexation of Actinides by Diethylenetriaminepentaacetic Acid from Characterization of the Americium(III) Complex
Diethylenetriaminepentaacetic acid (DTPA) is a frequently used chelator in the nuclear and medical industries, especially for the complexation of trivalent actinides. However, structural data on these complexes in the solid-state have long remained elusive. Herein, a detailed structural analysis of the presented crystal structures of [C(NH2)3]4[Nd(DTPA)]2·nH2O and [C(NH2)3]4[Am(DTPA)]2·nH2O, where [C(NH2)3]+ is guanidinium, details the subtle differences in the Lewis acidity between a lanthanide/actinide pair of similar ionic sizes. Contractions in nitrogen–metal bond lengths between neodymium(III) and americium(III) were observed, while the metal–oxygen bonds remained relatively consistent, highlighting the marginal favorability for actinide complexation over the lanthanides with moderately soft N-donors. Spectroscopic analysis shows significant splitting of many transitions and relatively strong electronic interactions with traditionally low-intensity transitions in the americium complex, as is demonstrated in the 7F0→7F5 transitions. Pressure-induced spectroscopic analysis showed surprisingly little effect on the americium complex, with 5f→5f transitions either not shifting or marginally shifting from 2 to 3 nm at 11.93 ± 0.06 GPa─atypical of a soft, N-donor americium complex under pressure. Large voids occupied by water molecules in between the complexes within the crystal structure may be responsible for the lack of pressure response in the 5f→5f transitions.
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Thomas Albrecht @teasactinides.bsky.social · 12/03/2025
That’s brave chemistry.
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Reposted by Thomas Albrecht
C&EN (Chemical & Engineering News) @cenmag.bsky.social · 02/03/2025
It is a sandwich with the rarest of fillings. Researchers have unveiled berkelocene, a compound containing the synthetic element berkelium nestled neatly between two ring-shaped molecules. cen.acs.org/analytical-c... #chemsky🧪
This vial holds a few drops of a solution of berkelocene, which delivered tiny indigo crystals of the new complex.
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Thomas Albrecht @teasactinides.bsky.social · 17/02/2025
That’s really cool!
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Reposted by Thomas Albrecht
Harder Research Group @harder-research.bsky.social · 17/02/2025
PREFORMED REDOX-ACTIVE INVERSE CROWNS: Finally out in @naturechemistry.bsky.social Highly selective reduction of N2O, epoxide, sulfur or O2. The ring can also be extended to a larger metalla-crown for stabilization of larger anions like N2O2(2-). Open access: shorturl.at/LZE6Y
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Thomas Albrecht @teasactinides.bsky.social · 16/02/2025
I’ll never get used to this. From left to right: John Wagner, Director of Idaho National Laboratory. Katy Huff, former assistant secretary for nuclear energy. Some random guy they grabbed off a hiking trail. Rita Baranwal, VP at Westinghouse #AAAS #nuclear #fblockrocks #ChemSky
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Reposted by Thomas Albrecht
C&EN (Chemical & Engineering News) @cenmag.bsky.social · 15/02/2025
The samarium-146 isotope is critical for understanding Earth’s origins. An accurate half-life is key—and researchers may have finally measured it. cen.acs.org/physical-che...
cen.acs.org
Measuring the elusive half-life of samarium-146
The isotope is critical for understanding Earth’s origins. An accurate half-life is key—and researchers may have finally measured it
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Thomas Albrecht @teasactinides.bsky.social · 14/02/2025
My dad did his postdoc with Enders.
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Thomas Albrecht @teasactinides.bsky.social · 14/02/2025
Looking forward to tomorrow’s panel.
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Thomas Albrecht @teasactinides.bsky.social · 12/02/2025
Yay Markus!!! I miss him.
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Reposted by Thomas Albrecht
C&EN (Chemical & Engineering News) @cenmag.bsky.social · 07/02/2025
The periodic table looks complete, but it isn’t. The race is on to discover the table’s next row of elements, starting with elements 119 and 120. Japan hopes to produce element 119 one atom at a time: cen.acs.org/physical-che... #NationalPeriodicTableDay #chemsky🧪 #scinews
A periodic table with each of the heaviest 26 elements shaded by color according to which country or collaboration of countries discovered that element. US facilities have independently discovered 14, Russian facilities have independently discovered 4, German facilities have discovered six, Japanese facilities have discovered one, and a US-Russia collaboration discovered the five heaviest. Four of the US and Russia’s independent element discoveries happened in parallel.
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Thomas Albrecht @teasactinides.bsky.social · 04/02/2025
I love these kind of papers. They make me smile for days.
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Thomas Albrecht @teasactinides.bsky.social · 04/02/2025
I am super proud of this paper. It was a massive, multi-year undertaking by three different groups. If you've ever wanted to understand the high-pressure behavior of curium, here it is. @gagliardilaura.bsky.social #fblockrocks #nuclear #chemsky #bluesci #highpressure pubs.acs.org/doi/full/10....
pubs.acs.org
High-Pressure Effects on an Octa-Hydrated Curium Complex: An Experimental and Theoretical Investigation
An octa-hydrated curium compound [Cm(H2O)8](Hdtp)(dtp)·H2O (Cm1, H2dtp = 2,3-di(tetrazol-5-yl)pyrazine) along with its lanthanide analogues [Ln(H2O)8](Hdtp)(dtp)·H2O (Ln1, Ln3+ = La3+–Nd3+, Sm3+–Lu3+)...
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Thomas Albrecht @teasactinides.bsky.social · 04/02/2025
As we move to higher pressures centering samples by hand in diamond anvil cells is no longer possible. Meet our new micromanipulator. The hole on the screen is only 70 microns in diameter. #chemsky #bluesci #fblockrocks #highpressure #nuclear
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Thomas Albrecht @teasactinides.bsky.social · 31/01/2025
INL
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Thomas Albrecht @teasactinides.bsky.social · 31/01/2025
You're looking through a massively shielded window into the world's largest inert atmosphere hot cell where a closed fuel cycle was demonstrated for EBR-II. Even cooler is that the thing that looks like a scrub brush in the bottom right is the cathode from the process covered in uranium dendrimers.
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Reposted by Thomas Albrecht
Ken Lo @bhkenlo.bsky.social · 29/01/2025
Synthesis and Characterization of Homo- and Heteroleptic Neptunium(IV) Heteroarylalkenolate Complexes | Inorganic Chemistry pubs.acs.org/doi/10.1021/... Mathur, Gericke, and co-workers @InorgChem #neptunium #heteroarylalkenolate #ASAP_APCI_MS
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Reposted by Thomas Albrecht
Chemistry World @chemistryworld.com · 23/01/2025
The observation of the half-life of a neutron deficient rutherfordium isotope has pushed the known half-lives of superheavy massive nuclei down by two orders of magnitude. www.chemistryworld.com/news/superhe...
chemistryworld.com
Superheavy element half-life measurements push back the limits of stability
Experimental observations of the half life of rutherfordium-252 demonstrate that its stability lies well within the limits required for full atoms to form
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Reposted by Thomas Albrecht
hbwineinger.bsky.social @hbwineinger.bsky.social · 22/01/2025
I'm excited to see this one published! Samarium(II) dibenzo-24-crown-8 complexes from solutions of MeCN, THF, and DME. pubs.acs.org/doi/10.1021/...
pubs.acs.org
Coordination Chemistry and Photoluminescence of Sm(II) Dibenzo-24-crown-8 Complexes
Three Sm(II) dibenzo-24-crown-8 (db24c8) complexes were synthesized in anhydrous, air-free conditions via the reaction of SmI2 with db24c8 and tetrabutylammonium tetraphenylborate ([TBA][BPh4]; where ...
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Thomas Albrecht @teasactinides.bsky.social · 18/01/2025
Did that too.
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Thomas Albrecht @teasactinides.bsky.social · 15/01/2025
Some nice press on one of our recent articles. www.scm.com/highlights/u...
scm.com
Unraveling the interplay of 4fn+1 and 4fn5d1 configurations in Ln2+ complexes - SCM
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Thomas Albrecht @teasactinides.bsky.social · 13/01/2025
We’ll keep you away from the plutonium. :)
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Reposted by Thomas Albrecht
Bioinspired Inorganic Chemistry, Dublin @fenicu.bsky.social · 13/01/2025
@agnideep.bsky.social's mega-project on our efforts to develop catalytic fluorination of hydrocarbons is now published. Congrats Agni on an excellent effort!! #chemsky onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
High‐Valent Cobalt‐Difluoride in Oxidative Fluorination of Saturated Hydrocarbons
Polyamine-supported CoII complexes catalyzed the oxidative fluorination of saturated hydrocarbons, in some instances selectively, when combined with Selectfluor and CsF, producing fluorinated product...
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Thomas Albrecht @teasactinides.bsky.social · 11/01/2025
Yep. Truly awesome. Now US universities need to follow suit.
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Thomas Albrecht @teasactinides.bsky.social · 09/01/2025
Wow!!!
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Reposted by Thomas Albrecht
Joe Sperling @jsperling91.bsky.social · 08/01/2025
I love pictures of clean californium. This small quantity has enough gamma radiation to give you your annual background dose in ~30 minutes on contact pictured here is the oxalate #fblockrocks
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Thomas Albrecht @teasactinides.bsky.social · 07/01/2025
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/...
pubs.acs.org
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.
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Thomas Albrecht @teasactinides.bsky.social · 03/01/2025
What an awesome way to start the year! pubs.rsc.org/en/content/a...
pubs.rsc.org
A comprehensive approach for elucidating the interplay between 4fn+1 and 4fn5d1 configurations in Ln2+ complexes
Lanthanides (Ln) are typically found in the +3 oxidation state. However, in recent decades, their chemistry has been expanded to include the less stable +2 oxidation state across the entire series exc...
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Reposted by Thomas Albrecht
National MagLab @nationalmaglab.bsky.social · 28/12/2024
As the #clock winds down on 2024, learn how high field EPR helped ID a Spin "Clock Transition," work that may enable future molecular qubits with more advanced #quantum capabilities. buff.ly/41RJwR2
buff.ly
High-Field EPR Identification of a Spin "Clock Transition" - MagLab
Previous work at the MagLab demonstrated that it is possible to design molecules containing a LuII ion such that its lone unpaired electron is shielded against harmful magnetic noise, giving rise to a...
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Reposted by Thomas Albrecht
Daumann Lab @daumannl.bsky.social · 17/12/2024
Thats rad! Philippes first first author preprint is out: Lanthanide-dependent Methanotroph Thrives on Radioactive #Promethium #fblockrocks! doi.org/10.26434/che... We show that both the Ln-dependent enzyme MDH as well as strain SolV can use the beta-emitter Pm-147 in its metabolism. #chemsky 🧪
A Bar chart showing optical densities of bacterial cultures in the presence of differnet lanthanides. Promethium is included and fits well within its expected spot in the lanthanide series. In the right upper corner a comic of a cultivation flask with bacteria is shown.
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Thomas Albrecht @teasactinides.bsky.social · 17/12/2024
How things have changed…25 years ago nuclear was dead. Now it’s proudly proclaimed. Even though the color has been altered for the banner, that cone vial contained a sample of actinium used in nuclear medicine. The sample glowed blue. #nuclear #actinium #fblockrocks #actinides #Chemsky #Bluesci
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Thomas Albrecht @teasactinides.bsky.social · 17/12/2024
How you know you’re near Oak Ridge. #ORNL
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Reposted by Thomas Albrecht
Josef Boronski @josefboronski.bsky.social · 13/12/2024
We report the first stable hexavalent nickel complex! It's formed by reductive addition of three Be-Be bonds at nickel(0), producing Ni(BeCp)6 pubs.acs.org/doi/10.1021/...
pubs.acs.org
A Crystalline NiX6 Complex
High-valent nickel species are implicated as intermediates in industrially relevant chemical transformations and in the catalytic cycles of metalloenzymes. Although a small number of tetravalent NiX4 ...
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Thomas Albrecht @teasactinides.bsky.social · 13/12/2024
Super happy with this article. Ra-226 makes Cf-249 look cold. There's more radium chemistry to come after the holidays. #Chemsky #bluesci #radium #nuclear #fblockrocks pubs.acs.org/doi/full/10....
pubs.acs.org
Deviation between the Structural Chemistry of Barium and Radium Halides: Synthesis and Characterization of RaX2·H2O and RaX2·2H2O (X– = Cl– and Br–)
To develop the structural chemistry of radium, the halide compounds RaX2·H2O and RaX2·2H2O (X– = Cl– and Br–) have been synthesized and characterized and serve as benchmarks for comparisons with more complex compounds in the future. In contrast with historic reports on the structural chemistry of radium, the Ra2+ chlorides differ from their Ba2+ analogues. For MCl2·H2O (M2+ = Ba2+, Ra2+), the variance between the metal coordination environments manifests as a small, local distortion that becomes more apparent in the extended structure. However, differences between RaCl2·2H2O and BaCl2·2H2O are more pronounced with a 10-coordinate Ra2+ cation being observed instead of a nine-coordinate Ba2+ in BaCl2·2H2O. RaBr2·nH2O (n = 1 or 2) are isomorphous with the Ba2+ analogues. Raman spectroscopy was used as an additional probe of these compounds and reveals substantial shifts and different vibrational modes between RaX2·H2O and RaX2·2H2O compared to BaX2·2H2O.
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Thomas Albrecht @teasactinides.bsky.social · 12/12/2024
Carmina Burana is freaking awesome
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