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Sodium trichloromethanesulfonate monohydrate

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TLDR
Sodium trichloromethanesulfonate monohydrate, Na+.CCl3SO3-.H2O, crystallizes in P2(1)/a with all the atoms located in general positions.
Abstract
Synchrotron-based spectroscopic techniques enable investigations of the many important biological and environmental functions of the ubiquitous element sulfur. In this thesis the methods for interpreting sulfur K-edge X-ray absorption near edge structure (XANES) spectra are developed and applied for analyses of functional sulfur groups. The influence of coordination, pH, hydrogen bonding, etc., on the sulfur 1s electronic excitations is evaluated by transition potential density functional theory. Analyses have been performed of reduced sulfur compounds in marine-archaeological wood from historical shipwrecks, including the Vasa, Stockholm, Sweden and the Mary Rose, Portsmouth, U.K.. The accumulation of sulfur as thiols in lignin-rich parts of the wood on the seabed is also a probable pathway in the natural sulfur cycle for how reduced sulfur enters fossil fuels via humic matter in anaerobic marine sediments. Sulfur K-edge XANES spectra for several biochemical model compounds and for coexisting isomeric sulfur species in cysteine and sulfite(IV) aqueous solutions have been analyzed with the aid of theoretical calculations. Cysteine derivatives are important for biochemical detoxification, and mercury(II) cysteine complexes in solution have been structurally characterized by means of Extended X-ray Absorption Fine Structure (EXAFS), Raman and 199Hg NMR spectroscopy. Lanthanoid(III) ions were found to coordinate eight dimethyl sulfoxide oxygen atoms in a distorted square antiprism in the solid state and in solution, by combining crystallography, EXAFS, XANES and vibrational spectroscopy. The mean M-O bond distances for the disordered crystal structures are in good agreement with those from the lattice-independent EXAFS studies. The different sulfur K-edge XANES spectra for the dimethyl sulfoxide ligands in the hexasolvated complexes of the trivalent group 13 metal ions, Tl(III), In(III), Ga(III) and Al(III), were interpreted by theoretical calculations.

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Supramolecular Interactions in Sodium N -(Ethoxythioxomethyl)-β-Alaninate–Water (4/6) Crystal and Its Application in Synthesis of l -Carnosine

TL;DR: In this article, a compound sodium N-(ethoxythioxomethyl)-β-alaninate (sodium 3-(ethoxycarbonothioyl)propanoate) was synthesized and characterized by IR, 1H NMR, ESI-HRMS and single crystal X-ray diffraction.
References
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Journal ArticleDOI

Raman and infrared spectra and normal coordinates of the trifluoromethanesulfonate and trichloromethanesulfonate anions

TL;DR: In this paper, the Raman spectra of aqueous solution of barium trifluoromethanesulfonate and sodium trichloromethane sulfonate including qualitative polarization measurements together with the infrared spectra have been recorded.
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Highly hydrated cations: deficiency, mobility, and coordination of water in crystalline nonahydrated scandium(III), yttrium(III), and lanthanoid(III) trifluoromethanesulfonates.

TL;DR: The hydrogen bonding to the trifluoromethanesulfonate anions stabilises the trigonal prism of water ligands, even for the crowded hydration sphere of the smallest metal ions in the series.
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Kristallstrukturanalyse und Natriumionenleitung von wasserfreiem α‐Natriumtrifluoromethylsulfonat

TL;DR: In this paper, a single crystal structure analysis at −173 °C was performed on anhydrous sodium trifluoromethylsulfonate (α-NaSO3CF3) in space group P1 with the lattice parameters a = 9.6592(11), b = 11.1752(12), c = 11,2768(12).
Journal ArticleDOI

Structure and vibrational frequencies of the molecular trichloromethanesulfonic acid and its anion from ab-initio calculations

TL;DR: In this paper, the equilibrium structure, vibrational frequencies, and the infrared intensities of trichloromethanesulfonic acid molecule and its anion have been investigated using the ab initio self-consistent Hartree-Fock method and second-order Moller-Plesset perturbation theory with the 6-31G** and lower basis sets.
Journal ArticleDOI

The Weakly Coordinating Trichloromethanesulfonate Anion: NQR Comparison of Its Coordinating Abilities via Oxygen with Those of the Chloroacetate Ions

TL;DR: The NQR frequencies of trichlic acid dihydrate are anomalously lower than those oftrichloroacetic acid, which suggests that it is a strong acid, ionized in the solid state to H5O2+ and Cl3CSO3(-) ions.
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