Search results for "suolat"

showing 5 items of 5 documents

A predictive model for salt nanoparticle formation using heterodimer stability calculations

2021

Acid–base clusters and stable salt formation are critical drivers of new particle formation events in the atmosphere. In this study, we explore salt heterodimer (a cluster of one acid and one base) stability as a function of gas-phase acidity, aqueous-phase acidity, heterodimer proton transference, vapor pressure, dipole moment and polarizability for salts comprised of sulfuric acid, methanesulfonic acid and nitric acid with nine bases. The best predictor of heterodimer stability was found to be gas-phase acidity. We then analyzed the relationship between heterodimer stability and J4×4, the theoretically predicted formation rate of a four-acid, four-base cluster, for sulfuric acid salts ove…

Atmospheric Sciencesuolat010504 meteorology & atmospheric sciencesVapor pressureQC1-999Salt (chemistry)Thermodynamics01 natural sciencesMethanesulfonic acidilmakemiachemistry.chemical_compoundNitric acid0103 physical sciencesSulfateQD1-9990105 earth and related environmental scienceschemistry.chemical_classificationaerosolit010304 chemical physicsPhysicsSulfuric acidChemistryMonomerchemistrynanoparticlesnanohiukkasetAcid–base reaction
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Non-Innocent Base Properties of 3- and 4-Pyridyl-dithia- and Diselenadiazolyl Radicals : The Effect of N-Methylation

2018

International audience; Condensation of persilylated nicotinimideamide and isonicotinimideamide with sulfur monochloride affords double salts of the 3-, 4-pyridyl-substituted 1,2,3,5-dithiadiazolylium DTDA cations of the general formula [3-, 4-pyDTDA][Cl][HCl] in which the pyridyl nitrogen serves as a noninnocent base. Reduction of these salts with triphenylantimony followed by deprotonation of the intermediate-protonated radical affords the free base radicals [3-, 4-pyDTDA], the crystal structures of which, along with those of their diselenadiazolyl analogues [3-, 4-pyDSDA], have been characterized by powder or single-crystal X-ray diffraction. The crystal structures consist of “pancake” π…

Base (chemistry)Radicalsuolat (yhdisteet)free radicals02 engineering and technologyCrystal structure010402 general chemistryMetathesistriflate saltsvapaat radikaalit01 natural sciencesMedicinal chemistryChlorideInorganic ChemistrydimersDeprotonationrikkiyhdisteetmedicinePhysical and Theoretical Chemistryta116dithiadiazoleschemistry.chemical_classificationIntermolecular forceFree base[CHIM.MATE]Chemical Sciences/Material chemistryN-methylation021001 nanoscience & nanotechnology0104 chemical sciencesoligomeerichemistry0210 nano-technologymedicine.drug
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Role of Alkyl Substituent and Solvent on the Structural, Thermal, and Magnetic Properties of Binary Radical Salts of 1,2,3,5-Dithia- or Diselenadiazo…

2022

The synthesis, structural, thermal, and magnetic properties of a series of simple binary organic salts based on the radical anion of 7,7,8,8-tetracyanoquinodimethane (TCNQ) and 4-(N-alkylpyridinium-3-yl)-1,2,3,5-dithiadiazolyl (DTDA), 1R (R = Et, Pr, Bu), radical cations and their heavier selenium analogues (DSDA), 2R, are described. Single-crystal X-ray structural analyses reveal that short alkyl substituents on the pyridinium moiety of DTDA/DSDA cations lead to crystallization of isostructural acetonitrile (MeCN) solvates 1Et·MeCN, 1Pr·MeCN, 2Et·MeCN, and 2Pr·MeCN with trans-cofacial DTDA radical cation and eclipsed-cofacial TCNQ radical anion dimers. A slight increase in the substituent …

anionitsuolatreaction productssaltskationitGeneral Materials ScienceGeneral ChemistryoligomersCondensed Matter PhysicsanionscationsCrystal Growth & Design
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Controlling the crystal growth of potassium iodide with a 1,1'-bis(pyridin-4-ylmethyl)-2,2'-biimidazole ligand (L) – formation of a linear [K4I4L4]n …

2018

The crystal growth of potassium iodide was controlled by using the neutral organic 1,1′-bis(pyridin-4-ylmethyl)-2,2′-biimidazole (L) ligand as a modifier. The selected modifier allows the preservation of original cubic [K4I4] units and their arrangement into a linear ligand-supported 1D chain. The supported [K4I4] cubes are only slightly distorted compared to the cubes found in pure KI salt. The N–K binding of the ligand to the KI salt, as well as weak I⋯H, N⋯H, and N⋯I interactions, stabilizes the structure to create a unique 1D polymer of neutral potassium iodide ionic salt inside the [K4I4L4]n complex.

saltsIonic bondingSalt (chemistry)chemistry.chemical_elementsuolat (yhdisteet)Crystal growth02 engineering and technology010402 general chemistryIodine01 natural sciencescrystalsGeneral Materials Sciencepolymeeritta116polymerschemistry.chemical_classificationLigandGeneral ChemistryPolymer021001 nanoscience & nanotechnologyCondensed Matter Physicskiteet0104 chemical sciencesCrystallographychemistry0210 nano-technologyCrystEngComm
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Erikoisruokasuolojen analysointi ja kahden kristallisuola-alueen suolojen biosaatavuuden vertailu

2016

Tämä Pro gradu -tutkielma koostuu kirjallisuuskatsauksesta ja suoritetun erikoistyön selostuksesta. Puhdistamattoman vuorisuolan, jota kutsutaan myös kristallisuolaksi tai Ruususuolaksi, käyttö on lisääntynyt runsaasti viime vuosina. Käyttöä perustellaan sen sisältämillä monilla alkuaineilla, mutta analyyttisiä tutkimuksia eri aineiden pitoisuuksista löytyy kirjallisuudesta niukasti. Puhdistamaton suola voi myös sisältää erilaisia haitallisia ainesosia, joten niiden tutkiminen on erittäin tärkeää. Työn kirjallisessa osassa käytiin läpi kirjallisuutta ja julkaistuja artikkeleja siitä, miten suolanäytteitä on tutkittu, millä analyysimenetelmillä on mitäkin alkuaineita mitattu ja minkälaisia h…

suolatkristallisuolaRuususuolamerisuolaanalyysibiosaatavuus
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