Search results for "Dichloride"

showing 10 items of 95 documents

CCDC 105692: Experimental Crystal Structure Determination

1999

Related Article: K.Hensen, T.Stumpf, M.Bolte, C.Nather, H.Fleischer|1998|J.Am.Chem.Soc.|120|10402|doi:10.1021/ja981016g

(Dihydro-tetrapyridyl)silane dichloride chloroform solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 723744: Experimental Crystal Structure Determination

2010

Related Article: A.Gonzalez-Alvarez, I.Alfonso, J.Cano, P.Diaz, V.Gotor, V.Gotor-Fernandez, E.Garcia-Espana, S.Garcia-Granda, H.R.Jimenez, F.Lloret|2009|Angew.Chem.,Int.Ed.|48|6055|doi:10.1002/anie.200901888

(mu~3~-359111517-Hexa-aza-1713(26)-tripyridina-41016(12)-tricyclohexanacyclooctadecaphane)-bis(mu~3~-hydroxo)-tri-copper(ii) dichloride diperchlorate pentahydrateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 606116: Experimental Crystal Structure Determination

2007

Related Article: M.Luostarinen, M.Nissinen, M.Nieger, A.Shivanyuk, K.Rissanen|2007|Tetrahedron|63|1254|doi:10.1016/j.tet.2006.11.044

281420-Tetramethyl-461618-tetrakis(p-toluenesulfonato)-10122224-tetrahydroxy-1123-bis(butylammoniomethyl)calix[4]arene dichloride chloroform solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 149028: Experimental Crystal Structure Determination

2001

Related Article: A.Shivanyuk, M.Saadioui, F.Broda, I.Thondorf, M.O.Vysotsky, K.Rissanen, E.Kolehmainen, V.Bohmer|2004|Chem.-Eur.J.|10|2138|doi:10.1002/chem.200305633

46101216182224-Octahydroxy-281420-tetramethylcalix(4)arene bis(triethylammonium) dichloride clathrate acetonitrile solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 149024: Experimental Crystal Structure Determination

2001

Related Article: A.Shivanyuk, M.Saadioui, F.Broda, I.Thondorf, M.O.Vysotsky, K.Rissanen, E.Kolehmainen, V.Bohmer|2004|Chem.-Eur.J.|10|2138|doi:10.1002/chem.200305633

461618-Tetrahydroxy-10122224-tetrakis(p-tolylsulfonyloxy)-281420-tetrapentylcalix(4)arene bis(triethylammonium) dichloride clathrate acetonitrile solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Synthesis, Structural Analysis, Fiber Formation and Preliminary Anticancer Characterization of the Organotin Polyether from Dibutyltin Dichloride and…

2012

The organotin polyether derived from reaction of dibutyltin dichloride and 2,5-dimethyl-3-hexyne-2,5-diol was rapidly synthesized employing classical interfacial polymerization in 65% yield and a chain length of 360 units. IR results are consistent with the polyether structure. Bands characteristic of the formation of the Sn-O are present and bands characteristic of the Sn-Cl are absent. F MALDI MS results in the low mass range gives ion fragment clusters to five units. Isotopic abundance matches for tin are consistent with its presence in these ion fragment clusters. In the high mass range ion fragment clusters to greater than 300 units are found. The products offer outstanding inhibition …

AMPICILLINMALDI MSORGANOMETALLIC POLYMERSanomalous fiber formationANTIVIRAL ACTIVITYSettore CHIM/05 - Scienza E Tecnologia Dei Materiali PolimericiCONTAINING POLYMERSOrganotin polyetherCONDENSATIONtin-containing polymerF MALDI MSSettore CHIM/03 - Chimica Generale E InorganicaNORFLOXACININTERFACIAL TECHNIQUEanticancer drugdibutyltin dichlorideMATRIXPOLYESTERS25-dimethyl-3-hexyne-25-diol
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Marine Isonitriles and Their Related Compounds.

2016

Marine isonitriles represent the largest group of natural products carrying the remarkable isocyanide moiety. Together with marine isothiocyanates and formamides, which originate from the same biosynthetic pathways, they offer diverse biological activities and in spite of their exotic nature they may constitute potential lead structures for pharmaceutical development. Among other biological activities, several marine isonitriles show antimalarial, antitubercular, antifouling and antiplasmodial effects. In contrast to terrestrial isonitriles, which are mostly derived from α-amino acids, the vast majority of marine representatives are of terpenoid origin. An overview of all known marine isoni…

ChinaisothiocyanatesMagnetic Resonance SpectroscopyStereochemistrycarbonimidic dichloridesmalariaPharmaceutical ScienceReviewBiology010402 general chemistry01 natural sciencesantibioticsStructure-Activity RelationshipDrug DiscoveryOrganic chemistryHumansSeawaterPharmacology Toxicology and Pharmaceutics (miscellaneous)lcsh:QH301-705.5isonitriles010405 organic chemistryTerpenesmarine natural productsformamides0104 chemical scienceslcsh:Biology (General)Marine drugs
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Organometallic Titanocene–Gold Compounds as Potential Chemotherapeutics in Renal Cancer. Study of their Protein Kinase Inhibitory Properties

2014

Early–late transition metal TiAu2 compounds [(η-C5H5)2Ti{OC(O)CH2PPh2AuCl}2] (3) and new [(η-C5H5)2Ti{OC(O)-4-C6H4PPh2AuCl}2] (5) were evaluated as potential anticancer agents in vitro against renal and prostate cancer cell lines. The compounds were significantly more effective than monometallic titanocene dichloride and gold(I) [{HOC(O)RPPh2}AuCl] (R = −CH2– 6, −4-C6H4– 7) derivatives in renal cancer cell lines, indicating a synergistic effect of the resulting heterometallic species. The activity on renal cancer cell lines (for 5 in the nanomolar range) was considerably higher than that of cisplatin and highly active titanocene Y. Initial mechanistic studies in Caki-1 cells in vitro couple…

Cisplatin010405 organic chemistryKinaseChemistryStereochemistryOrganic ChemistryCancerTitanocene dichlorideNanotechnology010402 general chemistrymedicine.disease01 natural sciencesArticleIn vitro0104 chemical sciences3. Good healthInorganic Chemistrychemistry.chemical_compoundGold CompoundsmedicinePhysical and Theoretical ChemistryProtein kinase AProtein kinase Bmedicine.drugOrganometallics
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Memory effects in functionalized conducting polymer films: titanocene derivatized polypyrrole in contact with THF solutions

2003

Abstract Films with a polypyrrole matrix and pendant titanocene dichloride centers, p(Tc3Py), have been obtained by potentiostatic electropolymerization of the titanocene-pyrrolyl derivative, Tc3Py=Tc(CH 2 ) 3 NC 4 H 4 (Tc=Cl 2 TiCpCp′, Cp=C 5 H 5 , Cp′=C 5 H 4 ), in acetonitrile (AN) solutions on a Pt surface. The redox activity has been studied after the transfer of the film-coated electrode into the monomer-free solution of the same electrolyte, TBAPF 6 , in THF. Contrary to the case of AN or dichloromethane solutions, one can achieve a stable redox activity of the immobilized Tc centers in THF solutions during a series of cycles. A parallel between the redox properties of the Tc complex…

Conductive polymerGeneral Chemical EngineeringInorganic chemistryTitanocene dichlorideElectrolytePolypyrroleRedoxAnalytical Chemistrychemistry.chemical_compoundTransition metalchemistryElectrochemistryPhysical chemistryAcetonitrileMetalloceneJournal of Electroanalytical Chemistry
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Comparative electrochemical treatments of two chlorinated aliphatic hydrocarbons. Time course of the main reaction by-products.

2011

The chlorinated aliphatic hydrocarbons conjugate toxicity with high chemical stability, bioaccumulation and long-range diffusivity. Chloroethanes are particularly ubiquitous in the industry and in household products, and their entry to the environment may entail potential risks for the living beings. At present, the US Environmental Protection Agency is carrying out the Endocrine Disruptor Screening Program (EDSP), where 1,2-dichloroethane (DCA) and 1,1,2,2-tetrachloroethane (TCA) are considered as priorities for their potential effects on the endocrine system. DCA is also found in the list of priority substances drawn up by the European Commission. To avoid the release of chloroethanes int…

Environmental EngineeringTime FactorsFormic acidHealth Toxicology and MutagenesisOxalic acidInorganic chemistryReaction pathway1122-Tetrachloroethanechemistry.chemical_element12-DichloroethaneAcetatesElectrochemistryOrganochlorinated pollutant1122-Tetrachloroethane.Chemistry Techniques AnalyticalDiffusionchemistry.chemical_compound12-DichloroethaneElectrochemical water treatment technologieOxidizing agentChlorineElectrochemistryHydrocarbons ChlorinatedEnvironmental ChemistryEthylene DichloridesWaste Management and DisposalElectrodesEthaneAqueous solutionDichloroacetic Acid1122-TetrachloroethaneEquipment DesignHydrogen PeroxidePollutionOxygenchemistryElectro-FentonChlorineJournal of hazardous materials
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