Transformations Leading to the Generation of Dithiolene Ligands Initiated by Reactions of Sulfur-Rich WS(S2)(S2CNR2)2 Complexes with Dimethyl Acetylenedicarboxylate and Phenylacetylene

Purple W(S 2C2R‘2){SC(R‘)C(R‘)SC(NR2)S}(S 2CNR2) (1, donor atoms italicized) are formed in the reactions of WS(S2)(S2CNR2)2 (R = Me, Et) with dimethyl acetylenedicarboxylate (DMAC, R‘ = CO2Me) in dichloromethane at room temperature or phenylacetylene (R‘ = Ph/H) in refluxing 1,2-dichloroethane. Thes...

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Veröffentlicht in:Organometallics 2000-12, Vol.19 (26), p.5643-5653
Hauptverfasser: Lim, Patrick J, Cook, Vernon C, Doonan, Christian J, Young, Charles G, Tiekink, Edward R. T
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container_issue 26
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Cook, Vernon C
Doonan, Christian J
Young, Charles G
Tiekink, Edward R. T
description Purple W(S 2C2R‘2){SC(R‘)C(R‘)SC(NR2)S}(S 2CNR2) (1, donor atoms italicized) are formed in the reactions of WS(S2)(S2CNR2)2 (R = Me, Et) with dimethyl acetylenedicarboxylate (DMAC, R‘ = CO2Me) in dichloromethane at room temperature or phenylacetylene (R‘ = Ph/H) in refluxing 1,2-dichloroethane. These complexes undergo CS−C(NR2) bond cleavage upon photolysis to produce green thiocarboxamido species, W(S 2C2R‘2)2(S 2CNR2)(SCNR2) (2), which in turn convert to orange, anionic, bis(dithiolene) complexes, [W(S 2C2R‘2)2(S 2CNR2)]- (3, isolated as various tetraalkylammonium salts). The complexes have been characterized by microanalysis, IR, UV−visible, and 1H and 13C NMR spectroscopy. An X-ray crystal structure of 1a·0.5H2O (R = Me, R‘ = CO2Me) revealed two independent, pseudo-enantiomeric, eight-coordinate complexes containing novel κ4-SC(R‘)C(R‘)SC(NR2)S - and bidentate dithiolene and dithiocarbamate ligands. Complexes 2 are fluxional at room temperature and exhibit IR and 13C NMR signals characteristic of thiocarboxamido (ν 1590 cm-1, δ 226−228), dithiocarbamate (ν 1540 cm-1, δ 190−201), and dithiolene ligands. An X-ray crystal structure of NEt4[3a] (R = Me, R‘ = CO2Me) revealed an S6-donor, trigonal-prismatic anion possessing bidentate dithiocarbamate and dithiolene ligands. In the sequence of transformations, WS(S2)(S2CNR2)2→1→2→3, the construction of two dithiolene ligands from two alkyne units and three chemically distinct sulfur-donor ligands (thio, disulfido, dithiocarbamate) has been tracked for the first time.
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An X-ray crystal structure of 1a·0.5H2O (R = Me, R‘ = CO2Me) revealed two independent, pseudo-enantiomeric, eight-coordinate complexes containing novel κ4-SC(R‘)C(R‘)SC(NR2)S - and bidentate dithiolene and dithiocarbamate ligands. Complexes 2 are fluxional at room temperature and exhibit IR and 13C NMR signals characteristic of thiocarboxamido (ν 1590 cm-1, δ 226−228), dithiocarbamate (ν 1540 cm-1, δ 190−201), and dithiolene ligands. An X-ray crystal structure of NEt4[3a] (R = Me, R‘ = CO2Me) revealed an S6-donor, trigonal-prismatic anion possessing bidentate dithiocarbamate and dithiolene ligands. 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T</creatorcontrib><title>Transformations Leading to the Generation of Dithiolene Ligands Initiated by Reactions of Sulfur-Rich WS(S2)(S2CNR2)2 Complexes with Dimethyl Acetylenedicarboxylate and Phenylacetylene</title><title>Organometallics</title><addtitle>Organometallics</addtitle><description>Purple W(S 2C2R‘2){SC(R‘)C(R‘)SC(NR2)S}(S 2CNR2) (1, donor atoms italicized) are formed in the reactions of WS(S2)(S2CNR2)2 (R = Me, Et) with dimethyl acetylenedicarboxylate (DMAC, R‘ = CO2Me) in dichloromethane at room temperature or phenylacetylene (R‘ = Ph/H) in refluxing 1,2-dichloroethane. These complexes undergo CS−C(NR2) bond cleavage upon photolysis to produce green thiocarboxamido species, W(S 2C2R‘2)2(S 2CNR2)(SCNR2) (2), which in turn convert to orange, anionic, bis(dithiolene) complexes, [W(S 2C2R‘2)2(S 2CNR2)]- (3, isolated as various tetraalkylammonium salts). The complexes have been characterized by microanalysis, IR, UV−visible, and 1H and 13C NMR spectroscopy. An X-ray crystal structure of 1a·0.5H2O (R = Me, R‘ = CO2Me) revealed two independent, pseudo-enantiomeric, eight-coordinate complexes containing novel κ4-SC(R‘)C(R‘)SC(NR2)S - and bidentate dithiolene and dithiocarbamate ligands. Complexes 2 are fluxional at room temperature and exhibit IR and 13C NMR signals characteristic of thiocarboxamido (ν 1590 cm-1, δ 226−228), dithiocarbamate (ν 1540 cm-1, δ 190−201), and dithiolene ligands. An X-ray crystal structure of NEt4[3a] (R = Me, R‘ = CO2Me) revealed an S6-donor, trigonal-prismatic anion possessing bidentate dithiocarbamate and dithiolene ligands. 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T</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-a210t-70b6c063df2b397a5920788f3804f7028400bd2ffd30003e9f6a449d981713543</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2000</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Lim, Patrick J</creatorcontrib><creatorcontrib>Cook, Vernon C</creatorcontrib><creatorcontrib>Doonan, Christian J</creatorcontrib><creatorcontrib>Young, Charles G</creatorcontrib><creatorcontrib>Tiekink, Edward R. T</creatorcontrib><collection>Istex</collection><collection>CrossRef</collection><jtitle>Organometallics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Lim, Patrick J</au><au>Cook, Vernon C</au><au>Doonan, Christian J</au><au>Young, Charles G</au><au>Tiekink, Edward R. T</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Transformations Leading to the Generation of Dithiolene Ligands Initiated by Reactions of Sulfur-Rich WS(S2)(S2CNR2)2 Complexes with Dimethyl Acetylenedicarboxylate and Phenylacetylene</atitle><jtitle>Organometallics</jtitle><addtitle>Organometallics</addtitle><date>2000-12-25</date><risdate>2000</risdate><volume>19</volume><issue>26</issue><spage>5643</spage><epage>5653</epage><pages>5643-5653</pages><issn>0276-7333</issn><eissn>1520-6041</eissn><abstract>Purple W(S 2C2R‘2){SC(R‘)C(R‘)SC(NR2)S}(S 2CNR2) (1, donor atoms italicized) are formed in the reactions of WS(S2)(S2CNR2)2 (R = Me, Et) with dimethyl acetylenedicarboxylate (DMAC, R‘ = CO2Me) in dichloromethane at room temperature or phenylacetylene (R‘ = Ph/H) in refluxing 1,2-dichloroethane. These complexes undergo CS−C(NR2) bond cleavage upon photolysis to produce green thiocarboxamido species, W(S 2C2R‘2)2(S 2CNR2)(SCNR2) (2), which in turn convert to orange, anionic, bis(dithiolene) complexes, [W(S 2C2R‘2)2(S 2CNR2)]- (3, isolated as various tetraalkylammonium salts). The complexes have been characterized by microanalysis, IR, UV−visible, and 1H and 13C NMR spectroscopy. An X-ray crystal structure of 1a·0.5H2O (R = Me, R‘ = CO2Me) revealed two independent, pseudo-enantiomeric, eight-coordinate complexes containing novel κ4-SC(R‘)C(R‘)SC(NR2)S - and bidentate dithiolene and dithiocarbamate ligands. Complexes 2 are fluxional at room temperature and exhibit IR and 13C NMR signals characteristic of thiocarboxamido (ν 1590 cm-1, δ 226−228), dithiocarbamate (ν 1540 cm-1, δ 190−201), and dithiolene ligands. An X-ray crystal structure of NEt4[3a] (R = Me, R‘ = CO2Me) revealed an S6-donor, trigonal-prismatic anion possessing bidentate dithiocarbamate and dithiolene ligands. In the sequence of transformations, WS(S2)(S2CNR2)2→1→2→3, the construction of two dithiolene ligands from two alkyne units and three chemically distinct sulfur-donor ligands (thio, disulfido, dithiocarbamate) has been tracked for the first time.</abstract><pub>American Chemical Society</pub><doi>10.1021/om0006561</doi><tpages>11</tpages></addata></record>
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