Substituent Effect on Organotin Tp Compounds as the Tp Reagent for the Preparation of Mono Tp Complexes of Group 4—6 Metals (Tp = Tris(3,5-dimethylpyrazol-1-yl)hydroborate)

Organotin compounds [Tp*SnCl3-nBun] (2: n = 1; 3: n = 2) having a Tp* ligand (Tp* = tris(3,5-dimethylpyrazol-1-yl)hydroborate) are useful reagents for introducing a Tp* ligand on Group 4 and 5 metals and chromium. The test reactions of these organotin compounds along with [Tp*SnCl3] (1) with ZrCl4,...

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Veröffentlicht in:Bulletin of the Chemical Society of Japan 2000-08, Vol.73 (8), p.1735-1748
Hauptverfasser: Oshiki, Toshiyuki, Mashima, Kazushi, Kawamura, Shin-ichi, Tani, Kazuhide, Kitaura, Kazuo
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creator Oshiki, Toshiyuki
Mashima, Kazushi
Kawamura, Shin-ichi
Tani, Kazuhide
Kitaura, Kazuo
description Organotin compounds [Tp*SnCl3-nBun] (2: n = 1; 3: n = 2) having a Tp* ligand (Tp* = tris(3,5-dimethylpyrazol-1-yl)hydroborate) are useful reagents for introducing a Tp* ligand on Group 4 and 5 metals and chromium. The test reactions of these organotin compounds along with [Tp*SnCl3] (1) with ZrCl4, affording a known complex [Tp*ZrCl3] (4), were examined. The reaction rates were in the order 3 > 2 1. This tendency was understood by the average Sn-N(Tp* ligand) bond distance being longer in the order 3 > 2 > 1 as revealed by the crystallographic studies and the orbital interactions between the Tp* ligand and the SnCl3-nBun fragments estimated by the ab initio calculations for 1—3. On the basis of the above findings, we applied the compound 3 to prepare Tp* complexes of Group 4—6 metals. Reactions of TiCl4 with an equimolar amount of 3 afforded [Tp*TiCl3] (7) in good yields after a simple rinse to remove the resulting tin compound, SnBu2Cl2. [Tp*HfCl3] (8) was prepared in moderate yield by reaction of [HfCl4(THF)2] with 3 under severe conditions. Similarly, the reactions of 3 with a stoichiometric amount of [NbCl4(THF)2] or [NbCl5(OEt)2] and TaCl5 in toluene gave [Tp*NbCl3] (9) and [Tp*TaCl3][TaCl6] (10), respectively. We also applied our synthetic method to prepare Tp* complexes of vanadium, [Tp*VCl2(THF)] (11), [Tp*VCl2(DNAP)] (12) (DMAP = 4-dimethylaminopyridine), and [Tp*VCl2(=NC6H3Me2-2,6)] (13) and those of chromium, [Tp*CrCl2(L)] (14: L = THF; 15: L = H2O; 16: L = DMAP). Some of these Tp* complexes, 4, 8, 12, 13, 15, and 16 were crystallographically characterized to have discrete octahedral geometry containing the facial coordination of the Tp* ligand.
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The test reactions of these organotin compounds along with [Tp*SnCl3] (1) with ZrCl4, affording a known complex [Tp*ZrCl3] (4), were examined. The reaction rates were in the order 3 &gt; 2 1. This tendency was understood by the average Sn-N(Tp* ligand) bond distance being longer in the order 3 &gt; 2 &gt; 1 as revealed by the crystallographic studies and the orbital interactions between the Tp* ligand and the SnCl3-nBun fragments estimated by the ab initio calculations for 1—3. On the basis of the above findings, we applied the compound 3 to prepare Tp* complexes of Group 4—6 metals. Reactions of TiCl4 with an equimolar amount of 3 afforded [Tp*TiCl3] (7) in good yields after a simple rinse to remove the resulting tin compound, SnBu2Cl2. [Tp*HfCl3] (8) was prepared in moderate yield by reaction of [HfCl4(THF)2] with 3 under severe conditions. Similarly, the reactions of 3 with a stoichiometric amount of [NbCl4(THF)2] or [NbCl5(OEt)2] and TaCl5 in toluene gave [Tp*NbCl3] (9) and [Tp*TaCl3][TaCl6] (10), respectively. We also applied our synthetic method to prepare Tp* complexes of vanadium, [Tp*VCl2(THF)] (11), [Tp*VCl2(DNAP)] (12) (DMAP = 4-dimethylaminopyridine), and [Tp*VCl2(=NC6H3Me2-2,6)] (13) and those of chromium, [Tp*CrCl2(L)] (14: L = THF; 15: L = H2O; 16: L = DMAP). 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The test reactions of these organotin compounds along with [Tp*SnCl3] (1) with ZrCl4, affording a known complex [Tp*ZrCl3] (4), were examined. The reaction rates were in the order 3 &gt; 2 1. This tendency was understood by the average Sn-N(Tp* ligand) bond distance being longer in the order 3 &gt; 2 &gt; 1 as revealed by the crystallographic studies and the orbital interactions between the Tp* ligand and the SnCl3-nBun fragments estimated by the ab initio calculations for 1—3. On the basis of the above findings, we applied the compound 3 to prepare Tp* complexes of Group 4—6 metals. Reactions of TiCl4 with an equimolar amount of 3 afforded [Tp*TiCl3] (7) in good yields after a simple rinse to remove the resulting tin compound, SnBu2Cl2. [Tp*HfCl3] (8) was prepared in moderate yield by reaction of [HfCl4(THF)2] with 3 under severe conditions. Similarly, the reactions of 3 with a stoichiometric amount of [NbCl4(THF)2] or [NbCl5(OEt)2] and TaCl5 in toluene gave [Tp*NbCl3] (9) and [Tp*TaCl3][TaCl6] (10), respectively. We also applied our synthetic method to prepare Tp* complexes of vanadium, [Tp*VCl2(THF)] (11), [Tp*VCl2(DNAP)] (12) (DMAP = 4-dimethylaminopyridine), and [Tp*VCl2(=NC6H3Me2-2,6)] (13) and those of chromium, [Tp*CrCl2(L)] (14: L = THF; 15: L = H2O; 16: L = DMAP). Some of these Tp* complexes, 4, 8, 12, 13, 15, and 16 were crystallographically characterized to have discrete octahedral geometry containing the facial coordination of the Tp* ligand.</description><issn>0009-2673</issn><issn>1348-0634</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2000</creationdate><recordtype>article</recordtype><recordid>eNptkc1O3DAUhS1UpE5pd30AS2xAIoP_kyxYVKMpIA2iguk6cpJrJqNMnNqORLrqQ_Q5eKg-CQ4DEouuLB9937mLg9BXSuaUCXVeVn47T_mcplweoBnlIkuI4uIDmhFC8oSplH9En7zfxm8mRT5DT_dD6UMTBugCXhoDVcC2w7fuQXc2NB1e93hhd70dutpj7XHYwJTdgX6YFGPdS_TDQa-dDk2UrcE3trNvaguP4Kfw0tmhx-Lfn78K30DQrccnkbnAa9f4E34mk7rZQdiMbT86_du2CU3G9nQz1s6WNpbD6Wd0aKIHX17fI_Tz-3K9uEpWt5fXi2-rpBJChcRADikFQlmdZxwM01wqolMqaiPLMitVzjIGlEjOKTNcUs5rqEshZAXMKH6Ejve9vbO_BvCh2NrBdfFkQYXMhSKM0kid7anKWe8dmKJ3zU67saCkmBYppkWKlBfTIhHPX_EN7JoqltmqgTBuda-7dwf-5z4D8UKUeA</recordid><startdate>20000801</startdate><enddate>20000801</enddate><creator>Oshiki, Toshiyuki</creator><creator>Mashima, Kazushi</creator><creator>Kawamura, Shin-ichi</creator><creator>Tani, Kazuhide</creator><creator>Kitaura, Kazuo</creator><general>The Chemical Society of Japan</general><general>Chemical Society of Japan</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7SR</scope><scope>8BQ</scope><scope>8FD</scope><scope>JG9</scope></search><sort><creationdate>20000801</creationdate><title>Substituent Effect on Organotin Tp Compounds as the Tp Reagent for the Preparation of Mono Tp Complexes of Group 4—6 Metals (Tp = Tris(3,5-dimethylpyrazol-1-yl)hydroborate)</title><author>Oshiki, Toshiyuki ; Mashima, Kazushi ; Kawamura, Shin-ichi ; Tani, Kazuhide ; Kitaura, Kazuo</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c446t-fe9e71e012d983ef2a3560a714df5bb8b69282e1053312f35133dedb445ce2f63</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2000</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Oshiki, Toshiyuki</creatorcontrib><creatorcontrib>Mashima, Kazushi</creatorcontrib><creatorcontrib>Kawamura, Shin-ichi</creatorcontrib><creatorcontrib>Tani, Kazuhide</creatorcontrib><creatorcontrib>Kitaura, Kazuo</creatorcontrib><collection>CrossRef</collection><collection>Engineered Materials Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Materials Research Database</collection><jtitle>Bulletin of the Chemical Society of Japan</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Oshiki, Toshiyuki</au><au>Mashima, Kazushi</au><au>Kawamura, Shin-ichi</au><au>Tani, Kazuhide</au><au>Kitaura, Kazuo</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Substituent Effect on Organotin Tp Compounds as the Tp Reagent for the Preparation of Mono Tp Complexes of Group 4—6 Metals (Tp = Tris(3,5-dimethylpyrazol-1-yl)hydroborate)</atitle><jtitle>Bulletin of the Chemical Society of Japan</jtitle><addtitle>Bulletin of the Chemical Society of Japan</addtitle><date>2000-08-01</date><risdate>2000</risdate><volume>73</volume><issue>8</issue><spage>1735</spage><epage>1748</epage><pages>1735-1748</pages><issn>0009-2673</issn><eissn>1348-0634</eissn><abstract>Organotin compounds [Tp*SnCl3-nBun] (2: n = 1; 3: n = 2) having a Tp* ligand (Tp* = tris(3,5-dimethylpyrazol-1-yl)hydroborate) are useful reagents for introducing a Tp* ligand on Group 4 and 5 metals and chromium. The test reactions of these organotin compounds along with [Tp*SnCl3] (1) with ZrCl4, affording a known complex [Tp*ZrCl3] (4), were examined. The reaction rates were in the order 3 &gt; 2 1. This tendency was understood by the average Sn-N(Tp* ligand) bond distance being longer in the order 3 &gt; 2 &gt; 1 as revealed by the crystallographic studies and the orbital interactions between the Tp* ligand and the SnCl3-nBun fragments estimated by the ab initio calculations for 1—3. On the basis of the above findings, we applied the compound 3 to prepare Tp* complexes of Group 4—6 metals. Reactions of TiCl4 with an equimolar amount of 3 afforded [Tp*TiCl3] (7) in good yields after a simple rinse to remove the resulting tin compound, SnBu2Cl2. [Tp*HfCl3] (8) was prepared in moderate yield by reaction of [HfCl4(THF)2] with 3 under severe conditions. Similarly, the reactions of 3 with a stoichiometric amount of [NbCl4(THF)2] or [NbCl5(OEt)2] and TaCl5 in toluene gave [Tp*NbCl3] (9) and [Tp*TaCl3][TaCl6] (10), respectively. We also applied our synthetic method to prepare Tp* complexes of vanadium, [Tp*VCl2(THF)] (11), [Tp*VCl2(DNAP)] (12) (DMAP = 4-dimethylaminopyridine), and [Tp*VCl2(=NC6H3Me2-2,6)] (13) and those of chromium, [Tp*CrCl2(L)] (14: L = THF; 15: L = H2O; 16: L = DMAP). Some of these Tp* complexes, 4, 8, 12, 13, 15, and 16 were crystallographically characterized to have discrete octahedral geometry containing the facial coordination of the Tp* ligand.</abstract><cop>Tokyo</cop><pub>The Chemical Society of Japan</pub><doi>10.1246/bcsj.73.1735</doi><tpages>14</tpages></addata></record>
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title Substituent Effect on Organotin Tp Compounds as the Tp Reagent for the Preparation of Mono Tp Complexes of Group 4—6 Metals (Tp = Tris(3,5-dimethylpyrazol-1-yl)hydroborate)
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