Arylation of Carbonyl Compounds Catalyzed by Rhodium and Iridium 1,3‐R 2 ‐Tetrahydropyrimidin‐2‐ylidenes: Structure‐Reactivity Correlations
Six different well‐defined rhodium and iridium N‐heterocyclic carbene complexes, i.e., RhCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) ( 1 ), RhBr(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) ( 2 ), RhCl[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) ( 3 ), IrCl(1,3‐dimesityltetrahydr...
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Veröffentlicht in: | Advanced synthesis & catalysis 2004-12, Vol.346 (13-15), p.1836-1843 |
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creator | Imlinger, Nicolas Mayr, Monika Wang, Dongren Wurst, Klaus Buchmeiser, Michael R. |
description | Six different well‐defined rhodium and iridium N‐heterocyclic carbene complexes, i.e., RhCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
1
), RhBr(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
2
), RhCl[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
3
), IrCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
4
), Rh(CF
3
COO)(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
5
), and IrBr[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
6
) (COD=1,5‐cyclooctadiene, mesityl=2,4,6‐trimethylphenyl) have been used as catalysts for the arylation of aldehydes and α,β‐unsaturated ketones using different arylboronic acids. Compounds
1
–
4
and
6
were prepared by reaction of [RhCl(COD)]
2
and [IrCl(COD)]
2
, respectively, with a base and the corresponding 1,3‐R
2
‐tetrahydropyrimidinium salt. Compound
5
was prepared by reaction of 1.0 equivalents of CF
3
COOAg with
1
. The use of an excess of CF
3
COOAg resulted in the replacement of Rh(I) by Ag(I) and yielded Ag(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)
+
Rh
2
(CF
3
COO)
3
(COD)
−
(
8
). Compounds
4
and
8
were characterized by X‐ray analysis. The activity of the rhodium complexes increased in the order
5
>
3
>
1
>
2
, indicating the necessity of strongly electron‐withdrawing groups at the metal centers, thus increasing their nucleophilicity. In due consequence, the “softer” iridium complexes
4
and
6
exhibited significantly reduced catalytic activity albeit with enhanced selectivity. The syntheses of the metal complexes as well as a detailed study on their reactivity in the arylation of carbonyl compounds using equimolar amounts of arylboronic acid and carbonyl compound in the presence of 0.08–1 mol % catalyst are presented. |
doi_str_mv | 10.1002/adsc.200404176 |
format | Article |
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1
), RhBr(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
2
), RhCl[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
3
), IrCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
4
), Rh(CF
3
COO)(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
5
), and IrBr[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
6
) (COD=1,5‐cyclooctadiene, mesityl=2,4,6‐trimethylphenyl) have been used as catalysts for the arylation of aldehydes and α,β‐unsaturated ketones using different arylboronic acids. Compounds
1
–
4
and
6
were prepared by reaction of [RhCl(COD)]
2
and [IrCl(COD)]
2
, respectively, with a base and the corresponding 1,3‐R
2
‐tetrahydropyrimidinium salt. Compound
5
was prepared by reaction of 1.0 equivalents of CF
3
COOAg with
1
. The use of an excess of CF
3
COOAg resulted in the replacement of Rh(I) by Ag(I) and yielded Ag(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)
+
Rh
2
(CF
3
COO)
3
(COD)
−
(
8
). Compounds
4
and
8
were characterized by X‐ray analysis. The activity of the rhodium complexes increased in the order
5
>
3
>
1
>
2
, indicating the necessity of strongly electron‐withdrawing groups at the metal centers, thus increasing their nucleophilicity. In due consequence, the “softer” iridium complexes
4
and
6
exhibited significantly reduced catalytic activity albeit with enhanced selectivity. The syntheses of the metal complexes as well as a detailed study on their reactivity in the arylation of carbonyl compounds using equimolar amounts of arylboronic acid and carbonyl compound in the presence of 0.08–1 mol % catalyst are presented.</description><identifier>ISSN: 1615-4150</identifier><identifier>EISSN: 1615-4169</identifier><identifier>DOI: 10.1002/adsc.200404176</identifier><language>eng</language><ispartof>Advanced synthesis & catalysis, 2004-12, Vol.346 (13-15), p.1836-1843</ispartof><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c154t-5c436e143ded6a89a958a43471b5c38e66af1687e6b14871445dd3e3ea99b64a3</citedby><cites>FETCH-LOGICAL-c154t-5c436e143ded6a89a958a43471b5c38e66af1687e6b14871445dd3e3ea99b64a3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,27901,27902</link.rule.ids></links><search><creatorcontrib>Imlinger, Nicolas</creatorcontrib><creatorcontrib>Mayr, Monika</creatorcontrib><creatorcontrib>Wang, Dongren</creatorcontrib><creatorcontrib>Wurst, Klaus</creatorcontrib><creatorcontrib>Buchmeiser, Michael R.</creatorcontrib><title>Arylation of Carbonyl Compounds Catalyzed by Rhodium and Iridium 1,3‐R 2 ‐Tetrahydropyrimidin‐2‐ylidenes: Structure‐Reactivity Correlations</title><title>Advanced synthesis & catalysis</title><description>Six different well‐defined rhodium and iridium N‐heterocyclic carbene complexes, i.e., RhCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
1
), RhBr(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
2
), RhCl[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
3
), IrCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
4
), Rh(CF
3
COO)(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
5
), and IrBr[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
6
) (COD=1,5‐cyclooctadiene, mesityl=2,4,6‐trimethylphenyl) have been used as catalysts for the arylation of aldehydes and α,β‐unsaturated ketones using different arylboronic acids. Compounds
1
–
4
and
6
were prepared by reaction of [RhCl(COD)]
2
and [IrCl(COD)]
2
, respectively, with a base and the corresponding 1,3‐R
2
‐tetrahydropyrimidinium salt. Compound
5
was prepared by reaction of 1.0 equivalents of CF
3
COOAg with
1
. The use of an excess of CF
3
COOAg resulted in the replacement of Rh(I) by Ag(I) and yielded Ag(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)
+
Rh
2
(CF
3
COO)
3
(COD)
−
(
8
). Compounds
4
and
8
were characterized by X‐ray analysis. The activity of the rhodium complexes increased in the order
5
>
3
>
1
>
2
, indicating the necessity of strongly electron‐withdrawing groups at the metal centers, thus increasing their nucleophilicity. In due consequence, the “softer” iridium complexes
4
and
6
exhibited significantly reduced catalytic activity albeit with enhanced selectivity. The syntheses of the metal complexes as well as a detailed study on their reactivity in the arylation of carbonyl compounds using equimolar amounts of arylboronic acid and carbonyl compound in the presence of 0.08–1 mol % catalyst are presented.</description><issn>1615-4150</issn><issn>1615-4169</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2004</creationdate><recordtype>article</recordtype><recordid>eNo9UMtOwzAQtBBIlMKVsz-AFG_sOAm3KuJRqRJSKedoEztqUBpXtoNkTnwCF36QLyGlqIfVjEa7O6Mh5BrYDBiLb1G5ehYzJpiAVJ6QCUhIIgEyPz3yhJ2TC-feGIM0S9MJ-Z7b0KFvTU9NQwu0lelDRwuz3ZmhV26UPHbhQytaBbraGNUOW4q9ogvb_nG44T-fXysa0xHW2lvcBGXNLth2O270oxqPE7pW6V67O_ri7VD7wer9mcbat--tD6OltfoQxV2SswY7p6_-cUpeH-7XxVO0fH5cFPNlVEMifJTUgksNgiutJGY55kmGgosUqqTmmZYSG5BZqmUFIktBiEQprrnGPK-kQD4ls8Pf2hrnrG7K3ZgabSiBlftSy32p5bFU_gsK43Jm</recordid><startdate>200412</startdate><enddate>200412</enddate><creator>Imlinger, Nicolas</creator><creator>Mayr, Monika</creator><creator>Wang, Dongren</creator><creator>Wurst, Klaus</creator><creator>Buchmeiser, Michael R.</creator><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>200412</creationdate><title>Arylation of Carbonyl Compounds Catalyzed by Rhodium and Iridium 1,3‐R 2 ‐Tetrahydropyrimidin‐2‐ylidenes: Structure‐Reactivity Correlations</title><author>Imlinger, Nicolas ; Mayr, Monika ; Wang, Dongren ; Wurst, Klaus ; Buchmeiser, Michael R.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c154t-5c436e143ded6a89a958a43471b5c38e66af1687e6b14871445dd3e3ea99b64a3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2004</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Imlinger, Nicolas</creatorcontrib><creatorcontrib>Mayr, Monika</creatorcontrib><creatorcontrib>Wang, Dongren</creatorcontrib><creatorcontrib>Wurst, Klaus</creatorcontrib><creatorcontrib>Buchmeiser, Michael R.</creatorcontrib><collection>CrossRef</collection><jtitle>Advanced synthesis & catalysis</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Imlinger, Nicolas</au><au>Mayr, Monika</au><au>Wang, Dongren</au><au>Wurst, Klaus</au><au>Buchmeiser, Michael R.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Arylation of Carbonyl Compounds Catalyzed by Rhodium and Iridium 1,3‐R 2 ‐Tetrahydropyrimidin‐2‐ylidenes: Structure‐Reactivity Correlations</atitle><jtitle>Advanced synthesis & catalysis</jtitle><date>2004-12</date><risdate>2004</risdate><volume>346</volume><issue>13-15</issue><spage>1836</spage><epage>1843</epage><pages>1836-1843</pages><issn>1615-4150</issn><eissn>1615-4169</eissn><abstract>Six different well‐defined rhodium and iridium N‐heterocyclic carbene complexes, i.e., RhCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
1
), RhBr(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
2
), RhCl[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
3
), IrCl(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
4
), Rh(CF
3
COO)(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)(COD) (
5
), and IrBr[1,3‐di(2‐propyl)tetrahydropyrimidin‐2‐ylidene](COD) (
6
) (COD=1,5‐cyclooctadiene, mesityl=2,4,6‐trimethylphenyl) have been used as catalysts for the arylation of aldehydes and α,β‐unsaturated ketones using different arylboronic acids. Compounds
1
–
4
and
6
were prepared by reaction of [RhCl(COD)]
2
and [IrCl(COD)]
2
, respectively, with a base and the corresponding 1,3‐R
2
‐tetrahydropyrimidinium salt. Compound
5
was prepared by reaction of 1.0 equivalents of CF
3
COOAg with
1
. The use of an excess of CF
3
COOAg resulted in the replacement of Rh(I) by Ag(I) and yielded Ag(1,3‐dimesityltetrahydropyrimidin‐2‐ylidene)
+
Rh
2
(CF
3
COO)
3
(COD)
−
(
8
). Compounds
4
and
8
were characterized by X‐ray analysis. The activity of the rhodium complexes increased in the order
5
>
3
>
1
>
2
, indicating the necessity of strongly electron‐withdrawing groups at the metal centers, thus increasing their nucleophilicity. In due consequence, the “softer” iridium complexes
4
and
6
exhibited significantly reduced catalytic activity albeit with enhanced selectivity. The syntheses of the metal complexes as well as a detailed study on their reactivity in the arylation of carbonyl compounds using equimolar amounts of arylboronic acid and carbonyl compound in the presence of 0.08–1 mol % catalyst are presented.</abstract><doi>10.1002/adsc.200404176</doi><tpages>8</tpages></addata></record> |
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source | Wiley Online Library Journals Frontfile Complete |
title | Arylation of Carbonyl Compounds Catalyzed by Rhodium and Iridium 1,3‐R 2 ‐Tetrahydropyrimidin‐2‐ylidenes: Structure‐Reactivity Correlations |
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