The recent advances in the contribution of chiral triarylmethanes and tetraarylmethanes with organocatalysts

Zhengyu Han , Ruizhi Liu , Hai Huang

Chemical Synthesis ›› 2023, Vol. 3 ›› Issue (4) : 32

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Chemical Synthesis ›› 2023, Vol. 3 ›› Issue (4) :32 DOI: 10.20517/cs.2023.11
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The recent advances in the contribution of chiral triarylmethanes and tetraarylmethanes with organocatalysts

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Abstract

Chiral triarylmethane skeleton is an important structural unit of many known compounds that are widely applied in organic functional materials and pharmaceuticals. Thus, the efficient construction of this class of compounds has attracted intensive attention from chemists. There are two main difficulties in synthesizing this type of compound: (i) the steric resistance of molecular structures would make it hard to be constructed; (ii) there are three similar aryl groups on the stereocenter, which is difficult to achieve stereo-identification. At present, the most common strategy is to introduce the third aryl group into a diarylmethane framework through the asymmetric Friedel-Crafts reaction or addition reaction of electron-rich arenes, so as to construct chiral triarylmethanes. In this review, we summarized the recent developments in the construction of various chiral triarylmethanes and chiral tetraarylmethanes from easily accessible compounds under organocatalytic conditions. This article describes based on the types of electrophilic reagents, mainly including quinone methides, indole imine methides, and azadienes. At the same time, we also emphasize the mechanism of each representative reaction, which might enlighten the future development of this field.

Keywords

Chiral triarylmethanes / chiral tetraarylmethanes / oraganocatalysts / Friedel-Crafts reaction / conjugate addition / enantioselectivity

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Zhengyu Han, Ruizhi Liu, Hai Huang. The recent advances in the contribution of chiral triarylmethanes and tetraarylmethanes with organocatalysts. Chemical Synthesis, 2023, 3(4): 32 DOI:10.20517/cs.2023.11

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References

[1]

Duxbury DF.The photochemistry and photophysics of triphenylmethane dyes in solid and liquid media.Chem Rev1993;93:381-433

[2]

Shchepinov MS.Recent applications of bifunctional trityl groups.Chem Soc Rev2003;32:170-80

[3]

Nair V,Mathew SC.Recent advances in the chemistry of triaryl-and triheteroarylmethanes.Tetrahedron2006;62:6731-47

[4]

Mondal S.Synthetic methodologies of achiral diarylmethanols, diaryl and triarylmethanes (TRAMs) and medicinal properties of diaryl and triarylmethanes-an overview.RSC Adv2014;4:28317-58

[5]

Nambo M.Recent advances in the synthesis of triarylmethanes by transition metal catalysis.ACS Catal2015;5:4734-42.

[6]

Saha S,Schneider C.Chiral Brønsted acid-catalyzed Friedel-Crafts alkylation of electron-rich arenes with in situ-generated ortho-quinone methides: highly enantioselective synthesis of diarylindolylmethanes and triarylmethanes.Chem Commun2015;51:1461-4

[7]

Caruana L,Bernardi L.The Emergence of quinone methides in asymmetric organocatalysis.Molecules2015;20:11733-64 PMCID:PMC6331896

[8]

Dorsch C.Asymmetric Brønsted acid catalyzed cycloadditions of ortho-quinone methides and related compounds.Synthesis2022;54:3125-41.

[9]

Groenendaal B,Orru RV.1-Azadienes in cycloaddition and multicomponent reactions towards N-heterocycles.Chem Commun2008;43:5474-89.

[10]

Fell JS,Houk KN.Origins of the unfavorable activation and reaction energies of 1-azadiene heterocycles compared to 2-Azadiene heterocycles in diels-alder reactions.J Org Chem2017;82:1912-9

[11]

Mondal S,Panda G.Overview on the recent strategies for the enantioselective synthesis of 1, 1-Diarylalkanes, triarylmethanes and related molecules containing the diarylmethine stereocenter.ChemCatChem2018;10:1941-67

[12]

Pathak TP.Applications of ortho-quinone methide intermediates in catalysis and asymmetric synthesis.J Org Chem2011;76:9210-5 PMCID:PMC3215806

[13]

Bai WJ,Feng ZG,Wu KL.The domestication of ortho-quinone methides.Acc Chem Res2014;47:3655-64. PMCID:PMC4270411

[14]

Jaworski AA.Emerging roles of in situ generated quinone methides in metal-free catalysis.J Org Chem2016;81:10145-53

[15]

Wang Z.Recent advances in catalytic asymmetric reactions of o-Quinone methides.Synthesis2015;47:e7-e7

[16]

Li W,Zhang P.Recent advances in the catalytic enantioselective reactions of para-Quinone methides.Chem Asian J2018;13:2350-9

[17]

Lima CGS,Costa DCS.para-Quinone methides as acceptors in 1,6-Nucleophilic conjugate addition reactions for the synthesis of structurally diverse molecules.Eur J Org Chem2020;2020:2650-92

[18]

Kikuchi J.Enantioconvergent substitution reactions of racemic electrophiles by organocatalysis.Chemistry2021;27:10215-25

[19]

Ma Y,Yang Q,Xuan J.Recent advances in organocatalytic asymmetric cycloaddition reactions through ortho-Quinone methide scaffolds.Asian J Organic Chemis2021;10:1233-50

[20]

Zhang RL,Qiu KX.Asymmetric Synthesis of Triphenylmethanes via Organocatalytic Regio- and enantioselective friedel-crafts alkylation of aniline derivatives.Org Lett2023;25:1711-6.

[21]

Zhao W,Chu B.Enantioselective formation of all-carbon quaternary stereocenters from indoles and tertiary alcohols bearing a directing group.Angew Chem Int Ed Engl2015;54:1910-3

[22]

Wojciechowski K.Aza-ortho-xylylenes in Organic Synthesis.Eur J Org Chem 2001:3587

[23]

Liao HH,Hsiao CC,Rueping M.Asymmetric Brønsted acid catalyzed synthesis of triarylmethanes-construction of communesin and spiroindoline scaffolds.Angew Chem Int Ed Engl2015;54:15540-4

[24]

Nyffeler PT,Burkart MD,Wong CH.Selectfluor: mechanistic insight and applications.Angew Chem Int Ed Engl2004;44:192-212

[25]

Wang Y,Wang H,Du X.Bifunctional amine-squaramide catalyzed friedel-crafts alkylation based on ortho-quinone methides in oil-water phases: enantioselective synthesis of triarylmethanes.Adv Synth Catal2017;359:791-7

[26]

Wang Z,Sun J.Catalytic asymmetric 1,6-Conjugate addition of para-Quinone methides: formation of all-carbon quaternary stereocenters.Angew Chem Int Ed Engl2015;54:13711-4

[27]

Wong YF,Sun J.Chiral phosphoric acid catalyzed asymmetric addition of naphthols to para-quinone methides.Org Biomol Chem2016;14:5751-4

[28]

Han WY,Zhang XM.Enantioselective organocatalytic three-component Petasis reaction among salicylaldehydes, amines, and organoboronic acids.Org Lett2012;14:976-9

[29]

Huang G,Guo J.Enantioselective synthesis of triarylmethanes via organocatalytic 1,6-Addition of arylboronic acids to para-Quinone methides.Adv Synth Catal2019;361:1241-6

[30]

Wang JR,Hang QQ,Mei GJ.Catalytic asymmetric conjugate addition of indoles to para-quinone methide derivatives.J Org Chem2019;84:7829-39

[31]

Cheng Y,Jia Y,Li W.Organocatalytic enantioselective conjugate addition of 2-naphthols to ortho-hydroxyphenyl substituted para-quinone methides: access to unsymmetrical triarylmethanes.RSC Adv2019;9:24212-7 PMCID:PMC9069670

[32]

Wang Z,Pan X,Liu L.Synthesis of chiral triarylmethanes bearing all-carbon quaternary stereocenters: catalytic asymmetric oxidative cross-coupling of 2,2-Diarylacetonitriles and (Hetero)arenes.Angew Chem Int Ed Engl2020;59:3053-7

[33]

Pan T,Chen B.CuH-Catalyzed asymmetric 1,6-Conjugate reduction of p-Quinone methides: enantioselective synthesis of triarylmethanes and 1,1,2-triarylethanes.Org Lett2019;21:6397-402

[34]

Han Z,Liu C,Huang H.Enantioselective synthesis of triarylmethanes via organocatalytic transfer hydrogenation of para-quinone methides.Chem Commun2022;58:7128-31

[35]

Wang L,Xiao J.Alkylideneindoleninium ions and alkylideneindolenines: key intermediates for the asymmetric synthesis of 3-Indolyl derivatives.Asian J Org Chem2014;3:1036-52

[36]

Rueping M,Moreth SA.Asymmetric Brønsted acid catalysis: enantioselective nucleophilic substitutions and 1,4-additions.Angew Chem Int Ed Engl2008;47:593-6

[37]

Dalpozzo R.Strategies for the asymmetric functionalization of indoles: an update.Chem Soc Rev2015;44:742-78

[38]

Mei GJ.Indolylmethanols as reactants in catalytic asymmetric reactions.J Org Chem2017;82:7695-707

[39]

Petrini M.New Perspectives in the indole ring functionalization using 2-Indolylmethanols.Adv Synth Catal2020;362:1214-32

[40]

Sun FL,Gu Q.Enantioselective synthesis of fluorene derivatives by chiral phosphoric acid catalyzed tandem double Friedel-Crafts reaction.Chemistry2009;15:8709-12

[41]

Sun F,Gu Q,You S.Enantioselective synthesis of unsymmetrical triarylmethanes by chiral Brønsted Acids.Eur J Org Chem2010;2010:47-50.

[42]

Zhuo MH,Fan YS,Liu S.Enantioselective synthesis of triarylmethanes by chiral imidodiphosphoric acids catalyzed Friedel-Crafts reactions.Org Lett2014;16:1096-9

[43]

Zhuo M,Song S.Chiral imidodiphosphoric acids-catalyzed friedel-crafts reactions of indoles/pyrroles with 3-Hydroxy-indolyloxindoles: Enantioselective Synthesis of 3,3-Diaryloxindoles.Adv Synth Catal2016;358:808-15

[44]

Zhang Y,Fu L.Highly Efficient Atom-Economic Synthesis of Chiral Bis(indolyl)methanes Bearing Quaternary Stereogenic Carbon Centers.ChemCatChem2017;9:3107-10

[45]

Qi S,Ding JY.Chiral phosphoramide-catalyzed enantioselective synthesis of 2,3'-diindolylarylmethanes from indol-2-yl carbinols and indoles.Chem Commun2014;50:8605-8

[46]

Qi S,Han FS.The determination of the absolute configuration of a chiral 2,3'-diindolylarylmethane by NMR spectroscopy.Magn Reson Chem2015;53:181-7

[47]

Li X,Sun J.Quinone methides and indole imine methides as intermediates in enantioselective catalysis.Nat Synth2022;1:426-38

[48]

Zhang YC,Shi F.Organocatalytic asymmetric synthesis of indole-based chiral heterocycles: strategies, reactions, and outreach.Acc Chem Res2020;53:425-46

[49]

Gong YX,Zhang HH,Shi F.Enantioselective construction of a 2,2'-bisindolylmethane scaffold via catalytic asymmetric reactions of 2-indolylmethanols with 3-alkylindoles.Org Biomol Chem2015;13:7993-8000

[50]

Lan J,Chen K.Catalytic asymmetric substitution reaction of 3-Substituted 2-Indolylmethanols with 2-Naphthols.Synthesis2020;52:3684-92

[51]

Han Z,Zhuang H.Catalytic enantioselective synthesis of 2,3'-Bis(indolyl)methanes bearing all-carbon quaternary stereocenters via 2-Indole imine methides.Org Lett2023;25:477-82

[52]

Sun XX,Li GH,Shi F.Catalytic enantioselective and regioselective [3 + 3] cycloadditions using 2-indolylmethanols as 3C building blocks.Chemistry2016;22:17526-32

[53]

Zhu Z,Sun X,Liu J.Catalytic asymmetric [3 + 2] cycloadditions of C-3 unsubstituted 2-indolylmethanols: regio-, diastereo- and enantioselective construction of the cyclopenta[b]indole framework.Adv Synth Catal2016;358:3797-808

[54]

Li C,Fan T,Wu Q.Brønsted acid-catalyzed regioselective reactions of 2-indolylmethanols with cyclic enaminone and anhydride leading to C3-functionalized indole derivatives.Org Biomol Chem2016;14:6932-6

[55]

Zhang HH,Li C,Li Y.Design and enantioselective construction of axially chiral naphthyl-indole skeletons.Angew Chem Int Ed Engl2017;56:116-21

[56]

Zhu ZQ,Liu JX,Shi F.Enantioselective direct α-arylation of pyrazol-5-ones with 2-indolylmethanols via organo-metal cooperative catalysis.Org Lett2017;19:1542-5

[57]

Han Z,Tang L.Catalytic asymmetric allylic substitution/isomerization with central chirality transposition.Org Lett2022;24:4246-51

[58]

Yan Q,Chen C.Organocatalytic discrimination of non-directing aryl and heteroaryl groups: enantioselective synthesis of bioactive indole-containing triarylmethanes.Chem Sci2022;13:5767-73 PMCID:PMC9116282

[59]

Wang H,Wan Y,Mei G.Application of 7-Indolylmethanols in catalytic asymmetric arylations with tryptamines: enantioselective synthesis of 7-indolylmethanes.Adv Synth Catal2018;360:1850-60

[60]

Yue C,Fang X,Antilla JC.Chiral phosphoric acid catalyzed asymmetric synthesis of hetero-triarylmethanes from racemic indolyl alcohols.Angew Chem Int Ed Engl2018;57:11004-8

[61]

Ni H,Zheng W,Ullah N.Enantioselective phosphine-catalyzed formal [4 + 4] annulation of α,β-unsaturated imines and allene ketones: construction of eight-membered rings.Angew Chem Int Ed Engl2017;56:14222-6

[62]

Gu Z,Jiang G.Synthesis of chiral γ-aminophosphonates through the organocatalytic hydrophosphonylation of azadienes with phosphites.Org Chem Front2018;5:1148-51

[63]

Gu Z,Jiang G.Catalytic asymmetric conjugate addition of tritylthiol to azadienes with a bifunctional organocatalyst.sian J Org Chem2018;7:1561-4

[64]

Gu Z,Jiang G.Synthesis of benzofuran-fused 1,4-Dihydropyridines via bifunctional squaramide-catalyzed formal [4 + 2] Cycloaddition of Azadienes with Malononitrile+.Chin J Chem2018;36:1130-4

[65]

Gao ZH,Zhang Y,Li Y.Enantioselective N-Heterocyclic carbene-catalyzed synthesis of spirocyclic oxindole-benzofuroazepinones.J Org Chem2018;83:15225-35

[66]

Wang CS,Cheng YC,Mei GJ.Catalytic asymmetric [4 + 1] cyclization of benzofuran-derived azadienes with 3-Chlorooxindoles.J Org Chem2019;84:3214-22

[67]

Zhang C,Li F,Li P.organocatalytic enantioselective regiodivergent c-h bond functionalization of 1-naphthols with 1-azadienes.Adv Synth Catal2020;362:1286-91

[68]

Xie H,Wang X.Chiral Brønsted acid-catalyzed conjugate addition of indoles to azadienes: Enantioselective synthesis of hetero-triarylmethanes.Chin J Catal2019;40:1566-75

[69]

Lu Z,Lan W.Enantioselective synthesis of hetero-triarylmethanes by chiral phosphoric acid-catalyzed 1,4-addition of 3-substituted indoles with azadienes.Tetrahedron Lett2021;67:152862

[70]

Wang C,Wang M.Catalytic asymmetric 1,4-type Friedel-Crafts (hetero)arylations of 1-azadienes: the highly enantioselective syntheses of chiral hetero-triarylmethanes.Org Chem Front2020;7:609-16

[71]

Xie H,Chen M.Enantioselective synthesis of triarylmethanes bearing pyrazole moiety through squaramide-catalyzed addition of azadienes with pyrazolin-5-ones.Chin J Org Chem2020;40:3452

[72]

Natarajan A,Harbinski F.Novel arylsulfoanilide-oxindole hybrid as an anticancer agent that inhibits translation initiation.J Med Chem2004;47:4979-82

[73]

Neel DA,Lander PA.3,3-Bisaryloxindoles as mineralocorticoid receptor antagonists.Bioorg Med Chem Lett2005;15:2553-7

[74]

Uddin MK,Coulter T.Syntheses and antiproliferative evaluation of oxyphenisatin derivatives.Bioorg Med Chem Lett2007;17:2854-7

[75]

Christensen MK,Trojel-Hansen C.Synthesis and antitumor effect in vitro and in vivo of substituted 1,3-dihydroindole-2-ones.J Med Chem2010;53:7140-5

[76]

Shirakawa S,Tokuda T,Maruoka K.Catalytic asymmetric synthesis of 3,3'-diaryloxindoles as triarylmethanes with a chiral all-carbon quaternary center: phase-transfer-catalyzed S(N)Ar reaction.Angew Chem Int Ed Engl2014;53:6220-3

[77]

Shi BF,Zhang YH.Pd(II)-catalyzed enantioselective activation of C(sp2)-H and C(sp3)-H bonds using monoprotected amino acids as chiral ligands.Angew Chem Int Ed Engl2008;47:4882-6

[78]

Chu L,Moore CE,Yu JQ.Pd-catalyzed enantioselective C-H iodination: asymmetric synthesis of chiral diarylmethylamines.J Am Chem Soc2013;135:16344-7

[79]

Laforteza BN,Yu JQ.Enantioselective ortho-C-H cross-coupling of diarylmethylamines with organoborons.Angew Chem Int Ed Engl2015;54:11143-6 PMCID:PMC4642891

[80]

Lu S,Poh SB,Wong MW.Access to enantiopure triarylmethanes and 1,1-diarylalkanes by nhc-catalyzed acylative desymmetrization.Chemistry2017;23:2275-81

[81]

Tsuchida K,Nakajima K.Construction of chiral Tri- and tetra-arylmethanes bearing quaternary carbon centers: copper-catalyzed enantioselective propargylation of indoles with propargylic esters.Angew Chem Int Ed Engl2016;55:9728-32

[82]

Li X,Deng Z.Catalytic enantioselective synthesis of chiral tetraarylmethanes.Nat Catal2020;3:1010-9

[83]

Li Z,Li X,He ML.Organocatalytic asymmetric formal oxidative coupling for the construction of all-aryl quaternary stereocenters.Chem Sci2021;12:11793-8 PMCID:PMC8442720

[84]

Tan X,Wang Q,Zhu G.Enantioselective synthesis of tetraarylmethanes through meta-hydroxyl-directed benzylic substitution.Nat Synth2023;2:275-85

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