33 Lu Y, Leow D, Wang X S, et al. Hydroxyl-directed C-H carbonylation enabled by mono-N-protected aminoacid ligands: An expedient route to 1-isochromanones. Chem Sci, 2011, 2: 967-971
[2]
34 Lang R, Wu J L, Shi L J, et al. Regioselective Rh-catalyzed direct carbonylation of indoles to synthesize indole-3-carboxylates. Chem Commun, 2011, 47: 12553-12555
[3]
35 Lang R, Shi L J, Li D F, et al. A general method for palladium-catalyzed direct carbonylation of indole with alcohol and phenol. Org Lett, 2012, 14: 4130-4133
[4]
36 Zhang H, Liu D, Chen C Y, et al. Palladium-catalyzed regioselective aerobic oxidative C-H/N-H carbonylation of heteroarenes under base-free conditions. Chem Eur J, 2011, 17: 9581-9585
[5]
37 Zhao M N, Ran L F, Chen M, et al. Palladium-catalyzed carbonylation of indoles for synthesis of indol-3-yl aryl ketones. ACS Catal, 2015, 5: 1210-1213
[6]
38 Zhang H, Shi R Y, Gan P, et al. Palladium-catalyzed oxidative double C-H functionalization/carbonylation for the synthesis of xanthones. Angew Chem Int Ed, 2012, 51: 5204-5207
[7]
39 Guan Z H, Chen M, Ren Z H. Palladium-catalyzed regioselective carbonylation of C-H bonds of N-alkyl anilines for synthesis of isatoic anhydrides. J Am Chem Soc, 2012, 134: 17490-17493
[8]
40 Gao S, Chen M, Du W, et al. Palladium-catalyzed carbonylation of o-iodoanilines for synthesis of isatoic anhydrides. J Org Chem, 2014, 79: 4196-4200
[9]
41 Li W, Duan Z L, Zhang X Y, et al. From amilines to isatins: Oxidative palladium-catalyzed double carbonylation of C-H bonds. Angew Chem Int Ed, 2015, 54: 1893-1896
[10]
42 Chen M, Ren Z H, Wang Y Y, et al. Palladium-catalyzed oxidative carbonylation of aromatic C-H bonds of N-alkylanilines with CO and alcohols for the synthesis of o-aminobenzoates. J Org Chem, 2015, 80: 1258-1263
[11]
43 Li W, Duan Z L, Jiang R, et al. Palladium/copper-catalyzed aerobic oxidative C-H carbonylation for the synthesis of o-aminobenzoates. Org Lett, 2015, 17: 1397-1400
[12]
44 Luo S, Luo F X, Zhang X S, et al. Synthesis of dibenzopyranones through palladium-catalyzed directed C-H activation/carbonylation of 2-arylphenols. Angew Chem Int Ed, 2013, 52: 10598-10601
[13]
45 Lee T H, Jayakumar J, Cheng C H, et al. One pot synthesis of bioactive benzopyranonesthrough palladium-catalyzed C-H activation and CO insertion into 2-arylphenols. Chem Commun, 2013, 49: 11797-11799
[14]
46 Inamoto K, Kadokawa J, Kondo Y. Ruthenium-catalyzed carbonylative C-H cyclization of 2-arylphenols: A novel synthetic route to 6H-dibenzo[b,d]pyran-6-ones. Org Lett, 2013, 15: 3962-3965
[15]
47 Tlili A, Schranck J, Pospech J, et al. Ruthenium-catalyzed carbonylative C-C coupling in water bydirected C-H bond activation. Angew Chem Int Ed, 2013, 52: 6293-6297
[16]
48 Liang D D, Hu Z W, Peng J L, et al. Synthesis of phenanthridinones via palladium-catalyzed C(sp2)-H aminocarbonylation of unprotected o-arylanilines. Chem Commun, 2013, 49: 173-175
[17]
49 Liang D D, He Y M, Zhu Q. Palladium-catalyzed C(sp2)-H pyridocarbonylation of N-aryl-2-aminopyridines: Dual function of the pyridyl moiety. Org Lett, 2014, 16: 2748-2751
[18]
50 Wang Y, Gevorgyan V. General method for the Synthesis of salicylic acids from phenols through palladium-catalyzed silanol-directed C-H carboxylation. Angew Chem Int Ed, 2015, 54: 2255-2259
52 Yu S C, Chie Y M, Guan Z H, et al. Highly regioselective hydroformylation of styrene and its derivatives catalyzed by Rh complex with tetraphosphorus ligands. Org Lett, 2009, 11: 241-244
[21]
53 Fang X J, Jackstell R, Beller M. Selective palladium-catalyzed aminocarbonylation of olefins with aromatic amines and nitroarenes. Angew Chem Int Ed, 2013, 52: 14089-14093
[22]
54 Liang B, Liu J, Gao Y X, et al. Synthesis of thiourea-oxazolines, a new class of chiral S,N-heterobidentate ligands: Application in Pd-catalyzed asymmetric bis(methoxycarbonylation) of terminal olefins. Organometallics, 2007, 26: 4756-4762
[23]
55 Tsujihara T, Shinohara T, Takenaka K, et al. Enantioselective intramolecular oxidative aminocarbonylation of alkenylureas catalyzed by palladium-spiro bis(isoxazoline) complexes. J Org Chem, 2009, 74: 9274-9279
[24]
56 Chen H J, Cai C B, Liu X H, et al. Highly regioselective palladium-catalysed oxidative allylic C-H carbonylation of alkenes. Chem Commun, 2011, 47: 12224-12226
[25]
57 Zhao M N, Ren Z H, Wang Y Y, et al. Coupling of enamides with alkynes or arynes for synthesis of substituted pyridines and isoquinolines via amide activation. Chem Commun, 2012, 48: 8105-8107
[26]
58 Zhao M N, Ren Z H, Wang Y Y, et al. Copper-promoted oxidative coupling of enamides and alkynes for the synthesis of substituted pyrroles. Chem Eur J, 2014, 20: 1839-1842
[27]
59 Zhao M N, Ren Z H, Wang Y Y, et al. Pd-catalyzed oxidative coupling of enamides and alkynes for synthesis of substituted pyrroles. Org Lett, 2014, 16: 608-611
[28]
60 Chen M, Ren Z H, Wang Y Y, et al. Palladium-catalyzed oxidative carbonylation of the alkenyl C-H bonds of enamides: Synthesis of 1,3-oxazin-6-ones. Angew Chem Int Ed, 2013, 52: 14196-14199
[29]
61 Fang X J, Li H Q, Jackstell R, et al. Palladium-catalyzed alkoxycarbonyation of conjugated dienes under acid-free conditions: Atom-economic synthesis of β,γ-unsaturated esters. Angew Chem Int Ed, 2014, 53: 9030-9034
[30]
62 Fang X J, Li H Q, Jackstell R, et al. Selective palladium-catalyzed aminocarbonylation of 1,3-dienes: Atom-efficient synthesis of β,γ-unsaturated amides. J Am Chem Soc, 2014, 136: 16039-16043
[31]
63 Liu H Z, Yan N, Dyson P J. Acid-free regioselective aminocarbonylation of alkenes. Chem Commun, 2014, 50: 7848-7851
[32]
64 Valencia M A, Alper H. PdI2-catalyzed regioselective cyclocarbonylation of 2-allyl phenols to dihydrocoumarins. Org Lett, 2014, 16: 5827-5829
[33]
65 Yoo E J, Wasa M, Yu J Q. Pd(II)-catalyzed carbonylation of C(sp3)-H bonds: A new entry to 1,4-dicarbonyl compounds. J Am Chem Soc, 2010, 132: 17378-17380
[34]
66 Hasegawa N, Charra V, Inoue S, et al. Highly regioselective carbonylation of unactivated C(sp3)-H bonds by ruthenium carbonyl. J Am Chem Soc, 2011, 133: 8070-8073
[35]
67 Ryu I, Tani A, Fukuyama T, et al. Atom-economical synthesis of unsymmetrical ketones through photocatalyzed C-H activation of alkanes and coupling with CO and electrophilic alkenes. Angew Chem Int Ed, 2011, 50: 1869-1872
[36]
68 Xie P, Xie Y J, Qian B, et al. Palladium-catalyzed oxidative carbonylation of benzylic C-H bonds via nondirected C(sp3)-H activation. J Am Chem Soc, 2012, 134: 9902-9905
[37]
69 Xie P, Xia C G, Huang H M. Palladium-catalyzed oxidative aminocarbonylation: A new entry to amides via C-H activation. Org Lett, 2013, 15: 3370-3373
[38]
70 Kato K, Yamamoto Y, Akita H. Unusual formation of cyclic-orthoesters by Pd(Ⅱ)-mediated cyclization-carbonylation of propargylic acetates. Tetrahedr Lett, 2002, 43: 6587-6590
[39]
71 Gabriele B, Salerno G, Veltri L, et al. Synthesis of 2-ynamides by direct palladium-catalyzed oxidative aminocarbonylation of alk-1-ynes. J Organomet Chem, 2001, 622: 84-88
[40]
72 Gabriele B, Salemo G, Veltri L, et al. A new synthesis of 2,3-dihydrobenzo[1,dioxine and 3,4-dihydro-2H-benzo[1,4] oxazine derivatives by tandem palladium-catalyzed oxidative aminocarbonylation-cyclization of 2-prop-2-ynyloxyphenols and 2-prop-2-ynyloxyani- lines. J Org Chem, 2006, 71: 7895-7898
[41]
73 Zawa Y, Shimizu I, Yamamoto A. Palladium-catalyzed oxidative carbonylation of 1-alkynes into 2-alkynoates with molecular oxygen as oxidant. Bull Chem Soc Jpn, 2004, 77: 2033-2045
[42]
74 Sakurai Y, Sakaguchi S, Ishii Y. Carbonylation of terminal alkynes using a multicatalytic system, Pd(Ⅱ)/chlorohydroquinone/NPMoV, under carbon monoxide and dioxygen. Tetrahedr Lett, 1999, 40: 1701-1704
[43]
75 Kato K, Nouchi H, Ishikura K, et al. A facile access to spiro furanone skeleton based on Pd(Ⅱ)-mediated cyclization-carbonylation of propargylic esters. Tetrahedron, 2006, 62: 2545-2554
[44]
76 Gabriele B, Plastina P, Salerno G, et al. An unprecedented Pd-catalyzed, water-promoted sequential oxidative aminocarbonylation-cyclocarbonylation process leading to 2-oxazolidinones. Org Lett, 2007, 9: 3319-3322
[45]
77 Kusakabe T, Kato K, Takaishi S, et al. Asymmetric cyclization-carbonylation of 2-alkyl-2-propargycycloheane-1,3-diones: Facile access to optically active hydrindanes. Tetrahedron, 2008, 64: 319-327akiuchi F, et al. Ru3M (CO)12-catalyzed coupling of heteroaromatic C-H/CO/olefins. Regioselective acylation of the imidazole ring. J Am Chem Soc, 1996, 118: 493-494
[46]
17 Wu X F, Fang X J, Wu L P, et al. Transition-metal-catalyzed carbonylation reactions of olefins and alkynes: A personal account. Acc Chem Res, 2014, 47: 1041-1053
[47]
18 Hebrard F, Kalck P. Cobalt-catalyzed hydroformylation of alkenes: Generation and recycling of the carbonyl species, and catalytic cycle. Chem Rev, 2009, 109: 4272-4282
[48]
19 Shoenberg A, Bartoletti I, Heck R F. Palladium-catalyzed carboalkoxylation of aryl, benzyl, and vinylic halides. J Org Chem, 1974, 39:3318-3326
[49]
20 Shoenberg A, Heck R F. Palladium-catalyzed amidation of aryl, heterocyclic, and vinylic halides. J Org Chem, 1974, 39: 3327-3331
[50]
21 Wu X F, Neumann H, Beller M. Palladium-catalyzed carbonylative coupling reaction between Ar-X and carbon nucleophiles. Chem Soc Rev, 2011, 40: 4986-5009
[51]
22 Grigg R, Mutton S P. Pd-catalysed carbonylations: Versatile technology for discovery and process chemists. Tetrahedron, 2010, 66:5515-5548
[52]
23 Jintoku T, Taniguchi H, Fujiwara Y, et al. Pd-catalyzed selective one-step synthesis of β-naphthoic acid from naphthalene and CO. Chem Lett, 1987, (6): 1159-1162
[53]
24 Chatani N, Asaumi T, Ikeda T, et al. Carbonylation at sp3 C-H bonds adjacent to a nitrogen atom in alkylamines catalyzed by rhodium complexes. J Am Chem Soc, 2000, 122: 12882-12883
[54]
25 Orito K, Horibata A, Nakamura T, et al. Preparation of benzolactams by Pd(OAc)2-catalyzed direct aromatic carbonylation. J Am Chem Soc, 2004, 126: 14342-14343
[55]
26 López B, Rodriguez A, Santos D, et al. Preparation of benzolactams by Pd(II)-catalyzed carbonylation of N-unprotected arylethylamines. Chem Commun, 2011, 47: 1054-1056
[56]
27 Ohashi S, Sakaguchi S, Ishii Y. Carboxylation of anisole derivatives with CO and O2 catalyzed by Pd(OAc)2 and molybdovanadophos-phates. Chem Commun, 2005, (4): 486-488
[57]
28 Guan Z H, Ren Z H, Spinella S M, et al. Rhodium-catalyzed direct oxidative carbonylation of aromatic C-H bond with CO and alcohols. J Am Chem Soc, 2009, 131: 729-733
[58]
29 Giri R, Yu J Q. Synthesis of 1,2-and 1,3-dicarboxylic acids vir Pd(Ⅱ)-catalyzed carboxylation of aryl and vinyl C-H bonds. J Am Chen Soc, 2008, 130: 14082-14083
[59]
30 Houlden C E, Hutchby M, Bailey C D, et al. Room-temperature palladium-catalyzed C-H activation: Ortho-carbonylation of aniline de-rivatives. Angew Chem Int Ed, 2009, 48: 1830-1833
[60]
31 Inoue S, Shiota H, Fukumoto Y, et al. Ruthenium-catalyzed carbonylation at ortho C-H bonds in aromatic amides leading to phthalimides: C-H bond activation utilizing a bidentate system. J Am Chem Soc, 2009, 131: 6898-6899
[61]
32 Du Y, Hyster T K, Rovis T. Rhodium(III)-catalyzed oxidative carbonylation of benzamides with carbon monoxide. Chem Commun, 2011,47: 12074-12076
[62]
33 Lu Y, Leow D, Wang X S, et al. Hydroxyl-directed C-H carbonylation enabled by mono-N-protected aminoacid ligands: An expedient route to 1-isochromanones. Chem Sci, 2011, 2: 967-971
[63]
34 Lang R, Wu J L, Shi L J, et al. Regioselective Rh-catalyzed direct carbonylation of indoles to synthesize indole-3-carboxylates. Chem Commun, 2011, 47: 12553-12555
[64]
35 Lang R, Shi L J, Li D F, et al. A general method for palladium-catalyzed direct carbonylation of indole with alcohol and phenol. Org Lett,2012, 14: 4130-4133
[65]
36 Zhang H, Liu D, Chen C Y, et al. Palladium-catalyzed regioselective aerobic oxidative C-H/N-H carbonylation of heteroarenes under base-free conditions. Chem Eur J, 2011, 17: 9581-9585
[66]
37 Zhao M N, Ran L F, Chen M, et al. Palladium-catalyzed carbonylation of indoles for synthesis of indol-3-yl aryl ketones. ACS Catal,2015, 5: 1210-1213
[67]
38 Zhang H, Shi R Y, Gan P, et al. Palladium-catalyzed oxidative double C-H functionalization/carbonylation for the synthesis of xanthones. Angew Chem Int Ed, 2012, 51: 5204-5207
[68]
39 Guan Z H, Chen M, Ren Z H. Palladium-catalyzed regioselective carbonylation of C-H bonds of N alkyl anilines for synthesis of isatoic anhydrides. J Am Chem Soc, 2012, 134: 17490-17493
[69]
40 Gao S, Chen M, Du W, et al. Palladium-catalyzed carbonylation of o-iodoanilines for synthesis of isatoic anhydrides. J Org Chem, 2014,79: 4196-4200
[70]
41 Li W, Duan Z L, Zhang X Y, et al. From amilines to isatins: Oxidative palladium-catalyzed double carbonylation of C-H bonds. Angew Chem Int Ed, 2015, 54: 1893-1896
[71]
42 Chen M, Ren Z H, Wang Y Y, et al. Palladium-catalyzed oxidative carbonylation of aromatic C-H bonds of N-alkylanilines with CO and alcohols for the synthesis of o-aminobenzoates. J Org Chem, 2015, 80: 1258-1263
[72]
43 Li W, Duan Z L, Jiang R, et al. Palladium/copper-catalyzed aerobic oxidative C H carbonylation for the synthesis of o-aminobenzoates. Org Lett, 2015, 17: 1397-1400
[73]
44 Luo S, Luo F X, Zhang X S, et al. Synthesis of dibenzopyranones through palladium-catalyzed directed C-H activation/carbonylation of2-arylphenols. Angew Chem Int Ed, 2013, 52: 10598-10601
[74]
45 Lee T H, Jayakumar J, Cheng C H, et al. One pot synthesis of bioactive benzopyranonesthrough palladium-catalyzed C-H activation and CO insertion into 2-arylphenols. Chem Commun, 2013, 49: 11797-11799
[75]
46 Inamoto K, Kadokawa J, Kondo Y. Ruthenium-catalyzed carbonylative C-H cyclization of 2 arylphenols: A novel synthetic route to6H-dibenzo[b,d]pyran-6-ones. Org Lett, 2013, 15: 3962-3965
[76]
47 Tlili A, Schranck J, Pospech J, et al. Ruthenium-catalyzed carbonylative C-C coupling in water bydirected C-H bond activation. Angew Chem Int Ed, 2013, 52: 6293-6297
[77]
48 Liang D D, Hu Z W, Peng J L, et al. Synthesis of phenanthridinones via palladium-catalyzed C(sp2 )-H aminocarbonylation of unprotected o-arylanilines. Chem Commun, 2013, 49: 173-175
[78]
49 Liang D D, He Y M, Zhu Q. Palladium-catalyzed C(sp2 ) H pyridocarbonylation of N aryl-2-aminopyridines: Dual function of the pyridyl moiety. Org Lett, 2014, 16: 2748-2751
[79]
50 Wang Y, Gevorgyan V. General method for the Synthesis of salicylic acids from phenols through palladium-catalyzed silanol-directed C-H carboxylation. Angew Chem Int Ed, 2015, 54: 2255-2259
[80]
51 Franke R, Selent D, B rner A. Applied hydroformylation. Chem Rev, 2012, 112: 5675-5732
[81]
52 Yu S C, Chie Y M, Guan Z H, et al. Highly regioselective hydroformylation of styrene and its deriv atives catalyzed by Rh complex with tetraphosphorus ligands. Org Lett, 2009, 11: 241-244
[82]
53 Fang X J, Jackstell R, Beller M. Selective palladium-catalyzed aminocarbonylation of olefins with aromatic amines and nitroarenes. An-gew Chem Int Ed, 2013, 52: 14089-14093
[83]
54 Liang B, Liu J, Gao Y X, et al. Synthesis of thiourea-oxazolines, a new class of chiral S,N-heterobidentate ligands: Application in Pd-catalyzed asymmetric bis(methoxycarbonylation) of terminal olefins. Organometallics, 2007, 26: 4756-4762
[84]
55 Tsujihara T, Shinohara T, Takenaka K, et al. Enantioselective intramolecular oxidative aminocarbonylation of alkenylureas catalyzed by palladium-spiro bis(isoxazoline) complexes. J Org Chem, 2009, 74: 9274-9279
[85]
56 Chen H J, Cai C B, Liu X H, et al. Highly regioselective palladium-catalysed oxidative allylic C-H carbonylation of alkenes. Chem Commun, 2011, 47: 12224-12226
[86]
57 Zhao M N, Ren Z H, Wang Y Y, et al. Coupling of enamides with alkynes or arynes for synthesis of substituted pyridines and isoquin o-lines via amide activation. Chem Commun, 2012, 48: 8105-8107
[87]
58 Zhao M N, Ren Z H, Wang Y Y, et al. Copper-promoted oxidative coupling of enamides and alkynes for the synthesis of substituted py r-roles. Chem Eur J, 2014, 20: 1839-1842
[88]
59 Zhao M N, Ren Z H, Wang Y Y, et al. Pd-catalyzed oxidative coupling of enamides and alkynes for synthesis of substituted pyrroles. Org Lett, 2014, 16: 608-611
[89]
60 Chen M, Ren Z H, Wang Y Y, et al. Palladium-catalyzed oxidative carbonylation of the alkenyl C-H bonds of enamides: Synthesis of 1,3-oxazin-6-ones. Angew Chem Int Ed, 2013, 52: 14196-14199
[90]
61 Fang X J, Li H Q, Jackstell R, et al. Palladium-catalyzed alkoxycarbonyation of conjugated dienes under acid-free conditions: At-om-economic synthesis of β,γ-unsaturated esters. Angew Chem Int Ed, 2014, 53: 9030-9034
[91]
62 Fang X J, Li H Q, Jackstell R, et al. Selective palladium-catalyzed aminocarbonylation of 1,3-dienes: Atom-efficient synthesis of β,γ-unsaturated amides. J Am Chem Soc, 2014, 136: 16039-16043
[92]
63 Liu H Z, Yan N, Dyson P J. Acid-free regioselective aminocarbonylation of alkenes. Chem Commun, 2014, 50: 7848-7851
[93]
64 Valencia M A, Alper H. PdI2-catalyzed regioselective cyclocarbonylation of 2 allyl phenols to dihydrocoumarins. Org Lett, 2014, 16:5827-5829
[94]
65 Yoo E J, Wasa M, Yu J Q. Pd(II)-catalyzed carbonylation of C(sp3 )-H bonds: A new entry to 1,4-dicarbonyl compounds. J Am Chem Soc,2010, 132: 17378-17380
[95]
66 Hasegawa N, Charra V, Inoue S, et al. Highly regioselective carbonylation of unactivated C(sp3 )-H bonds by ruthenium carbonyl. J Am Chem Soc, 2011, 133: 8070-8073
[96]
67 Ryu I, Tani A, Fukuyama T, et al. Atom-economical synthesis of unsymmetrical ketones through photocatalyzed C-H activation of al-kanes and coupling with CO and electrophilic alkenes. Angew Chem Int Ed, 2011, 50: 1869-1872
[97]
68 Xie P, Xie Y J, Qian B, et al. Palladium-catalyzed oxidative carbonylation of benzylic C H bonds via nondirected C(sp3 ) H activation. J Am Chem Soc, 2012, 134: 9902-9905
[98]
69 Xie P, Xia C G, Huang H M. Palladium-catalyzed oxidative aminocarbonylation: A new entry to amides via C-H activation. Org Lett,2013, 15: 3370-3373
[99]
70 Kato K, Yamamoto Y, Akita H. Unusual formation of cyclic-orthoesters by Pd(Ⅱ)-mediated cyclization-carbonylation of propargylic ac-etates. Tetrahedr Lett, 2002, 43: 6587-6590
[100]
71 Gabriele B, Salerno G, Veltri L, et al. Synthesis of 2-ynamides by direct palladium-catalyzed oxidative aminocarbonylation of alk-1-ynes. J Organomet Chem, 2001, 622: 84-88
[101]
72 Gabriele B, Salemo G, Veltri L, et al. A new synthesis of 2,3-dihydrobenzo[1,dioxine and 3,4-dihydro-2H-benzo[1,4] oxazine deriva-tives by tandem palladium-catalyzed oxidative aminocarbonylation-cyclization of 2-prop-2-ynyloxyphenols and 2-prop-2-ynyloxyani-lines. J Org Chem, 2006, 71: 7895-7898
[102]
73 Zawa Y, Shimizu I, Yamamoto A. Palladium-catalyzed oxidative carbonylation of 1-alkynes into 2-alkynoates with molecular oxygen as oxidant. Bull Chem Soc Jpn, 2004, 77: 2033-2045
[103]
74 Sakurai Y, Sakaguchi S, Ishii Y. Carbonylation of terminal alkynes using a multicatalytic system, Pd( Ⅱ)/chlorohydroquinone/NPMoV, under carbon monoxide and dioxygen. Tetrahedr Lett, 1999, 40: 1701-1704
[104]
75 Kato K, Nouchi H, Ishikura K, et al. A facile access to spiro furanone skeleton based on Pd( Ⅱ)-mediated cyclization-carbonylation of propargylic esters. Tetrahedron, 2006, 62: 2545-1554
[105]
76 Gabriele B, Plastina P, Salerno G, et al. An unprecedented Pd-catalyzed, water-promoted sequential oxidative aminocarbonyla-tion-cyclocarbonylation process leading to 2-oxazolidinones. Org Lett, 2007, 9: 3319-3322
[106]
77 Kusakabe T, Kato K, Takaishi S, et al. Asymmetric cyclization-carbonylation of 2-alkyl-2-propargycycloheane-1,3-diones: Facile access to optically active hydrindanes. Tetrahedron, 2008, 64: 319-327 ?
[107]
1 Engle K M, Mei T S, Wasa M, et al. Weak coordination as a powerful means for developing broadly useful C-H functionalization reactions. Acc Chem Res, 2012, 45: 788-802
[108]
2 Sun C L, Li B J, Shi Z J. Direct C-H transformation via iron catalysis. Chem Rev, 2011, 111: 1293-1314
[109]
3 Colby D A, Bergman R G, Ellman J A. Rhodium-catalyzed C-C bond formation via heteroatom-directed C-H bond activation. Chem Rev, 2010, 110: 624-655
[110]
4 Lyons T W, Sanford M S. Palladium-catalyzed ligand-directed C-H functionalization reactions. Chem Rev, 2010, 110: 1147-1169
[111]
5 Shilov A E, Shul'pin G B. Activation of C-H bonds by metal complexes. Chem Rev, 1997, 97: 2879-2932
[112]
6 Arockiam P B, Bruneau C, Dixneuf P H. Ruthenium(II)-catalyzed C-H bond activation and functionalization. Chem Rev, 2012, 112: 5879-5981
[113]
7 Dupont J, Consorti C S, Spencer J. The potential of palladacycles: More than just precatalysts. Chem Rev, 2005, 105: 2527-2571
[114]
8 Yu W Y, Sit W N, Lai K M, et al. Palladium-catalyzed oxidative ethoxycarbonylation of aromatic C-H bond with diethyl azodicarboxylate. J Am Chem Soc, 2008, 130: 3304-3306
[115]
9 Li H, Cai G X, Shi Z J. LiCl-promoted Pd(II)-catalyzed ortho carbonylation of N,N-dimethylbenzylamines. Dalton Trans, 2010, 39: 10442-10446
[116]
10 Ryabov A D. Cyclopalladated complexes in organic synthesis. Synthesis, 1985, (3): 233-252
[117]
11 Fujiwara Y, Kawauchi T, Taniguchi H. Palladium-promoted one-step carboxylation of aromatic compounds with carbon monoxide. J Chem Soc Chem Commun, 1980, (5): 220-221
[118]
12 Horino H, Inoue N. Ortho vinylation of aromatic amides via cyclopalladation complexe. J Org Chem, 1981, 46: 4416-4422
[119]
13 Fujiwara Y, Kawata I, Kawauchi T, et al. Palladium-promoted one-step synthesis of aromatic acid anhydrides from aromatic compounds with carbon monoxide. J Chem Soc Chem Commun, 1982, (2): 132-133
[120]
14 Fujiwara Y, kawata I, Sugimoto H, et al. Palladium-catalyzed one-step synthesis of aromatic acids from aromatic compounds with carbon monoxide. J Organomet Chem, 1983, 256: 35-36
[121]
15 Fukumoto Y, Chatani N, Murai S. Rhodium-catalyzed ring-opening silylformylation of epoxides leading to β-siloxy aldehydes. J Org Chem, 1993, 58: 4187-4188
[122]
16 Chatani N, Fukuyama T, Kakiuchi F, et al. Ru3(CO)12-catalyzed coupling of heteroaromatic C-H/CO/olefins. Regioselective acylation of the imidazole ring. J Am Chem Soc, 1996, 118: 493-494
[123]
17 Wu X F, Fang X J, Wu L P, et al. Transition-metal-catalyzed carbonylation reactions of olefins and alkynes: A personal account. Acc Chem Res, 2014, 47: 1041-1053
[124]
18 Hebrard F, Kalck P. Cobalt-catalyzed hydroformylation of alkenes: Generation and recycling of the carbonyl species, and catalytic cycle. Chem Rev, 2009, 109: 4272-4282
[125]
19 Shoenberg A, Bartoletti I, Heck R F. Palladium-catalyzed carboalkoxylation of aryl, benzyl, and vinylic halides. J Org Chem, 1974, 39: 3318-3326
[126]
20 Shoenberg A, Heck R F. Palladium-catalyzed amidation of aryl, heterocyclic, and vinylic halides. J Org Chem, 1974, 39: 3327-3331
[127]
21 Wu X F, Neumann H, Beller M. Palladium-catalyzed carbonylative coupling reaction between Ar-X and carbon nucleophiles. Chem Soc Rev, 2011, 40: 4986-5009
[128]
22 Grigg R, Mutton S P. Pd-catalysed carbonylations: Versatile technology for discovery and process chemists. Tetrahedron, 2010, 66: 5515-5548
[129]
23 Jintoku T, Taniguchi H, Fujiwara Y, et al. Pd-catalyzed selective one-step synthesis of β-naphthoic acid from naphthalene and CO. Chem Lett, 1987, (6): 1159-1162
[130]
24 Chatani N, Asaumi T, Ikeda T, et al. Carbonylation at sp3 C-H bonds adjacent to a nitrogen atom in alkylamines catalyzed by rhodium complexes. J Am Chem Soc, 2000, 122: 12882-12883
[131]
25 Orito K, Horibata A, Nakamura T, et al. Preparation of benzolactams by Pd(OAc)2-catalyzed direct aromatic carbonylation. J Am Chem Soc, 2004, 126: 14342-14343
[132]
26 López B, Rodriguez A, Santos D, et al. Preparation of benzolactams by Pd(II)-catalyzed carbonylation of N-unprotected arylethylamines. Chem Commun, 2011, 47: 1054-1056
[133]
27 Ohashi S, Sakaguchi S, Ishii Y. Carboxylation of anisole derivatives with CO and O2 catalyzed by Pd(OAc)2 and molybdovanadophosphates. Chem Commun, 2005, (4): 486-488
[134]
28 Guan Z H, Ren Z H, Spinella S M, et al. Rhodium-catalyzed direct oxidative carbonylation of aromatic C-H bond with CO and alcohols. J Am Chem Soc, 2009, 131: 729-733
[135]
29 Giri R, Yu J Q. Synthesis of 1,2- and 1,3-dicarboxylic acids vir Pd(Ⅱ)-catalyzed carboxylation of aryl and vinyl C-H bonds. J Am Chen Soc, 2008, 130: 14082-14083
[136]
30 Houlden C E, Hutchby M, Bailey C D, et al. Room-temperature palladium-catalyzed C-H activation: Ortho-carbonylation of aniline derivatives. Angew Chem Int Ed, 2009, 48: 1830-1833
[137]
31 Inoue S, Shiota H, Fukumoto Y, et al. Ruthenium-catalyzed carbonylation at ortho C-H bonds in aromatic amides leading to phthalimides: C-H bond activation utilizing a bidentate system. J Am Chem Soc, 2009, 131: 6898-6899
[138]
32 Du Y, Hyster T K, Rovis T. Rhodium(III)-catalyzed oxidative carbonylation of benzamides with carbon monoxide. Chem Commun, 2011, 47: 12074-12076