312
164. Pu F, Liu Z‐W, Zhang L-Y, Fan J, Shi X‐Y (2019) Switchable C−H Alkylation of Aromatic
Acids with Maleimides in Water: Carboxyl as a Diverse Directing Group. ChemCatChem
11: 4116
165. Mitra T, Kundu M, Roy B (2020) Additive-Free, Pd-Catalyzed 3-Amino-1-methyl-1
H-pyridin-2-one-Directed C(sp 2)-H Arylation and Methylation in Water. J Org Chem 85:345
166. Debabarma S, Md Raja S, Modak B, Maji MS (2019) On-Water Cp*Ir(III)-Catalyzed C-H
Functionalization for the Synthesis of Chromones through Annulation of Salicylaldehydes
with Diazo-Ketones. J Org Chem 84:6207
167. Chen J, Spear SK, Huddleston JG, Rogers RD (2005) Polyethylene glycol and solutions of
polyethylene glycol as green reaction media. Green Chem 7:64
168. Colacino E, Martinez J, Lamaty F, Patrikeeva LS, Khemchyan LL, Ananikov VP, Beletskaya
IP (2012) PEG as an alternative reaction medium in metal-mediated transformations. Coord
Chem Rev 256:2893
169. Li J, Tang M, Zang L, Zhang X, Zhang, Z, Ackermann L (2016) Amidines for Versatile
Cobalt(III)-Catalyzed Synthesis of Isoquinolines through C–H Functionalization with Diazo
Compounds. Org Lett 18:2742
170. Wang H, Koeller J, Liu W, Ackermann L (2015) Cobalt(III) −Catalyzed C−H/N−O
Functionalizations: Isohypsic Access to Isoquinolines. Chem Eur J 21:15525
171. Kim SH, Lee HS, Kim SH, Kim JN (2008) Regioselective ortho-hydroxylation of aryl
moiety of 2-arylpyridines using Pd(OAc)2/Oxone in PEG-3400/tert-BuOH. Tetrahedron
Lett 49:5863
172. Ma W, Ackermann L (2015) Cobalt(II)-Catalyzed Oxidative C–H Alkenylations: Regio- and
Site-Selective Access to Isoindolin-1-one. ACS Catal 5:2822
173. Kuai C, Wang L, Li B, Yang Z, Cui X (2017) Cobalt-Catalyzed Selective Synthesis of
Isoquinolines Using Picolinamide as a Traceless Directing Group. Org Lett 19:2102
174. Cai CM, Zhang T, Kumar R, Wyman CE (2014) Integrated furfural production as a renewable
fuel and chemical platform from lignocellulosic biomass. J Chem Technol Biotechnol 89:2
175. Mariscal R, Maireles-Torres P, Ojeda M, Sá daba I, Ló pez Granados M (2016) Furfural: a
renewable and versatile platform molecule for the synthesis of chemicals and fuels. Energy
Environ Sci 9:1144
176. Bozell JJ, Moens L, Elliott DC, Wang Y, Neuenscwander GG, Fitzpatrick SW, Bilski RJ,
Jarnefeld JL (2000) Production of levulinic acid and use as a platform chemical for derived
products. Resour Conserv Recycl 28:227
177. Khoo HH, Wong LL, Tan J, Isoni V, Sharratt P (2015) Synthesis of 2-methyl tetrahydrofuran
from various lignocellulosic feedstocks: Sustainability assessment via LCA. Resour Conserv
Recycl 95:174
178. Warratz S, Burns DJ, Zhu C, Korvorapun K, Rogge T, Scholz J, Jooss C, Gelman D, (2017)
meta-C-H Bromination on Purine Bases by Heterogeneous Ruthenium Catalysis. Angew
Chem Int Ed 56:1557
179. Matsidik R, Luzio A, Hameury S, Komber H, McNeill C R, Caironi M, Sommer M (2016)
Effects of PNDIT2 end groups on aggregation, thin film structure, alignment and electron
transport in field-effect transistors. J Mater Chem C 4:10371
180. Aldrich TJ, Dudnik AS, Eastham ND, Manley EF, Chen LX, Chang RPH, Melkonyan FS,
Facchetti A, Marks TJ (2018) Suppressing Defect Formation Pathways in the Direct C–H
Arylation Polymerization of Photovoltaic Copolymers. Macromolecules 51:9140
181. Monks BM, Fruchey ER, Cook SP (2014) Iron–Catalyzed C(sp2)–H Alkylation of
Carboxamides with Primary Electrophiles. Angew Chem Int Ed 53:11065
182. Fruchey ER, Monks BM, Cook SP (2014) A Unified Strategy for Iron-Catalyzed orthoAlkylation of Carboxamides. J Am Chem Soc 136:13130
183. Alonso DM, Wettstein SG, Dumesic JA (2013) Gamma-valerolactone, a sustainable platform
molecule derived from lignocellulosic biomass. Green Chem 15:584
184. Zhang Z (2016) Synthesis of γ-Valerolactone from Carbohydrates and its
Applications. ChemSusChem 9:156
D. S. Deshmukh et al.
164. Pu F, Liu Z‐W, Zhang L-Y, Fan J, Shi X‐Y (2019) Switchable C−H Alkylation of Aromatic
Acids with Maleimides in Water: Carboxyl as a Diverse Directing Group. ChemCatChem
11: 4116
165. Mitra T, Kundu M, Roy B (2020) Additive-Free, Pd-Catalyzed 3-Amino-1-methyl-1
H-pyridin-2-one-Directed C(sp 2)-H Arylation and Methylation in Water. J Org Chem 85:345
166. Debabarma S, Md Raja S, Modak B, Maji MS (2019) On-Water Cp*Ir(III)-Catalyzed C-H
Functionalization for the Synthesis of Chromones through Annulation of Salicylaldehydes
with Diazo-Ketones. J Org Chem 84:6207
167. Chen J, Spear SK, Huddleston JG, Rogers RD (2005) Polyethylene glycol and solutions of
polyethylene glycol as green reaction media. Green Chem 7:64
168. Colacino E, Martinez J, Lamaty F, Patrikeeva LS, Khemchyan LL, Ananikov VP, Beletskaya
IP (2012) PEG as an alternative reaction medium in metal-mediated transformations. Coord
Chem Rev 256:2893
169. Li J, Tang M, Zang L, Zhang X, Zhang, Z, Ackermann L (2016) Amidines for Versatile
Cobalt(III)-Catalyzed Synthesis of Isoquinolines through C–H Functionalization with Diazo
Compounds. Org Lett 18:2742
170. Wang H, Koeller J, Liu W, Ackermann L (2015) Cobalt(III) −Catalyzed C−H/N−O
Functionalizations: Isohypsic Access to Isoquinolines. Chem Eur J 21:15525
171. Kim SH, Lee HS, Kim SH, Kim JN (2008) Regioselective ortho-hydroxylation of aryl
moiety of 2-arylpyridines using Pd(OAc)2/Oxone in PEG-3400/tert-BuOH. Tetrahedron
Lett 49:5863
172. Ma W, Ackermann L (2015) Cobalt(II)-Catalyzed Oxidative C–H Alkenylations: Regio- and
Site-Selective Access to Isoindolin-1-one. ACS Catal 5:2822
173. Kuai C, Wang L, Li B, Yang Z, Cui X (2017) Cobalt-Catalyzed Selective Synthesis of
Isoquinolines Using Picolinamide as a Traceless Directing Group. Org Lett 19:2102
174. Cai CM, Zhang T, Kumar R, Wyman CE (2014) Integrated furfural production as a renewable
fuel and chemical platform from lignocellulosic biomass. J Chem Technol Biotechnol 89:2
175. Mariscal R, Maireles-Torres P, Ojeda M, Sá daba I, Ló pez Granados M (2016) Furfural: a
renewable and versatile platform molecule for the synthesis of chemicals and fuels. Energy
Environ Sci 9:1144
176. Bozell JJ, Moens L, Elliott DC, Wang Y, Neuenscwander GG, Fitzpatrick SW, Bilski RJ,
Jarnefeld JL (2000) Production of levulinic acid and use as a platform chemical for derived
products. Resour Conserv Recycl 28:227
177. Khoo HH, Wong LL, Tan J, Isoni V, Sharratt P (2015) Synthesis of 2-methyl tetrahydrofuran
from various lignocellulosic feedstocks: Sustainability assessment via LCA. Resour Conserv
Recycl 95:174
178. Warratz S, Burns DJ, Zhu C, Korvorapun K, Rogge T, Scholz J, Jooss C, Gelman D, (2017)
meta-C-H Bromination on Purine Bases by Heterogeneous Ruthenium Catalysis. Angew
Chem Int Ed 56:1557
179. Matsidik R, Luzio A, Hameury S, Komber H, McNeill C R, Caironi M, Sommer M (2016)
Effects of PNDIT2 end groups on aggregation, thin film structure, alignment and electron
transport in field-effect transistors. J Mater Chem C 4:10371
180. Aldrich TJ, Dudnik AS, Eastham ND, Manley EF, Chen LX, Chang RPH, Melkonyan FS,
Facchetti A, Marks TJ (2018) Suppressing Defect Formation Pathways in the Direct C–H
Arylation Polymerization of Photovoltaic Copolymers. Macromolecules 51:9140
181. Monks BM, Fruchey ER, Cook SP (2014) Iron–Catalyzed C(sp2)–H Alkylation of
Carboxamides with Primary Electrophiles. Angew Chem Int Ed 53:11065
182. Fruchey ER, Monks BM, Cook SP (2014) A Unified Strategy for Iron-Catalyzed orthoAlkylation of Carboxamides. J Am Chem Soc 136:13130
183. Alonso DM, Wettstein SG, Dumesic JA (2013) Gamma-valerolactone, a sustainable platform
molecule derived from lignocellulosic biomass. Green Chem 15:584
184. Zhang Z (2016) Synthesis of γ-Valerolactone from Carbohydrates and its
Applications. ChemSusChem 9:156
D. S. Deshmukh et al.
