1 3
Topics in Current Chemistry (2019) 377:2
109. Sambiagio C, Sterckx H, Maes BUW (2017) Electrosynthesis: a new frontier in aerobic oxidation?
ACS Cent Sci 3:686–688
110. Sheldon RA (2005) Green solvents for sustainable organic synthesis: state of the art. Green Chem
7:267–268
111. Henderson RK, Jiménez‑González C, Constable DJC, Alston SR, Inglis GGA, Fisher G, Sherwood
J, Binks SP, Curzons AD (2011) Expanding GSK’s solvent selection guide—embedding sustain‑
ability into solvent selection starting at medicinal chemistry. Green Chem 13:854
112. Alder CM, Hayler JD, Henderson RK, Redman AM, Shukla L, Shuster E, Sneddon HF (2016)
Updating and further expanding GSK’s solvent sustainability guide. Green Chem 18:3879–3890
113. Diorazio LJ, Hose DRJ, Adlington NK (2016) Toward a more holistic framework for solvent selec‑
tion. Org Process Res Dev 20:760–773
114. Byrne FP, Jin S, Paggiola G, Petchey THM, Clark JH, Farmer TJ, Hunt AJ, Mcelroy CR, Sherwood
J (2016) Tools and techniques for solvent selection: green solvent selection guides. Sustainable
chemical processes. Springer, Berlin, pp 1–24
115. Horváth IT (1998) Fluorous biphase chemistry. Acc Chem Res 31:641–650
116. Gunasekaran N (2015) aerobic oxidation catalysis with air or molecular oxygen and ionic liquids.
Adv Synth Catal 357:1990–2010
117. Rayner CM (2007) The potential of carbon dioxide in synthetic organic chemistry. Org Process Res
Dev 11:121–132
118. Leitner W (2002) Supercritical carbon dioxide as a green reaction medium for catalysis. Acc Chem
Res 35:746–756
119. Medina‑Gonzalez Y, Camy S, Condoret J‑S (2014) ScCO 2 /green solvents: biphasic promising sys‑
tems for cleaner chemicals manufacturing. ACS Sustain Chem Eng 2:2623–2636
120. Hintermair U, Roosen C, Kaever M, Kronenberg H, Thelen R, Aey S, Leitner W, Greiner L (2011)
A versatile lab to pilot scale continuous reaction system for supercritical fluid processing. Org Pro‑
cess Res Dev 15:1275–1280
121. Hou Z, Theyssen N, Brinkmann A, Leitner W (2005) Biphasic aerobic oxidation of alcohols cata‑
lyzed by poly(ethylene glycol)‑stabilized palladium nanoparticles in supercritical carbon dioxide.
Angew Chem Int Ed 44:1346–1349
122. Chapman AO, Akien GR, Arrowsmith NJ, Licence P, Poliakoff M (2010) Continuous heterogene‑
ous catalytic oxidation of primary and secondary alcohols in scCO 2 . Green Chem 12:310–315
123. Han X, Bourne RA, Poliakoff M, George MW (2011) Immobilised photosensitisers for continuous
flow reactions of singlet oxygen in supercritical carbon dioxide. Chem Sci 2:1059–1067
124. Amara Z, Bellamy JFB, Horvath R, Miller SJ, Beeby A, Burgard A, Rossen K, Poliakoff M,
George MW (2015) Applying green chemistry to the photochemical route to artemisinin. Nat
Chem 7:489–495
125. Wu L, Lee DS, Boufroura H, Poliakoff M (2018) Photooxidation of fulvenes in a continuous flow
photoreactor using carbon dioxide as a solvent. ChemPhotoChem 2:580–585
126. Osako T, Torii K, Uozumi Y (2015) Aerobic flow oxidation of alcohols in water catalyzed by plati‑
num nanoparticles dispersed in an amphiphilic polymer. RSC Adv 5:2647–2654
127. Garcia‑Verdugo E, Venardou E, Thomas WB, Whiston K, Partenheimer W, Hamley PA, Poliakoff
M (2004) Is it possible to achieve highly selective oxidations in supercritical water? Aerobic oxida‑
tion of methylaromatic compounds. Adv Synth Catal 346:307–316
128. Pérez E, Fraga‑Dubreuil J, García‑Verdugo E, Hamley PA, Thomas WB, Housley D, Partenheimer
W, Poliakoff M (2011) Selective aerobic oxidation of para‑xylene in sub‑ and supercritical water.
Part 1. Comparison with ortho‑xylene and the role of the catalyst. Green Chem 13:2389
129. Pérez E, Fraga‑Dubreuil J, García‑Verdugo E, Hamley PA, Thomas ML, Yan C, Thomas WB, Hou‑
sley D, Partenheimer W, Poliakoff M (2011) Selective aerobic oxidation of para‑xylene in sub‑ and
supercritical water. Part 2. The discovery of better catalysts. Green Chem 13:2397
130. Liguori L, Bjørsvik H‑R (2011) Multijet oscillating disc millireactor: a novel approach for continu‑
ous flow organic synthesis. Org Process Res Dev 15:997–1009
131. Spaccini R, Liguori L, Punta C, Bjørsvik HR (2012) Organocatalyzed epoxidation of alkenes in
continuous flow using a multi‑jet oscillating disk reactor. ChemSusChem 5:261–265
132. Ioannou GI, Montagnon T, Kalaitzakis D, Pergantis SA, Vassilikogiannakis G (2017) A novel
nebulizer‑based continuous flow reactor: introducing the use of pneumatically generated aerosols
for highly productive photooxidations. ChemPhotoChem 1:173–177
109
Reprinted from the journal
Topics in Current Chemistry (2019) 377:2
109. Sambiagio C, Sterckx H, Maes BUW (2017) Electrosynthesis: a new frontier in aerobic oxidation?
ACS Cent Sci 3:686–688
110. Sheldon RA (2005) Green solvents for sustainable organic synthesis: state of the art. Green Chem
7:267–268
111. Henderson RK, Jiménez‑González C, Constable DJC, Alston SR, Inglis GGA, Fisher G, Sherwood
J, Binks SP, Curzons AD (2011) Expanding GSK’s solvent selection guide—embedding sustain‑
ability into solvent selection starting at medicinal chemistry. Green Chem 13:854
112. Alder CM, Hayler JD, Henderson RK, Redman AM, Shukla L, Shuster E, Sneddon HF (2016)
Updating and further expanding GSK’s solvent sustainability guide. Green Chem 18:3879–3890
113. Diorazio LJ, Hose DRJ, Adlington NK (2016) Toward a more holistic framework for solvent selec‑
tion. Org Process Res Dev 20:760–773
114. Byrne FP, Jin S, Paggiola G, Petchey THM, Clark JH, Farmer TJ, Hunt AJ, Mcelroy CR, Sherwood
J (2016) Tools and techniques for solvent selection: green solvent selection guides. Sustainable
chemical processes. Springer, Berlin, pp 1–24
115. Horváth IT (1998) Fluorous biphase chemistry. Acc Chem Res 31:641–650
116. Gunasekaran N (2015) aerobic oxidation catalysis with air or molecular oxygen and ionic liquids.
Adv Synth Catal 357:1990–2010
117. Rayner CM (2007) The potential of carbon dioxide in synthetic organic chemistry. Org Process Res
Dev 11:121–132
118. Leitner W (2002) Supercritical carbon dioxide as a green reaction medium for catalysis. Acc Chem
Res 35:746–756
119. Medina‑Gonzalez Y, Camy S, Condoret J‑S (2014) ScCO 2 /green solvents: biphasic promising sys‑
tems for cleaner chemicals manufacturing. ACS Sustain Chem Eng 2:2623–2636
120. Hintermair U, Roosen C, Kaever M, Kronenberg H, Thelen R, Aey S, Leitner W, Greiner L (2011)
A versatile lab to pilot scale continuous reaction system for supercritical fluid processing. Org Pro‑
cess Res Dev 15:1275–1280
121. Hou Z, Theyssen N, Brinkmann A, Leitner W (2005) Biphasic aerobic oxidation of alcohols cata‑
lyzed by poly(ethylene glycol)‑stabilized palladium nanoparticles in supercritical carbon dioxide.
Angew Chem Int Ed 44:1346–1349
122. Chapman AO, Akien GR, Arrowsmith NJ, Licence P, Poliakoff M (2010) Continuous heterogene‑
ous catalytic oxidation of primary and secondary alcohols in scCO 2 . Green Chem 12:310–315
123. Han X, Bourne RA, Poliakoff M, George MW (2011) Immobilised photosensitisers for continuous
flow reactions of singlet oxygen in supercritical carbon dioxide. Chem Sci 2:1059–1067
124. Amara Z, Bellamy JFB, Horvath R, Miller SJ, Beeby A, Burgard A, Rossen K, Poliakoff M,
George MW (2015) Applying green chemistry to the photochemical route to artemisinin. Nat
Chem 7:489–495
125. Wu L, Lee DS, Boufroura H, Poliakoff M (2018) Photooxidation of fulvenes in a continuous flow
photoreactor using carbon dioxide as a solvent. ChemPhotoChem 2:580–585
126. Osako T, Torii K, Uozumi Y (2015) Aerobic flow oxidation of alcohols in water catalyzed by plati‑
num nanoparticles dispersed in an amphiphilic polymer. RSC Adv 5:2647–2654
127. Garcia‑Verdugo E, Venardou E, Thomas WB, Whiston K, Partenheimer W, Hamley PA, Poliakoff
M (2004) Is it possible to achieve highly selective oxidations in supercritical water? Aerobic oxida‑
tion of methylaromatic compounds. Adv Synth Catal 346:307–316
128. Pérez E, Fraga‑Dubreuil J, García‑Verdugo E, Hamley PA, Thomas WB, Housley D, Partenheimer
W, Poliakoff M (2011) Selective aerobic oxidation of para‑xylene in sub‑ and supercritical water.
Part 1. Comparison with ortho‑xylene and the role of the catalyst. Green Chem 13:2389
129. Pérez E, Fraga‑Dubreuil J, García‑Verdugo E, Hamley PA, Thomas ML, Yan C, Thomas WB, Hou‑
sley D, Partenheimer W, Poliakoff M (2011) Selective aerobic oxidation of para‑xylene in sub‑ and
supercritical water. Part 2. The discovery of better catalysts. Green Chem 13:2397
130. Liguori L, Bjørsvik H‑R (2011) Multijet oscillating disc millireactor: a novel approach for continu‑
ous flow organic synthesis. Org Process Res Dev 15:997–1009
131. Spaccini R, Liguori L, Punta C, Bjørsvik HR (2012) Organocatalyzed epoxidation of alkenes in
continuous flow using a multi‑jet oscillating disk reactor. ChemSusChem 5:261–265
132. Ioannou GI, Montagnon T, Kalaitzakis D, Pergantis SA, Vassilikogiannakis G (2017) A novel
nebulizer‑based continuous flow reactor: introducing the use of pneumatically generated aerosols
for highly productive photooxidations. ChemPhotoChem 1:173–177
109
Reprinted from the journal
