Topics in Current Chemistry (2020) 378:2
1 3
References
1. Colmenares QJC (2013) Ultrasound and photochemical procedures for nanocatalysts preparation:
application in photocatalytic biomass valorization. J Nanosci Nanotechnol 13:4787–4798. https ://
doi.org/10.1166/jnn.2013.7567
2. Chatel G, Valange S, Behling R, Colmenares JC (2017) A combined approach using sonochemistry and photocatalysis: how to apply sonophotocatalysis for biomass conversion? Chem Cat Chem
9:2615–2621. https ://doi.org/10.1002/cctc.20170 0297
3. Rightmire NR, Hanusa TP (2016) Advances in organometallic synthesis with mechanochemical
methods. Dalt Trans 45:2352–2362. https ://doi.org/10.1039/c5dt0 3866a
4. Suslick KS (1995) Applications of ultrasound to materials chemistry. MRS Bull 20:29–34. https ://
doi.org/10.1557/S0883 76940 00446 4X
5. Cerdan K, Ouyang W, Colmenares JC et al (2018) Facile mechanochemical modification of
g-C3N 4 for selective photo-oxidation of benzyl alcohol. Chem Eng Sci. https ://doi.org/10.1016/j.
ces.2018.04.001
6. Colmenares JC, Lisowski P, Łomot D et al (2015) Sonophotodeposition of bimetallic photocatalysts Pd-Au/TiO 2 : application to selective oxidation of methanol to methyl formate. Chemsuschem
8:1676–1685. https ://doi.org/10.1002/cssc.20140 3125
7. James SL, Adams CJ, Bolm C et al (2012) Mechanochemistry: opportunities for new and cleaner
synthesis. Chem Soc Rev 41:413–447. https ://doi.org/10.1039/C1CS1 5171A
8. Magdziarz A, Colmenares JC, Chernyayeva O et al (2016) Iron-containing titania photocatalyst
prepared by the sonophotodeposition method for the oxidation of benzyl alcohol. ChemCatChem
8:536–539. https ://doi.org/10.1002/cctc.20150 1250
9. Kiss AA, Geertman R, Wierschem M et al (2018) Ultrasound-assisted emerging technologies for
chemical processes. J Chem Technol Biotechnol 93:1219–1227. https ://doi.org/10.1002/jctb.5555
10. Bhangu SK, Ashokkumar M (2017) Theory of sonochemistry. pp 1–28
11. Thornycroft JI (2009) Torpedo boat destroyers. J Am Soc Nav Eng 7:711–736. https ://doi.
org/10.1111/j.1559-3584.1895.tb043 89.x
12. Neppiras EA (1980) Acoustic cavitation. Phys Rep 61:159–251. https ://doi.org/10.1016/03701573(80)90115 -5
13. Makino K, Mossoba MM, Riesz P (1982) Chemical effects of ultrasound on aqueous solutions.
Evidence for hydroxyl and hydrogen free radicals (.cntdot. OH and .cntdot. H) by spin trapping. J
Am Chem Soc 104:3537–3539. https ://doi.org/10.1021/ja003 76a06 4
14. Makino K, Mossoba MM, Riesz P (1983) Chemical effects of ultrasound on aqueous solutions.
Formation of hydroxyl radicals and hydrogen atoms. J Phys Chem 87:1369–1377. https ://doi.
org/10.1021/j1002 31a02 0
15. Behling R, Chatel G, Valange S (2017) Sonochemical oxidation of vanillyl alcohol to vanillin in
the presence of a cobalt oxide catalyst under mild conditions. Ultrason Sonochem 36:27–35. https
://doi.org/10.1016/j.ultso nch.2016.11.015
16. Al-Juboori RA, Yusaf T, Bowtell L, Aravinthan V (2015) Energy characterisation of ultrasonic
systems for industrial processes. Ultrasonics 57:18–30. https ://doi.org/10.1016/j.ultra s.2014.10.003
17. Toma M, Fukutomi S, Asakura Y, Koda S (2011) A calorimetric study of energy conversion efficiency of a sonochemical reactor at 500 kHz for organic solvents. Ultrason Sonochem 18:197–208.
https ://doi.org/10.1016/j.ultso nch.2010.05.005
18. Wood RJ, Lee J, Bussemaker MJ (2017) A parametric review of sonochemistry: control and augmentation of sonochemical activity in aqueous solutions. Ultrason Sonochem 38:351–370. https ://
doi.org/10.1016/j.ultso nch.2017.03.030
19. Suslick KS (1990) Sonochemistry. Science (80-) 247:1439–1445. https ://doi.org/10.1126/scien
ce.247.4949.1439
20. Flint EB, Suslick KS (1991) The temperature of cavitation. Science 253:1397–1399. https ://doi.
org/10.1126/scien ce.253.5026.1397
21. Suslick KS, Hammerton DA, Cline RE (1986) The sonochemical hot spot. J Am Chem Soc
108:5641–5642. https ://doi.org/10.1021/ja002 78a05 5
22. Pokhrel N, Vabbina PK, Pala N (2016) Sonochemistry: science and engineering. Ultrason Sonochem 29:104–128. https ://doi.org/10.1016/j.ultso nch.2015.07.023
23. Cravotto G, Cintas P (2012) Harnessing mechanochemical effects with ultrasound-induced reactions. Chem Sci 3:295–307. https ://doi.org/10.1039/c1sc0 0740h
64
Reprinted from the journal
1 3
References
1. Colmenares QJC (2013) Ultrasound and photochemical procedures for nanocatalysts preparation:
application in photocatalytic biomass valorization. J Nanosci Nanotechnol 13:4787–4798. https ://
doi.org/10.1166/jnn.2013.7567
2. Chatel G, Valange S, Behling R, Colmenares JC (2017) A combined approach using sonochemistry and photocatalysis: how to apply sonophotocatalysis for biomass conversion? Chem Cat Chem
9:2615–2621. https ://doi.org/10.1002/cctc.20170 0297
3. Rightmire NR, Hanusa TP (2016) Advances in organometallic synthesis with mechanochemical
methods. Dalt Trans 45:2352–2362. https ://doi.org/10.1039/c5dt0 3866a
4. Suslick KS (1995) Applications of ultrasound to materials chemistry. MRS Bull 20:29–34. https ://
doi.org/10.1557/S0883 76940 00446 4X
5. Cerdan K, Ouyang W, Colmenares JC et al (2018) Facile mechanochemical modification of
g-C3N 4 for selective photo-oxidation of benzyl alcohol. Chem Eng Sci. https ://doi.org/10.1016/j.
ces.2018.04.001
6. Colmenares JC, Lisowski P, Łomot D et al (2015) Sonophotodeposition of bimetallic photocatalysts Pd-Au/TiO 2 : application to selective oxidation of methanol to methyl formate. Chemsuschem
8:1676–1685. https ://doi.org/10.1002/cssc.20140 3125
7. James SL, Adams CJ, Bolm C et al (2012) Mechanochemistry: opportunities for new and cleaner
synthesis. Chem Soc Rev 41:413–447. https ://doi.org/10.1039/C1CS1 5171A
8. Magdziarz A, Colmenares JC, Chernyayeva O et al (2016) Iron-containing titania photocatalyst
prepared by the sonophotodeposition method for the oxidation of benzyl alcohol. ChemCatChem
8:536–539. https ://doi.org/10.1002/cctc.20150 1250
9. Kiss AA, Geertman R, Wierschem M et al (2018) Ultrasound-assisted emerging technologies for
chemical processes. J Chem Technol Biotechnol 93:1219–1227. https ://doi.org/10.1002/jctb.5555
10. Bhangu SK, Ashokkumar M (2017) Theory of sonochemistry. pp 1–28
11. Thornycroft JI (2009) Torpedo boat destroyers. J Am Soc Nav Eng 7:711–736. https ://doi.
org/10.1111/j.1559-3584.1895.tb043 89.x
12. Neppiras EA (1980) Acoustic cavitation. Phys Rep 61:159–251. https ://doi.org/10.1016/03701573(80)90115 -5
13. Makino K, Mossoba MM, Riesz P (1982) Chemical effects of ultrasound on aqueous solutions.
Evidence for hydroxyl and hydrogen free radicals (.cntdot. OH and .cntdot. H) by spin trapping. J
Am Chem Soc 104:3537–3539. https ://doi.org/10.1021/ja003 76a06 4
14. Makino K, Mossoba MM, Riesz P (1983) Chemical effects of ultrasound on aqueous solutions.
Formation of hydroxyl radicals and hydrogen atoms. J Phys Chem 87:1369–1377. https ://doi.
org/10.1021/j1002 31a02 0
15. Behling R, Chatel G, Valange S (2017) Sonochemical oxidation of vanillyl alcohol to vanillin in
the presence of a cobalt oxide catalyst under mild conditions. Ultrason Sonochem 36:27–35. https
://doi.org/10.1016/j.ultso nch.2016.11.015
16. Al-Juboori RA, Yusaf T, Bowtell L, Aravinthan V (2015) Energy characterisation of ultrasonic
systems for industrial processes. Ultrasonics 57:18–30. https ://doi.org/10.1016/j.ultra s.2014.10.003
17. Toma M, Fukutomi S, Asakura Y, Koda S (2011) A calorimetric study of energy conversion efficiency of a sonochemical reactor at 500 kHz for organic solvents. Ultrason Sonochem 18:197–208.
https ://doi.org/10.1016/j.ultso nch.2010.05.005
18. Wood RJ, Lee J, Bussemaker MJ (2017) A parametric review of sonochemistry: control and augmentation of sonochemical activity in aqueous solutions. Ultrason Sonochem 38:351–370. https ://
doi.org/10.1016/j.ultso nch.2017.03.030
19. Suslick KS (1990) Sonochemistry. Science (80-) 247:1439–1445. https ://doi.org/10.1126/scien
ce.247.4949.1439
20. Flint EB, Suslick KS (1991) The temperature of cavitation. Science 253:1397–1399. https ://doi.
org/10.1126/scien ce.253.5026.1397
21. Suslick KS, Hammerton DA, Cline RE (1986) The sonochemical hot spot. J Am Chem Soc
108:5641–5642. https ://doi.org/10.1021/ja002 78a05 5
22. Pokhrel N, Vabbina PK, Pala N (2016) Sonochemistry: science and engineering. Ultrason Sonochem 29:104–128. https ://doi.org/10.1016/j.ultso nch.2015.07.023
23. Cravotto G, Cintas P (2012) Harnessing mechanochemical effects with ultrasound-induced reactions. Chem Sci 3:295–307. https ://doi.org/10.1039/c1sc0 0740h
64
Reprinted from the journal
