Topics in Current Chemistry (2018) 376:45
1 3
8. Anastas PT, Warner JC (1998) Green chemistry: theory and practice. Oxford University Press,
Oxford
9. Funken K-H (2001) In Solar Chemistry Using Concentrating Solar Facilities, Sixth International
Summer School “SOLAR ENERGY 2000”. In: Faninger G, Bucher W, Wolfer U (eds) Interuniversitäres Institut für interdisziplinäre Forschung und Fortbildung (IFF), Universität Klagenfurt, pp
118–137
10. Ischay MA, Anzovino ME, Du J, Yoon TP (2008) Efficient visible light photocatalysis of [2 + 2]
enone cycloadditions. J Am Chem Soc 130(39):12886–12887
11. Thekaekara MP, Kruger R, Duncan CH (1969) Solar irradiance measurements from a research
aircraft. Appl Opt 8(8):1713
12. ASTM E490-00a (ed) (2014) Standard solar constant and zero air mass solar spectral irradiance
tables. ASTM International, West Conshohocken. https ://doi.org/10.1520/e0490
13. Li KJ, Feng W, Xu JC, Gao PX, Yang LH, Liang HF, Zhan LS (2012) Why is the solar constant
not a constant? Astrophys J 747(2):135
14. Sipos G, Bihari T, Milánkovich D, Darvas F (2017) Flow chemistry in space–a unique opportunity to perform extraterrestrial research. J Flow Chem 7(3–4):151–156
15. Gueymard C (1993) Critical analysis and performance assessment of clear sky solar irradiance
models using theoretical and measured data. Sol Energy 51(2):121–138
16. Gueymard CA (2001) Parameterized transmittance model for direct beam and circumsolar spectral irradiance. Sol Energy 71(5):325–346
17. Esser P, Pohlmann B, Scharf H-D (1994) The photochemical synthesis of fine chemicals with
sunlight. Angew Chem Int Ed 33(20):2009–2023
18. Cambié D, Zhao F, Hessel V, Debije MG, Noël T (2017) A leaf-inspired luminescent solar
concentrator for energy-efficient continuous-flow photochemistry. Angew Chem Int Ed
56(4):1050–1054
19. Iqbal M (ed) (2012) An introduction to solar radiation. Elsevier, Amsterdam
20. Nauth AM, Lipp A, Lipp B, Opatz T (2017) Sunflow: sunlight drives fast and green photochemical flow reactions in simple microcapillary reactors—application to photoredox and h-atomtransfer chemistry. Eur J Org Chem 2017(15):2099–2103
21. Annual technical report 1998 (1999) Plataforme Solar de Almería and Deutsches Zentrum für
Luft- und Raumfahrt e.V p 190. https ://www.psa.es/es/techr ep/1998/repor t98.pdf
22. Cermenati L, Albini A, Cermenati L, Richter C, Albini A (1998) Solar light induced carbon–carbon bond formation via TiO 2 photocatalysis. Chem Commun (Camb UK) 7:805–806
23. Dondi D, Protti S, Albini A, Carpio SM, Fagnoni M (2009) Synthesis of γ-lactols, γ-lactones
and 1,4-monoprotected succinaldehydes under moderately concentrated sunlight. Green Chem
11(10):1653
24. Covell C, Gilbert A, Richter C (1998) Sunlight-induced regio- and stereo-specific (2π + 2π)
cycloaddition of arylethenes to 2-substituted-1,4-naphthoquinones. J Chem Res 6:316–317
25. Egan O J (1999) Quinolines from oximes. Ph.D., Dublin City University
26. Caronna T, Catellani M, Luzzati S, Malpezzi L, Meille SV, Mele A, Richter C, Sinisi R (2001)
Molecular crystal architecture and optical properties of a thiohelicenes series containing 5, 7, 9,
and 11 rings prepared via photochemical synthesis. Chem Mater 13(11):3906–3914. https ://doi.
org/10.1021/cm010 093z
27. Chen T-G, Barton LM, Lin Y, Tsien J, Kossler D, Bastida I, Asai S, Bi C, Chen JS, Shan M,
Fang H, Fang FG, Choi H-W, Hawkins L, Qin T, Baran PS (2018) Building C(sp
3 )-rich complexity by combining cycloaddition and C–C cross-coupling reactions. Nature 560:350–354. https ://
doi.org/10.1038/s4158 6-018-0391-9
28. Jung C, Funken K-H, Ortner J (2005) PROPHIS: parabolic trough-facility for organic photochemical syntheses in sunlight. Photochem Photobiol Sci 4:(5)
29. Schiel C, Oelgemöller M, Ortner J, Mattay J (2001) Green Chem 3(5):224–228
30. Wagler P, Heller B, Ortner JR, Funken K-H, Oehme G (1996) Solare photokatalytische cocyclisierung von acetylen und nitrilen in Wasser. Chemie Ingenieur Technik 68(7):823–826
31. Heller B (1999) Pyridinsynthese: photokatalysiert und in Wasser. Nachr Chem Tech Lab
47(1):9–14
32. Oelgemöller M, Jung C, Ortner J, Mattay J, Zimmermann E (2005) Green photochemistry: solar
photooxygenations with medium concentrated sunlight. Green Chem 7(1):35–38
33. Huelsduenker A, Ritter A, In Demuth M (1992) Chemical use of photonic solar radiation— photochemical syntheses (I). Springer, Berlin, pp 443–450
26
Reprinted from the journal
1 3
8. Anastas PT, Warner JC (1998) Green chemistry: theory and practice. Oxford University Press,
Oxford
9. Funken K-H (2001) In Solar Chemistry Using Concentrating Solar Facilities, Sixth International
Summer School “SOLAR ENERGY 2000”. In: Faninger G, Bucher W, Wolfer U (eds) Interuniversitäres Institut für interdisziplinäre Forschung und Fortbildung (IFF), Universität Klagenfurt, pp
118–137
10. Ischay MA, Anzovino ME, Du J, Yoon TP (2008) Efficient visible light photocatalysis of [2 + 2]
enone cycloadditions. J Am Chem Soc 130(39):12886–12887
11. Thekaekara MP, Kruger R, Duncan CH (1969) Solar irradiance measurements from a research
aircraft. Appl Opt 8(8):1713
12. ASTM E490-00a (ed) (2014) Standard solar constant and zero air mass solar spectral irradiance
tables. ASTM International, West Conshohocken. https ://doi.org/10.1520/e0490
13. Li KJ, Feng W, Xu JC, Gao PX, Yang LH, Liang HF, Zhan LS (2012) Why is the solar constant
not a constant? Astrophys J 747(2):135
14. Sipos G, Bihari T, Milánkovich D, Darvas F (2017) Flow chemistry in space–a unique opportunity to perform extraterrestrial research. J Flow Chem 7(3–4):151–156
15. Gueymard C (1993) Critical analysis and performance assessment of clear sky solar irradiance
models using theoretical and measured data. Sol Energy 51(2):121–138
16. Gueymard CA (2001) Parameterized transmittance model for direct beam and circumsolar spectral irradiance. Sol Energy 71(5):325–346
17. Esser P, Pohlmann B, Scharf H-D (1994) The photochemical synthesis of fine chemicals with
sunlight. Angew Chem Int Ed 33(20):2009–2023
18. Cambié D, Zhao F, Hessel V, Debije MG, Noël T (2017) A leaf-inspired luminescent solar
concentrator for energy-efficient continuous-flow photochemistry. Angew Chem Int Ed
56(4):1050–1054
19. Iqbal M (ed) (2012) An introduction to solar radiation. Elsevier, Amsterdam
20. Nauth AM, Lipp A, Lipp B, Opatz T (2017) Sunflow: sunlight drives fast and green photochemical flow reactions in simple microcapillary reactors—application to photoredox and h-atomtransfer chemistry. Eur J Org Chem 2017(15):2099–2103
21. Annual technical report 1998 (1999) Plataforme Solar de Almería and Deutsches Zentrum für
Luft- und Raumfahrt e.V p 190. https ://www.psa.es/es/techr ep/1998/repor t98.pdf
22. Cermenati L, Albini A, Cermenati L, Richter C, Albini A (1998) Solar light induced carbon–carbon bond formation via TiO 2 photocatalysis. Chem Commun (Camb UK) 7:805–806
23. Dondi D, Protti S, Albini A, Carpio SM, Fagnoni M (2009) Synthesis of γ-lactols, γ-lactones
and 1,4-monoprotected succinaldehydes under moderately concentrated sunlight. Green Chem
11(10):1653
24. Covell C, Gilbert A, Richter C (1998) Sunlight-induced regio- and stereo-specific (2π + 2π)
cycloaddition of arylethenes to 2-substituted-1,4-naphthoquinones. J Chem Res 6:316–317
25. Egan O J (1999) Quinolines from oximes. Ph.D., Dublin City University
26. Caronna T, Catellani M, Luzzati S, Malpezzi L, Meille SV, Mele A, Richter C, Sinisi R (2001)
Molecular crystal architecture and optical properties of a thiohelicenes series containing 5, 7, 9,
and 11 rings prepared via photochemical synthesis. Chem Mater 13(11):3906–3914. https ://doi.
org/10.1021/cm010 093z
27. Chen T-G, Barton LM, Lin Y, Tsien J, Kossler D, Bastida I, Asai S, Bi C, Chen JS, Shan M,
Fang H, Fang FG, Choi H-W, Hawkins L, Qin T, Baran PS (2018) Building C(sp
3 )-rich complexity by combining cycloaddition and C–C cross-coupling reactions. Nature 560:350–354. https ://
doi.org/10.1038/s4158 6-018-0391-9
28. Jung C, Funken K-H, Ortner J (2005) PROPHIS: parabolic trough-facility for organic photochemical syntheses in sunlight. Photochem Photobiol Sci 4:(5)
29. Schiel C, Oelgemöller M, Ortner J, Mattay J (2001) Green Chem 3(5):224–228
30. Wagler P, Heller B, Ortner JR, Funken K-H, Oehme G (1996) Solare photokatalytische cocyclisierung von acetylen und nitrilen in Wasser. Chemie Ingenieur Technik 68(7):823–826
31. Heller B (1999) Pyridinsynthese: photokatalysiert und in Wasser. Nachr Chem Tech Lab
47(1):9–14
32. Oelgemöller M, Jung C, Ortner J, Mattay J, Zimmermann E (2005) Green photochemistry: solar
photooxygenations with medium concentrated sunlight. Green Chem 7(1):35–38
33. Huelsduenker A, Ritter A, In Demuth M (1992) Chemical use of photonic solar radiation— photochemical syntheses (I). Springer, Berlin, pp 443–450
26
Reprinted from the journal
