17. Siejak A, Wróbel D, Olejarz B, Ion RM (2009) Spectroscopic and photoelectric
investigations of resonance effects in selected sulfonated phthalocyanines. Dyes Pigm
83:281–290
18. Karimi AR, Khodadadi A (2012) Synthesis and solution properties of new metal-free and
metallo-phthalocyanines containing four bis(indol-3-yl)methane groups. Tetrahedron Lett
53:5223–5226
19. Bursa B, Wróbel D, Biadasz A, Kędzierski K, Lewandowska K, Graja A, Szybowicz M,
Durmuş M (2014) Indium-chlorine and gallium-chlorine tetrasubstituted phthalocyanines in
a bulk system, Langmuir monolayers and Langmuir-Blodgett nanolayers—spectroscopic
investigations. Spectrochim Acta A 128:489–496
20. Bursa B, Biadasz A, Kędzierski K, Wróbel D (2014) Quantum dot with zinc and copper
substituted phthalocyanines. 1. Energy transfer in solution and in-situ light absorption in
Langmuir monolayers. J Lumin 145:779–786
21. Kędzierski K, Barszcz B, Kotkowiak M, Bursa B, Goc J, Dinçer H, Wróbel D (2016)
Photophysics of an unsymmetrical Zn(II) phthalocyanine substituted with terminal alkynyl
group. J Lumin 180:132–139
22. Meyer T, Ogermann D, Pankrath A, Kleinermanns K, Müller TJ (2012) Phenothiazinyl
rhodanylidene merocyanines for dye-sensitized solar cells. J Org Chem 77:3704–3715
23. Wróbel D, Boguta A, Ion RM (2001) Mixtures of synthetic organic dyes in a
photoelectrochemical cell. J Photochem Photobiol 138:7–22
24. Chamberlain GA, Cooney PJ, Dennison S (1981) Photovoltaic properties of merocyanine
solid-state photocells. Nature 289:45–47
25. Steinmann V, Kronenberg NM, Lenze MR, Graf SM, Hertel D, Meerholz K, Bürckstümmer
H, Tulyakova EV, Würthner F (2011) Simple, highly efficient vacuum-processed bulk
heterojunction solar cells based on merocyanine dyes. Adv Energy Mater 1(5):888–893
26. Abdou EM, Hafez HS, Bakir E, Abdel-Mottaleb MS (2013) Photostability of low cost
dye-sensitized solar cells based on natural and synthetic dyes. Spectrochim Acta A 115:
202–207
27. Arjona-Esteban A, Lenze MR, Meerholz K, Würthner F (2017) Donor-acceptor dyes for
organic photovoltaics. In: Leo K (ed) Elementary processes in organic photovoltaics.
Advances in polymer science 272. Springer, Berlin
28. Wróbel D, Łukasiewicz J, Manikowski H (2003) Fluorescence quenching and ESR
spectroscopy of metallic porphyrins in the presence of an electron acceptor. Dyes Pigm
58:7–18
29. Pace NA, Reid OG, Rumbles G (2018) Delocalization drives free charge generation in
conjugated polymer films. ACS Energy Lett 3:735–741
30. Li L, Kang S-W, Harden J, Sun Q, Zhou X, Dai L, Jakli A, Kumar S, Li Q (2008)
Nature-inspired light-harvesting liquid crystalline porphyrins for organic photovoltaics. Liq
Cryst 35:233–239
31. Imahori H, Hayashi S, Hayashi H, Oguro A, Eu S, Umeyama T, Matano Y (2009) Effects of
porphyrin substituents and adsorption conditions on photovoltaic properties of
porphyrin-sensitized TiO 2 cells. J Phys Chem C 113:18406–18413
32. Idowu M, Chen J-Y, Nyokong T (2008) Photoinduced energy transfer between
water-soluble CdTe quantum dots and aluminium tetrasulfonated phthalocyanine. New J
Chem 32:290–296
33. Britton J, Antunes E, Nyokong T (2010) Fluorescence quenching and energy transfer in
conjugates of quantum dots with zinc and indium tetraamino phthalocyanines. J Photochem
Photobiol A 210:1–7
34. Li L, Zhao J-F, Won N, Jin H, Kim S, Chen J-Y (2012) Quantum dot-aluminum
phthalocyanine conjugates perform photodynamic reactions to kill cancer cells via
fluorescence resonance energy transfer. Nanoscale Res Lett 7:386
35. Bursa B, Rytel K, Skrzypiec M, Prochaska K, Wróbel D (2018) Thin film of CdTeSe/ZnS
quantum dots on water subphase: thermodynamics and morphology studies. Dyes Pigm
155:36–41
118
D. Wróbel and B. Barszcz
investigations of resonance effects in selected sulfonated phthalocyanines. Dyes Pigm
83:281–290
18. Karimi AR, Khodadadi A (2012) Synthesis and solution properties of new metal-free and
metallo-phthalocyanines containing four bis(indol-3-yl)methane groups. Tetrahedron Lett
53:5223–5226
19. Bursa B, Wróbel D, Biadasz A, Kędzierski K, Lewandowska K, Graja A, Szybowicz M,
Durmuş M (2014) Indium-chlorine and gallium-chlorine tetrasubstituted phthalocyanines in
a bulk system, Langmuir monolayers and Langmuir-Blodgett nanolayers—spectroscopic
investigations. Spectrochim Acta A 128:489–496
20. Bursa B, Biadasz A, Kędzierski K, Wróbel D (2014) Quantum dot with zinc and copper
substituted phthalocyanines. 1. Energy transfer in solution and in-situ light absorption in
Langmuir monolayers. J Lumin 145:779–786
21. Kędzierski K, Barszcz B, Kotkowiak M, Bursa B, Goc J, Dinçer H, Wróbel D (2016)
Photophysics of an unsymmetrical Zn(II) phthalocyanine substituted with terminal alkynyl
group. J Lumin 180:132–139
22. Meyer T, Ogermann D, Pankrath A, Kleinermanns K, Müller TJ (2012) Phenothiazinyl
rhodanylidene merocyanines for dye-sensitized solar cells. J Org Chem 77:3704–3715
23. Wróbel D, Boguta A, Ion RM (2001) Mixtures of synthetic organic dyes in a
photoelectrochemical cell. J Photochem Photobiol 138:7–22
24. Chamberlain GA, Cooney PJ, Dennison S (1981) Photovoltaic properties of merocyanine
solid-state photocells. Nature 289:45–47
25. Steinmann V, Kronenberg NM, Lenze MR, Graf SM, Hertel D, Meerholz K, Bürckstümmer
H, Tulyakova EV, Würthner F (2011) Simple, highly efficient vacuum-processed bulk
heterojunction solar cells based on merocyanine dyes. Adv Energy Mater 1(5):888–893
26. Abdou EM, Hafez HS, Bakir E, Abdel-Mottaleb MS (2013) Photostability of low cost
dye-sensitized solar cells based on natural and synthetic dyes. Spectrochim Acta A 115:
202–207
27. Arjona-Esteban A, Lenze MR, Meerholz K, Würthner F (2017) Donor-acceptor dyes for
organic photovoltaics. In: Leo K (ed) Elementary processes in organic photovoltaics.
Advances in polymer science 272. Springer, Berlin
28. Wróbel D, Łukasiewicz J, Manikowski H (2003) Fluorescence quenching and ESR
spectroscopy of metallic porphyrins in the presence of an electron acceptor. Dyes Pigm
58:7–18
29. Pace NA, Reid OG, Rumbles G (2018) Delocalization drives free charge generation in
conjugated polymer films. ACS Energy Lett 3:735–741
30. Li L, Kang S-W, Harden J, Sun Q, Zhou X, Dai L, Jakli A, Kumar S, Li Q (2008)
Nature-inspired light-harvesting liquid crystalline porphyrins for organic photovoltaics. Liq
Cryst 35:233–239
31. Imahori H, Hayashi S, Hayashi H, Oguro A, Eu S, Umeyama T, Matano Y (2009) Effects of
porphyrin substituents and adsorption conditions on photovoltaic properties of
porphyrin-sensitized TiO 2 cells. J Phys Chem C 113:18406–18413
32. Idowu M, Chen J-Y, Nyokong T (2008) Photoinduced energy transfer between
water-soluble CdTe quantum dots and aluminium tetrasulfonated phthalocyanine. New J
Chem 32:290–296
33. Britton J, Antunes E, Nyokong T (2010) Fluorescence quenching and energy transfer in
conjugates of quantum dots with zinc and indium tetraamino phthalocyanines. J Photochem
Photobiol A 210:1–7
34. Li L, Zhao J-F, Won N, Jin H, Kim S, Chen J-Y (2012) Quantum dot-aluminum
phthalocyanine conjugates perform photodynamic reactions to kill cancer cells via
fluorescence resonance energy transfer. Nanoscale Res Lett 7:386
35. Bursa B, Rytel K, Skrzypiec M, Prochaska K, Wróbel D (2018) Thin film of CdTeSe/ZnS
quantum dots on water subphase: thermodynamics and morphology studies. Dyes Pigm
155:36–41
118
D. Wróbel and B. Barszcz
