72. Werwie M, Xu X, Haase M, Basche ´ T, Paulsen H (2012) Bio serves nano: biological lightharvesting complex as energy donor for semiconductor quantum dots. Langmuir 28(13):5810
73. Gundlach K, Werwie M, Wiegand S, Paulsen H (2009) Filling the "green gap" of the major
light-harvesting chlorophyll a/b complex by covalent attachment of Rhodamine Red.
Biochim Biophys Acta Bioenerg 1787(12):1499
74. Peneva K, Gundlach K, Herrmann A, Paulsen H, Mu ¨llen K (2010) Site-specific incorporation of
perylene into an N-terminally modified light-harvesting complex II. Org Biomol Chem 8(21):4823
75. Wolf-Klein H, Kohl C, Mu ¨llen K, Paulsen H (2002) Biomimetic model of a plant photosystem consisting of a recombinant light-harvesting complex and a terrylene dye. Angew Chem
Int Ed 41(18):3378
76. Li C, Liu M, Pschirer NG, Baumgarten M, Mu ¨llen K (2010) Polyphenylene-based materials
for organic photovoltaics. Chem Rev 110:6817
77. Yablonovitch E (1987) Inhibited spontaneous emission in solid-state physics and electronics.
Phys Rev Lett 58:2059
78. John S (1987) Strong localization of photons in certain disordered dielectric superlattices.
Phys Rev Lett 58:2486
79. Busch K, Lo ¨lkes S, Wehrspohn RB, Fo ¨ll H (2004) Photonic crystals – advances in design.
Fabrication and characterization. Wiley-VCH, Weinheim
80. Wehrspohn RB, Kitzerow H-S, Busch K (2008) Nanophotonic materials, photonic crystals,
plasmonics and metamaterials. Wiley-VCH, Weinheim
81. Lange B, Fleischhaker F, Zentel R (2007) Chemical approach to functional artificial opals.
Macromol Rapid Commun 28:1291
82. John S, Quang T (1995) Localization of superradiance near a photonic band-gap. Phys Rev
Lett 74:3419
83. Mu ¨ller M, Zentel R, Maka T, Romanov SG, Sotomayor Torres CM (2000) Photonic crystal
films with high refractive index contrast. Adv Mater 12:1499
84. Kneubu ¨hl FK, Sigrist MW (1999) Laser. Teubner Studienbu ¨cher, Stuttgart
85. Dodabalapur A, Chandross EA, Berggren M, Slusher RE (1997) Applied physics: organic
solid-state lasers: past and future. Science 277:1787
86. Mu ¨ller M, Zentel R, Maka T, Romanov SG, Sotomayor Torres CM (2000) Dye-containing
polymer beads as photonic crystals. Chem Mater 12:2508
87. Fleischhaker F, Zentel R (2005) Photonic crystals from core-shell colloids with incorporated
highly fluorescent quantum dots. Chem Mater 17:1346
88. Gorelik VS (2008) Optics of globular photonic crystals. Laser Phys 18:1479
89. Romanov SG, Maka T, Sotomayor Torres CM, Mu ¨ller M, Zentel R (1999) Photonic band-gap
effects upon the light emission from a dye-polymer-opal composite. Appl Phys Lett 75:1057
90. Furumi S, Kanai T, Sawada T (2011) Widely tunable lasing in a colloidal crystal gel film
permanently stabilized by an ionic liquid. Adv Mater 23:3815
91. Fleischhaker F, Arsenault AC, Kitaev V, Peiris FC, von Freymann G, Manners I, Zentel R,
Ozin GA (2005) Photochemically and thermally tunable planar defects in colloidal photonic
crystals. J Am Chem Soc 127:9318
92. Fleischhaker F, Arsenault AC, Schmidtke J, Zentel R, Ozin G (2006) Spin-coating of
designed functional planar defects in opal film: generalized synthesis. Chem Mater 18:5640
93. Shi LT, Jin F, Zheng ML, Dong XZ, Chen WQ, Zhao ZS, Duan XM (2011) Threshold
optimization of polymeric opal photonic crystal cavity as organic solid-state dye-doped laser.
App Phys Lett 98:093304
94. Goldberg, L.S, Schnur, J.M. (1973) Tunable internal-feedback liquid crystal-dye laser. US
patent No. 3,771,065.
95. Ilchishin IP, Tikhonov EA, Tishchenko VG, Shpak MT (1980) Generation of a tunable
radiation by impurity cholesteric liquid crystals. JETP Lett 32:24
96. Ilchishin IP, Tikhonov EA, Tolmachev AV, Fedoryako AP, Shpak MT (1988) Harmonic
distortion of the nematic liquid crystal structure with induced gyrotropy which manifests in
the distributed feedback laser. Ukrainskii Fizicheskii Zhurnal 33:1492
97. Blinov LM, Bartolino R (2010) Liquid crystal microlasers. Transworld Research Network,
Kerala, p 1
Optical Properties of Assemblies of Molecules and Nanoparticles
111
73. Gundlach K, Werwie M, Wiegand S, Paulsen H (2009) Filling the "green gap" of the major
light-harvesting chlorophyll a/b complex by covalent attachment of Rhodamine Red.
Biochim Biophys Acta Bioenerg 1787(12):1499
74. Peneva K, Gundlach K, Herrmann A, Paulsen H, Mu ¨llen K (2010) Site-specific incorporation of
perylene into an N-terminally modified light-harvesting complex II. Org Biomol Chem 8(21):4823
75. Wolf-Klein H, Kohl C, Mu ¨llen K, Paulsen H (2002) Biomimetic model of a plant photosystem consisting of a recombinant light-harvesting complex and a terrylene dye. Angew Chem
Int Ed 41(18):3378
76. Li C, Liu M, Pschirer NG, Baumgarten M, Mu ¨llen K (2010) Polyphenylene-based materials
for organic photovoltaics. Chem Rev 110:6817
77. Yablonovitch E (1987) Inhibited spontaneous emission in solid-state physics and electronics.
Phys Rev Lett 58:2059
78. John S (1987) Strong localization of photons in certain disordered dielectric superlattices.
Phys Rev Lett 58:2486
79. Busch K, Lo ¨lkes S, Wehrspohn RB, Fo ¨ll H (2004) Photonic crystals – advances in design.
Fabrication and characterization. Wiley-VCH, Weinheim
80. Wehrspohn RB, Kitzerow H-S, Busch K (2008) Nanophotonic materials, photonic crystals,
plasmonics and metamaterials. Wiley-VCH, Weinheim
81. Lange B, Fleischhaker F, Zentel R (2007) Chemical approach to functional artificial opals.
Macromol Rapid Commun 28:1291
82. John S, Quang T (1995) Localization of superradiance near a photonic band-gap. Phys Rev
Lett 74:3419
83. Mu ¨ller M, Zentel R, Maka T, Romanov SG, Sotomayor Torres CM (2000) Photonic crystal
films with high refractive index contrast. Adv Mater 12:1499
84. Kneubu ¨hl FK, Sigrist MW (1999) Laser. Teubner Studienbu ¨cher, Stuttgart
85. Dodabalapur A, Chandross EA, Berggren M, Slusher RE (1997) Applied physics: organic
solid-state lasers: past and future. Science 277:1787
86. Mu ¨ller M, Zentel R, Maka T, Romanov SG, Sotomayor Torres CM (2000) Dye-containing
polymer beads as photonic crystals. Chem Mater 12:2508
87. Fleischhaker F, Zentel R (2005) Photonic crystals from core-shell colloids with incorporated
highly fluorescent quantum dots. Chem Mater 17:1346
88. Gorelik VS (2008) Optics of globular photonic crystals. Laser Phys 18:1479
89. Romanov SG, Maka T, Sotomayor Torres CM, Mu ¨ller M, Zentel R (1999) Photonic band-gap
effects upon the light emission from a dye-polymer-opal composite. Appl Phys Lett 75:1057
90. Furumi S, Kanai T, Sawada T (2011) Widely tunable lasing in a colloidal crystal gel film
permanently stabilized by an ionic liquid. Adv Mater 23:3815
91. Fleischhaker F, Arsenault AC, Kitaev V, Peiris FC, von Freymann G, Manners I, Zentel R,
Ozin GA (2005) Photochemically and thermally tunable planar defects in colloidal photonic
crystals. J Am Chem Soc 127:9318
92. Fleischhaker F, Arsenault AC, Schmidtke J, Zentel R, Ozin G (2006) Spin-coating of
designed functional planar defects in opal film: generalized synthesis. Chem Mater 18:5640
93. Shi LT, Jin F, Zheng ML, Dong XZ, Chen WQ, Zhao ZS, Duan XM (2011) Threshold
optimization of polymeric opal photonic crystal cavity as organic solid-state dye-doped laser.
App Phys Lett 98:093304
94. Goldberg, L.S, Schnur, J.M. (1973) Tunable internal-feedback liquid crystal-dye laser. US
patent No. 3,771,065.
95. Ilchishin IP, Tikhonov EA, Tishchenko VG, Shpak MT (1980) Generation of a tunable
radiation by impurity cholesteric liquid crystals. JETP Lett 32:24
96. Ilchishin IP, Tikhonov EA, Tolmachev AV, Fedoryako AP, Shpak MT (1988) Harmonic
distortion of the nematic liquid crystal structure with induced gyrotropy which manifests in
the distributed feedback laser. Ukrainskii Fizicheskii Zhurnal 33:1492
97. Blinov LM, Bartolino R (2010) Liquid crystal microlasers. Transworld Research Network,
Kerala, p 1
Optical Properties of Assemblies of Molecules and Nanoparticles
111
