209. Markvart T, Danos L, Fang L, Parel T, Soleimani N (2012) Photon frequency management for
trapping & concentration of sunlight. RSC Adv 2:3173–3179
210. Batchelder JS, Zewail AH, Cole T (1979) Luminescent solar concentrators. 1: theory of
operation and techniques for performance evaluation. Appl Opt 18:3090–3110
211. Kittidachachan P, Danos L, Meyer TJ, Alderman N, Markvart T (2007) Photon collection
efficiency of fluorescent solar collectors. Chimia 61:780–786
212. Debije MG, Verbunt PP (2012) Thirty years of luminescent solar concentrator research: solar
energy for the built environment. Adv Energy Mater 2:12–35
213. Correia SFH, Frias AR, Fu L, Rondão R, Pecoraro E, Ribeiro SJL, André PS, Ferreira RAS,
Carlos LD (2018) Large-area tunable visible-to-near-infrared luminescent solar concentrators.
Adv Sustain Syst 1800002:1–9. https://doi.org/10.1002/adsu.201800002
214. Dienel T, Bauer C, Dolamic I, Brühwiler D (2010) Spectral-based analysis of thin film
luminescent solar concentrators. Sol Energy 84:1366–1369
215. Vohra V, Calzaferri G, Destri S, Pasini M, Porzio W, Botta C (2010) Toward white light
emission through efficient two step energy transfer in hybrid nanofibers. ACS Nano
4:1409–1416
216. Bossart O, De Cola L, Welter S, Calzaferri G (2004) Injecting electronic excitation energy into
an artificial antenna system through a Ru
2+ complex. Chem Eur J 10:5771–5775
217. Dieu LQ, Devaux A, López-Duarte I, Martínez-Díaz MV, Brühwiler D, Calzaferri G, Torres T
(2008) Novel phthalocyanine based stopcock for zeolite L. Chem Commun 10:1187–1198
218. López-Duarte I, Dieu LQ, Dolamic I, Martínez-Díaz MV, Torres T, Calzaferri G, Brühwiler D
(2011) On the significance of the anchoring group in the design of antenna materials based on
phthalocyanine stopcocks and zeolite L. Chem Eur J 17:1855–1862
219. Cucinotta F, Guenet A, Bizzarri C, Mróz W, Botta C, Milián-Medina B, Gierschner J, De Cola
L (2014) Energy transfer at the zeolite L boundaries: towards photo- and electroresponsive
materials. ChemPlusChem 79:45–57
220. Ramachandra S, Popović ZD, Schuermann KC, Cucinotta F, Calzaferri G, De Cola L (2011)
Förster resonance energy transfer in quantum dot–dye loaded zeolite L nanoassemblies. Small
10:1488–1494
221. Li Z, Luppi G, Geiger A, Josel H-P, De Cola L (2011) Bioconjugated fluorescent zeolite L
nanocrystals as labels in protein microarrays. Small 7:3193–3201
222. Vohra V, Devaux A, Dieu LQ, Scavia G, Catellani M, Calzaferri G, Botta C (2009) Energy
transfer in fluorescent nanofibers embedding dye-loaded zeolites L crystals. Adv Mater
21:1146–1150
223. Li P, Yang D, Li H (2016) Luminescence ethylenediamine sensor based on terbium complexes
entrapment. Dyes Pigments 132:306–309
224. Strassert CA, Otter M, Albuquerque RQ, Höne A, Vida Y, Maier B, De Cola L (2009)
Photoactive hybrid nanomaterial for targeting, labeling, and killing antibiotic-resistant bacteria. Angew Chem Int Ed 48:7928–7931
225. El-Gindi J, Benson K, De Cola L, Galla HJ, Kehr NS (2012) Cell adhesion behavior on
enantiomerically functionalized zeolite L monolayers. Angew Chem Int Ed 51:3716–3720
226. Kehr A, Motealleh AH (2016) Schäfer, cell growth on (“janus”) density gradients of bifunctional zeolite L crystals. ACS Appl Mater Interfaces 8:35081–35090
227. Marega R, Prasetyanto EA, Michiels C, De Cola L, Bonifazi D (2016) Fast targeting and
cancer cell uptake of luminescent antibody-nanozeolite bioconjugates. Small 12:5431–5441
Guests in Nanochannels of Zeolite L
73
trapping & concentration of sunlight. RSC Adv 2:3173–3179
210. Batchelder JS, Zewail AH, Cole T (1979) Luminescent solar concentrators. 1: theory of
operation and techniques for performance evaluation. Appl Opt 18:3090–3110
211. Kittidachachan P, Danos L, Meyer TJ, Alderman N, Markvart T (2007) Photon collection
efficiency of fluorescent solar collectors. Chimia 61:780–786
212. Debije MG, Verbunt PP (2012) Thirty years of luminescent solar concentrator research: solar
energy for the built environment. Adv Energy Mater 2:12–35
213. Correia SFH, Frias AR, Fu L, Rondão R, Pecoraro E, Ribeiro SJL, André PS, Ferreira RAS,
Carlos LD (2018) Large-area tunable visible-to-near-infrared luminescent solar concentrators.
Adv Sustain Syst 1800002:1–9. https://doi.org/10.1002/adsu.201800002
214. Dienel T, Bauer C, Dolamic I, Brühwiler D (2010) Spectral-based analysis of thin film
luminescent solar concentrators. Sol Energy 84:1366–1369
215. Vohra V, Calzaferri G, Destri S, Pasini M, Porzio W, Botta C (2010) Toward white light
emission through efficient two step energy transfer in hybrid nanofibers. ACS Nano
4:1409–1416
216. Bossart O, De Cola L, Welter S, Calzaferri G (2004) Injecting electronic excitation energy into
an artificial antenna system through a Ru
2+ complex. Chem Eur J 10:5771–5775
217. Dieu LQ, Devaux A, López-Duarte I, Martínez-Díaz MV, Brühwiler D, Calzaferri G, Torres T
(2008) Novel phthalocyanine based stopcock for zeolite L. Chem Commun 10:1187–1198
218. López-Duarte I, Dieu LQ, Dolamic I, Martínez-Díaz MV, Torres T, Calzaferri G, Brühwiler D
(2011) On the significance of the anchoring group in the design of antenna materials based on
phthalocyanine stopcocks and zeolite L. Chem Eur J 17:1855–1862
219. Cucinotta F, Guenet A, Bizzarri C, Mróz W, Botta C, Milián-Medina B, Gierschner J, De Cola
L (2014) Energy transfer at the zeolite L boundaries: towards photo- and electroresponsive
materials. ChemPlusChem 79:45–57
220. Ramachandra S, Popović ZD, Schuermann KC, Cucinotta F, Calzaferri G, De Cola L (2011)
Förster resonance energy transfer in quantum dot–dye loaded zeolite L nanoassemblies. Small
10:1488–1494
221. Li Z, Luppi G, Geiger A, Josel H-P, De Cola L (2011) Bioconjugated fluorescent zeolite L
nanocrystals as labels in protein microarrays. Small 7:3193–3201
222. Vohra V, Devaux A, Dieu LQ, Scavia G, Catellani M, Calzaferri G, Botta C (2009) Energy
transfer in fluorescent nanofibers embedding dye-loaded zeolites L crystals. Adv Mater
21:1146–1150
223. Li P, Yang D, Li H (2016) Luminescence ethylenediamine sensor based on terbium complexes
entrapment. Dyes Pigments 132:306–309
224. Strassert CA, Otter M, Albuquerque RQ, Höne A, Vida Y, Maier B, De Cola L (2009)
Photoactive hybrid nanomaterial for targeting, labeling, and killing antibiotic-resistant bacteria. Angew Chem Int Ed 48:7928–7931
225. El-Gindi J, Benson K, De Cola L, Galla HJ, Kehr NS (2012) Cell adhesion behavior on
enantiomerically functionalized zeolite L monolayers. Angew Chem Int Ed 51:3716–3720
226. Kehr A, Motealleh AH (2016) Schäfer, cell growth on (“janus”) density gradients of bifunctional zeolite L crystals. ACS Appl Mater Interfaces 8:35081–35090
227. Marega R, Prasetyanto EA, Michiels C, De Cola L, Bonifazi D (2016) Fast targeting and
cancer cell uptake of luminescent antibody-nanozeolite bioconjugates. Small 12:5431–5441
Guests in Nanochannels of Zeolite L
73
