9. Atwood JL, Gokel GW, Barbour LJ, MacGillivray LR (eds) (2017) Comprehensive supramolecular chemistry II. Volume 7: Supramolecular engineering: designing the solid state.
Elsevier, Amsterdam
10. Dalgarno SJ (ed) (2017) Comprehensive supramolecular chemistry II. Volume 6: Supramolecular engineering: discrete molecular assemblies. Elsevier, Amsterdam
11. Gokel GW, Barbour LJ (eds) (2017) Comprehensive supramolecular chemistry II. volume 1:
general principles of supramolecular chemistry and molecular recognition. Elsevier,
Amsterdam
12. Credi A (2012) Supramolecular photochemistry controlling photochemical processes. Edited
by V. Ramamurthy and Yoshihisa Inoue. Angew Chem Int Ed 51:6311–6312
13. Tanaka K, Toda F (2002) Organic photoreaction in the solid state. In: Toda F (ed) Organic
solid-state reactions. Springer, Dordrecht
14. Mena-Hernando S, Perez EM (2019) Mechanically interlocked materials. Rotaxanes and
catenanes beyond the small molecule. Chem Soc Rev 48:5016–5032
15. Xu Y, von Delius M (2019) The supramolecular chemistry of strained carbon nanohoops.
Angew Chem Int Ed 59(2):559–573
16. Cram DJ, Cram JM (eds) (1997) Container molecules and their guests. Royal Society of
Chemistry, London
17. Bortolus P, Grabner G, Koehler G, Monti S (1993) Photochemistry of cyclodextrin host-guest
complexes. Coord Chem Rev 125:261–268
18. Balzani V, Credi A (1996) Supramolecular photochemistry: recent advances. NATO ASI Ser
C 485:163–177
19. Voegtle F, Weber E (eds) (1985) Host guest complex chemistry: synthesis, structures,
applications. Springer, Berlin
20. Laeri F, Schueth F, Simon U, Wark M (eds) (2003) Host-guest-systems based on nanoporous
crystals. Wiley, Amsterdam
21. Bortolus P, Monti S (1996) Photochemistry in cyclodextrin cavities. Adv Photochem
21:1–133
22. Ueno A, Ikeda H (2001) Supramolecular photochemistry of cyclodextrin-related materials.
Mol Supramol Photochem 8:461–503
23. Ayitou A, Pemberton BC, Kumarasamy E, Vallavoju N, Sivaguru J (2011) Fun with photons:
selective light induced reactions in solution and in water soluble nanocontainers. Chimia
65:202–209
24. Chernikova EY, Fedorov YV, Fedorova OA (2012) Cucurbituril as a new “host” of organic
molecules in inclusion complexes. Russ Chem Bull 61:1363–1390
25. Mori T, Inoue Y (2012) Photochemistry in alternative media. In: Griesbeck, Oelgemoller,
Ghetti (eds) CRC handbook of organic photochemistry and photobiology, 3rd edn. CRC Press,
Boca Raton, FL, pp 249–275
26. Coyle EE, Oelgemoller M (2008) Micro-photochemistry: photochemistry in microstructured
reactors. The new photochemistry of the future? Photochem Photobiol Sci 7:1313–1322
27. Ramamurthy V, Sivaguru J (2011) Controlling photoreactions through noncovalent interactions within zeolite nanocages, pp 389–442
28. Ramamurthy V (1990) Photochemistry in zeolite cavities. In: Atwood JL (ed) Inclusion
phenomena and molecular recognition. Springer, Boston, MA
29. Jing X, He C, Zhao L, Duan C (2019) Photochemical properties of host-guest supramolecular
systems with structurally confined metal-organic capsules. Acc Chem Res 52:100–109
30. Qu D-H, Wang Q-C, Zhang Q-W, Ma X, Tian H (2015) Photoresponsive host-guest functional
systems. Chem Rev 115:7543–7588
31. Ramamurthy V, Sivaguru J (2016) Supramolecular photochemistry as a potential synthetic
tool: photocycloaddition. Chem Rev 116:9914–9993
32. Chretien MN (2007) Supramolecular photochemistry in zeolites: from catalysts to sunscreens.
Pure Appl Chem 79:1–20
33. Lakowicz JR (1983) Principles of fluorescence spectroscopy. Plenum, New York
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