Chemistry Reference
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22. Kasatani K, Kawasaki M, Sato H (1984) Lifetime shortening of the photoisomer of a cyanine
dye by inclusion in a cyclodextrin cavity as revealed by transient absorption spectroscopy.
J Phys Chem 88:5451-5453
23. Kasatani K, Ohashi M, Kawasaki M, Sato H (1987) Cyanine dye-cyclodextrin system.
Enhanced dimerization of the dye. Chem Lett 16:1633-1636
24. Rao TVS, Huff JB, Bieniarz C (1998) Supramolecular control of photophysical properties of
cyanine dyes. Tetrahedron 54:10627-10634
25. Moritz ED, Sahyun MRV (2005) Spectroscopic studies of
b
-cyclodextrin-complexed cya-
nine dyes. J Photochem Photobiol A Chem 169:211-220
26. Yau CMS, Pascu SI, Odom SA, Warren JE, Klotz EJF, Frampton MJ, Williams CC,
Coropceanu V, Kuimova MK, Phillips D, Barlow S, Br´das JL, Marder SR, Millar V,
Anderson HL (2008) Stabilisation of a heptamethine cyanine dye by rotaxane encapsulation.
Chem Commun 25:2897-2899
27. Buston JEH, Marken F, Anderson HL (2001) Enhanced chemical reversibility of redox
processes in cyanine dye rotaxanes. Chem Commun 11:1046-1047
28. Wang LQ, Zhao L, Nie WW, Zheng LH, Wang JD, Li QR, Zhai J, Liu ZW, Peng XJ (2008)
Syntheses and properties of photostable near-infrared cyanines and their cyclodextrin con-
jugates. Chin Chem Lett 19:739-741
29. Medintz IL, Goldman ER, Lassman ME, Mauro JM (2003) A fluorescence resonance energy
transfer sensor based on maltose binding protein. Bioconjug Chem 14:909-918
30. Klotz EJF, Claridge TDW, Anderson HL (2006) Homo- and hetero-[3]rotaxanes with two
p -systems clasped in a single macrocycle. J Am Chem Soc 128:15374-15375
31. Gadde S, Batchelor EK, Weiss JP, Ling Y, Kaifer AE (2008) Control of H- and J-aggregate
formation via host-guest
complexation using cucurbituril hosts.
J Am Chem Soc
130:17114-17119
32. Batchelor EK, Gadde S, Kaifer AE (2010) Host-guest control on the formation of pinacyanol
chloride H-aggregates in anionic polyelectrolyte solutions. Supramol Chem 22:40-45
33. Gadde S, Batchelor EK, Kaifer AE (2009) Controlling the formation of cyanine dye H- and J-
aggregates with cucurbituril hosts in the presence of anionic polyelectrolytes. Chem Eur J
15:6025-6031
34. Mohanty J, Pal H, Ray AK (2007) Supramolecular dye laser with cucurbit[7]uril in water.
Chem Phys Chem 8:54-56
35. Jeon YJ, Kim SY, Ko YH, Sakamoto S, Yamaguchi K, Kim K (2005) Novel molecular drug
carrier: encapsulation of oxaliplatin in cucurbit[7]uril and its effects on stability and reactiv-
ity of the drug. Org Biomol Chem 3:2122-2125
36. Lehn JM (1995) Supramolecular chemistry: concepts and perspectives. VCH, Weinheim
37. Gellman SH (1997) Introduction: molecular recognition. Chem Rev 97:1231-1232
38. Jon SY, Ko YH, Park SH, Kim HJ, Kim K (2001) A facile, stereoselective [2
þ
2]
photoreaction mediated by cucurbit[8]uril. Chem Commun 19:1938-1939
39. Pattabiraman M, Natarajan A, Kaliappan R, Mague JT, Ramamurthy V (2005) Template
directed photodimerization of trans -1,2-bis( n -pyridyl)ethylenes and stilbazoles in water.
Chem Commun 36:4542-4544
40. Jon SY, Selvapalam N, Oh DH, Kang JK, Kim SY, Jeon YJ, Lee JW, Kim K (2003) Facile
synthesis of cucurbit[n]uril derivatives via direct functionalization: expanding utilization of
cucurbit[n]uril. J Am Chem Soc 125:10186-10187
41. Burnett CA, Lagona J, Wu A, Shaw JA, Coady D, Fettinger JC, Dayb AI, Isaacs L (2003)
Preparation of glycoluril monomers for expanded cucurbit[n]uril synthesis. Tetrahedron
59:1961-1970
42. Kim K, Selvapalam N, Ko YH, Park KM, Kim D, Kim J (2007) Functionalized cucurbiturils
and their applications. Chem Soc Rev 36:267-279
43. Isaacs L (2009) Cucurbit[n]urils: from mechanism to structure and function. Chem Commun
6:619-629
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