Biomedical Engineering Reference
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References
1. De Silva AP, Gunaratne HQG, Huxley CP, McCoy CP, Radamacher JT, Rice TE (1997)
Signaling recognition events with fluorescent sensors and switches. Chem Rev 97:1515-1566
2. Full issue of (2000) Coord Chem Rev 205:1-232
3. Mart´nez-M´˜ez R, Sancen´n F (2003) Fluorogenic and chromogenic chemosensors and
reagents for anions. Chem Rev 103:4419-4476
4. Gale PA (2006) Structural and molecular recognition studies with acyclic anion receptors. Acc
Chem Res 39:465-475
5. Katayev EA, Ustynyuk YA, Sessler JL (2006) Receptors for tetrahedral oxyanions. Coord
Chem Rev 250:3004-3037
6. Davis P (2006) Anion binding and transport by steroid-based receptors. Coord Chem Rev
250:2939-3051
7. Schmidtchen FP (2006) Reflections on the construction of anion receptors: is there a sign to
resign from design? Coord Chem Rev 250:2918-2928
8. Yoon J, Kim SK, Singh NJ, Kim KS (2006) Imidazolium receptors for the recognition of
anions. Chem Soc Rev 35:355-360
9. Bowman-James K (2005) Alfred Werner revisited: the coordination chemistry of anions. Acc
Chem Res 38:671-678
10. Suksai C, Tuntulani T (2003) Chromogenic anion sensors. Chem Soc Rev 32:192-202
11. Sessler JL, Camiolo S, Gale PA (2003) Pyrrolic and polypyrrolic anion binding agents. Coord
Chem Rev 240:17-55
12. Gale PA (2001) Anion receptor chemistry: highlights from 1999. Coord Chem Rev
213:79-128
13. Schmidtchen FP, Berger M (1997) Artificial organic host molecules for anions. Chem Rev
97:1609-1646
14. McFarland SA, Finney NS (2001) Fluorescent chemosensors based on conformational restric-
tion of a biaryl fluorophore. J Am Chem Soc 123:1260-1261
15. McFarland SA, Finney NS (2002) Fluorescent signaling based on control of excited state
dynamics. Biarylacetylene fluorescent chemosensors. J Am Chem Soc 124:1178-1179
16. Mello JS, Finney NS (2001) Dual-signaling fluorescent chemosensors based on conforma-
tional restriction and induced charge transfer. Angew Chem Int Ed 40:1536-1538
17. Benniston AC, Harriman A, Patel PV, Sams CA (2005) A strategy for controlling the central
torsion angle in biphenyl-based molecular-scale bridges. Eur J Org Chem 2005:4680-4686
18. Costero AM, Andreu R, Monrabal E, Mart´nez-M´˜ez R, Sancen´n F, Soto J (2002) 4,4 0 -Bis
(dimethylamino)biphenyl containing binding sites. A new fluorescent subunit for cation
sensing. J Chem Soc Dalton Trans 2002:1769-1775
19. Ghosh P, Bharadwaj PK, Mandal S, Ghosh S (1996) Ni(II), Cu(II), and Zn(II) cryptate-
enhanced fluorescence of a trianthrylcryptand: a potential molecular photonic OR operator.
J Am Chem Soc 118:1553-1554
20. Costero AM, Ba˜uls MJ, Aurell MJ, Domenech A (2006) 4,4 0 -Subtituted biphenyl coronands.
Preparation of a new selective fluorescent
sensor
for mercury salts. Tetrahedron
62:11972-11978
21. Costero AM, Andreu R, Mart´nez-M´˜ez R, Sancen´n F, Soto J (2002) A fluorescent
chemosensor able to distinguish between ionic and covalente mercury compounds. J Inclusion
Phenom Mol Recognit Chem 46:121-124
22. Costero AM, Ba˜uls MJ, Aurell MJ, Ochando LE, Dom´nech A (2005) Cation and anion
fluorescent and electrochemical sensors derived from 4,4 0 -substituted biphenyl. Tetrahedron
61:10309-10320
23. Costero AM, Sanchis J, Gil S, Sanz V, Ramirez de Arellano MC, Williams JAG (2004)
Polyazapodands derived from biphenyl. Study of their behaviour as conformationally regulates
fluorescent sensors. Supramol Chem 16:435-446
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