Biomedical Engineering Reference
In-Depth Information
Dr. T. Blaudeck (now at ENAS, Chemnitz), Dr. D. Kowerko (now at University of Z urich), S.
Krause, Prof. M. Abdel-Mottaleb (now at Nile University, Centre for Nanotechnology, Cairo), K.
Szwaykowska (now at California Institute of Technology), for performing mutual experiments,
theoretical analysis, and fruitful discussions in Chemnitz.
Titration and FRET experiments in TEHOS have been performed by F. Gerlach (now at Fibotec
oberoptics GmbH, Meiningen, Germany).
Dr. D. Kilin (now at the University of South Dakota, USA) has performed helpful calculations
on QD-Dye nanoassemblies.
We thank Prof. Dr. S.V. Gaponenko (B.I. Stepanov Institute of Physics, National Academy
of Sciences, Minsk, Belarus) for fruitful discussion. We also thank Prof. F. Cichos (now at
Molecular Nanophotonics, University of Leipzig, Germany) for stimulating and guiding many of
the experiments.
References
1. Moyano DF, Goldsmith M, Solfiell DJ, Landesman-Milo D, Miranda OR, Peer D, Rotello
VM (2012) J Am Chem Soc 134:3965
2. De Mello Donega C (2011) Chem Soc Rev 40:1512
3. Mocatta D, Cohen G, Schattner J, Millo O, Rabani E, Banin U (2011) Science 332:77
4. Liang G-X, Li L-L, Liu H-Y, Zhang J-R, Burda C, Zhu J-J (2010) Chem Commun 46:2974
5. Cheng H-M (2011) Chem Commun 47:6763
6. Mansoori GA (2005) Principles of Nanotechnology. Molecular-Based Study of Condensed
Matter in Small Systems. University of Illinois at Chicago, Chicago
7. Nicolini C.: Nanobiotechnology and Nanobiosciences. Pan Stanford Series on Nanobiotech-
nology, vol. 1 (2009) PANStanford Publishing, Singapore
8. Whitesides GM, Grzybowski B (2002) Science 295:2418
9. Lehn J-M (1990) Angew Chem Int Ed Engl 29:1304
10. Klimov V (2000) In: Nalwa HS (ed) Handbook of Nanostructured Materials and Nanotech-
nology, vol 4. Academic Press, San Diego, Orlando, pp 451-527
11. Woggon U (2006) Optical Properties of Semiconductor Quantum Dots. Springer, Berlin
12. Rogach AL (ed) (2008) Semiconductor Nanocrystal Quantum Dots: Synthesis, Assembly,
Spectroscopy and Applications. Springer, Wien
13. Gaponenko SV (2010) Introduction to Nanophotonics. Cambridge University Press, Cam-
bridge
14. Talapin DV, Lee J-S, Kovalenko MV, Shevchenko EV (2010) Chem Rev 110:389
15. Coe-Sullivan S, Woo W-K, Steckel JS, Bawendi M, Bulovic V (2003) Electronics 4:123
16. Wang M, Moon S-J, Xu M, Chittibabu K, Wang P, Cevey-Ha N-L, Humphry-Baker
R, Zakeeruddin SM, Graetzel M (2010) Small 6:319
17. Medintz IL, Stewart MH, Trammell SA, Susumi K, Delahanty JB, Mey BC, Melinger JS,
Blanco-Canosa JB, Dawson FE, Mattoussi H (2010) Nat Mater 9:676
18. Frasco MF, Chaniotakis N (2009) Sensors 9:7266
19. Hetsch F, Xu X, Wang H, Kershaw SV, Rogach AL (2011) J Phys Chem Lett 2:1879
20. McDowell M, Wright AE, Hammer NI (2010) Materials 3:614
21. Schmitt F-J, Maksimov EG, Suedmeyer H, Jeyasangar V, Theiss C, Paschenko VZ, Eichler
HJ, Renger G (2011) Photonics Nanostruct: Fundam Appl 9:190
22. Rakovich A, Savateeva D, Rakovich T, Donegan JF, Rakovich YP, Kelly V, Lesnyak
V, Eychmueller A (2010) Nanoscale Res Lett 5:753
23. Knowles KE, Frederick MT, Tice DB, Morris-Cohen AJ, Weiss EA (2012) J Phys Chem Lett
3:18
24. Amelia M, Credi A (2012) Inorg Chim Acta 381:247
Search WWH ::




Custom Search