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Encapsulation of Volatile Hydrocarb
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Encapsulation of Volatile Hydrocarb
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Encapsulation of Volatile Hydrocarb
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Encapsulation of Volatile Hydrocarb
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Encapsulation of Volatile Hydrocarb
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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CHAPTER 3 Analyte Sensing in the Co
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Experimental Section CHAPTER 4 74
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Experimental Section CHAPTER 4 For
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Experimental Section CHAPTER 4 4.2.
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Experimental Section CHAPTER 4 repo
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CHAPTER 5 What’s next? 82
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CHAPTER 5 What’s next? efficient
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CHAPTER 5 What’s next? its very h
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CHAPTER 5 What’s next? Dapoxyl to
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CHAPTER 5 What’s next? is in exce
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CHAPTER 5 What’s next? Figure 5.2
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CHAPTER 5 What’s next? Figure 5.2
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References 96
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References [32] S. M. Liu, P. Y. Za
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References [92] C. Márquez, W. M.
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References [151] K. M. Dorgan, W. L
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References [196] J. A. Adams, Chem.
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106
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108
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Introduction Proteases constitute a
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However, the introduction of two di
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We used a 67 mM phosphate buffer fo
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designed according to known recogni
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peptide, because the fluorescence i
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originally become popular in the mi
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Fig. 3: Comparison of the fluoresce
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observed for other FRET substrates
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iopolymers: An exploratory study wi
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[57] J.-H. Zhang, T.D.Y. Chung, K.R
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Table 1: Pseudo-first order rate co
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APPENDIX 2 Reprinted with permissio
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REVISED Single-Label Kinase and Pho
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efficient intrachain collision-indu
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Time-Resolved Fluorescence Spectros
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The fluorescence lifetimes of Tyr v
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esponsible for the ATP and GTP depl
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Table 2. Fluorescence lifetimes a o
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a) 0 10 20 5 I 3 1 0 100 200 300 t
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studies in the area of biopolymer d
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phosphatase assay, the fluorescence
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a) 4 Nano-TRF 3 steady-state I 2 b)
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References † Jacobs University.
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(57) Nau, W. M. J. Am. Chem. Soc. 1
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APPENDIX 3 W. M. Nau, M. Florea, H.
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Titel: Nano-TRF und Tandem Assays f
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werden kann. So konnte z.B. gezeigt
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- Abb. 6 hier einfügen - Das angef
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• label-frei - keine kovalente Bi
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(4) Karvinen J, Laitala V, Mäkinen
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Tabellen Tabelle 1: Fluoreszenzlebe
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Abb. 3: Prinzip eines Nano-TRF-Assa
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Abb. 5: Vergleich der Substrat/Prod
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Abb. 7: Detektionsprinzip von Tande
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Abb. 9: Multiparameterassay von ver
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APPENDIX 4 M. Florea and W. M. Nau,
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PAPER www.rsc.org/obc | Organic & B
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Table 1 Binding constants of 1 and
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Fig. 4 Evolution of normalized fluo
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8V.Král,A.AndrievskyandJ.L.Sessler
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APPENDIX 5 W. M. Nau, M. Florea, K.
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Review DOI: 10.1002/ijch.200((full
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The Inner Cavity of Cucurbiturils l
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The Inner Cavity of Cucurbiturils b
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The Inner Cavity of Cucurbiturils s
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The Inner Cavity of Cucurbiturils n
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The Inner Cavity of Cucurbiturils 5
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The Inner Cavity of Cucurbiturils
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The Inner Cavity of Cucurbiturils [
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The Inner Cavity of Cucurbiturils f
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APPENDIX 6 M. Florea and W. M. Nau,
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Gas Binding DOI: 10.1002/anie.200((
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61%, in good agreement with Rebek´
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Gas Binding Mara Florea and Werner
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CURRICULUM VITAE 221
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Mara Florea Jacobs University Breme
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Memberships 2008 - to date Member o