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Pyrene Excimer Formation: A Tool to Study Macromolecular Conformations in Solution
Sanjay Rajnikant Patel ; University of Waterloo,2024.
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Abstract: The current view for fluorescence collisional quenching (FCQ) experiments is that no quantitative information can be retrieved from macromolecules containing more than a single dye-quencher pair attached at two specific positions on a macromolecule. This holds true for pyrene excimer formation (PEF), a well-established FCQ phenomenon, where an excimer is produced through the encounter between an excited and a ground-state pyrenyl labels attached onto a macromolecule. In contrast, recent studies suggest that the analysis of fluorescence decays acquired with macromolecules containing many pyrenyl labels with the model free analysis (MFA) and florescence blob model (FBM) yields quantitative information about the internal dynamics and local density of macromolecules in solution. The underlying physical principle enabling the MFA and FBM to probe macromolecules in this manner is based on the direct relationship existing between the average rate constant (
Purchased from AmBeed: 3903-40-0
CAS No. : | 3903-40-0 | MDL No. : | MFCD00053323 |
Formula : | C13H24O4 | Boiling Point : | - |
Linear Structure Formula : | - | InChI Key : | REGGDLIBDASKGE-UHFFFAOYSA-N |
M.W : | 244.33 | Pubchem ID : | 231998 |
Synonyms : |
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Chemical Name : | 12-Methoxy-12-oxododecanoic acid |
Signal Word: | Warning | Class: | N/A |
Precautionary Statements: | P261-P305+P351+P338 | UN#: | N/A |
Hazard Statements: | H302-H315-H319-H335 | Packing Group: | N/A |
GHS Pictogram: |
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