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  4. SINGLE MOLECULE OBSERVATION OF LIVING POLYMERIZATION

SINGLE MOLECULE OBSERVATION OF LIVING POLYMERIZATION

File(s)
Kubo_cornellgrad_0058F_10708.pdf (5.79 MB)
Permanent Link(s)
https://doi.org/10.7298/X4833Q7R
https://hdl.handle.net/1813/59480
Collections
Cornell Theses and Dissertations
Author
Kubo, Kaori
Abstract

In chain-growth polymerization, a chain grows continually to reach thousands of subunits. However, the real-time dynamics of chain growth remains unknown. Using magnetic tweezers, we visualized real-time polymer growth at the single-polymer level. Focusing on ring-opening metathesis polymerization, we found that the extension of a growing polymer under a pulling force does not increase continuously but exhibits wait-and-jump steps. These steps are attributable to the formation and unraveling of conformational entanglements from newly incorporated monomers, whose key features can be recapitulated with molecular dynamics simulations. The configurations of these entanglements appear to play a key role in determining the polymerization rates and the dispersion among individual polymers.

Date Issued
2018-05-30
Keywords
Polymer chemistry
•
magnetic tweezers
•
polymer growth
•
single-molecule
Committee Chair
Chen, Peng
Committee Member
Coates, Geoffrey
Wang, Michelle D.
Degree Discipline
Chemistry and Chemical Biology
Degree Name
Ph. D., Chemistry and Chemical Biology
Degree Level
Doctor of Philosophy
Type
dissertation or thesis

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