Individual in situ polymerized fluorene chains 10–100 nm long linked by C–C bonds are pulled vertically from an Au(111) substrate by the tip of a low-temperature atomic force microscope. The conformation of the selected chains is imaged before and after manipulation using scanning tunneling microscopy. The measured force gradient shows strong and periodic variations that correspond to the step-by-step detachment of individual fluorene repeat units. These variations persist at constant intensity until the entire polymer is completely removed from the surface. Calculations based on an extended Frenkel–Kontorova model reproduce the periodicity and magnitude of these features and allow us to relate them to the detachment force and desorpt...
A novel approach to analyze the force response of multiple polymer strands, which are bridged betwee...
A novel approach to analyze the force response of multiple polymer strands, which are bridged betwee...
A nano-handling technique based on atomic force microscopy (AFM) is presented that allows reliable m...
Individual in situ polymerized fluorene chains 10–100 nm long linked by C–C bonds are pulled vertica...
Bending and twisting around carbonâEuro"carbon single bonds are ubiquitous in natural and synthetic ...
We have directly measured the entropic elasticity due to the uncoiling of individual polymer chains ...
We have directly measured the entropic elasticity due to the uncoiling of individual polymer chains ...
We have directly measured the entropic elasticity due to the uncoiling of individual polymer chains ...
The adsorption-desorption behaviour of polymer chains is at the heart of macromolecular surface scie...
We present here the measurement of the single-polymer entropic elasticity and the single covalent bo...
cited By 45International audienceAFM-based single molecule force spectroscopy has been applied to st...
The present article offers an overview on the use of atomic force microscopy (AFM) to characterize t...
Dynamic force spectroscopy provides insight into the structure and dynamics of interacting molecules...
The present article offers an overview on the use of atomic force microscopy (AFM) to characterize t...
We consider single chain force measurements to unravel characteristics of polymers at interfaces and...
A novel approach to analyze the force response of multiple polymer strands, which are bridged betwee...
A novel approach to analyze the force response of multiple polymer strands, which are bridged betwee...
A nano-handling technique based on atomic force microscopy (AFM) is presented that allows reliable m...
Individual in situ polymerized fluorene chains 10–100 nm long linked by C–C bonds are pulled vertica...
Bending and twisting around carbonâEuro"carbon single bonds are ubiquitous in natural and synthetic ...
We have directly measured the entropic elasticity due to the uncoiling of individual polymer chains ...
We have directly measured the entropic elasticity due to the uncoiling of individual polymer chains ...
We have directly measured the entropic elasticity due to the uncoiling of individual polymer chains ...
The adsorption-desorption behaviour of polymer chains is at the heart of macromolecular surface scie...
We present here the measurement of the single-polymer entropic elasticity and the single covalent bo...
cited By 45International audienceAFM-based single molecule force spectroscopy has been applied to st...
The present article offers an overview on the use of atomic force microscopy (AFM) to characterize t...
Dynamic force spectroscopy provides insight into the structure and dynamics of interacting molecules...
The present article offers an overview on the use of atomic force microscopy (AFM) to characterize t...
We consider single chain force measurements to unravel characteristics of polymers at interfaces and...
A novel approach to analyze the force response of multiple polymer strands, which are bridged betwee...
A novel approach to analyze the force response of multiple polymer strands, which are bridged betwee...
A nano-handling technique based on atomic force microscopy (AFM) is presented that allows reliable m...