Covalent macromolecules tend to fragment under mechanical stress through the mechanochemical scission of covalent bonds in the backbone. However, linear polymers that have been intramolecularly collapsed by covalent bonds show greater mechanochemical stability compared to other thermoplastics. Here, rhodium-π bonds are used for intramolecular collapse in order to show that mechanical stress can be removed from the polymer backbone and focused on weaker intramolecular cross-links, leading to polymer unfolding instead of mechanochemical events at the backbone. Moreover, given rhodium-π bonds form spontaneously, by changing the time interval between ultrasound pulses, we demonstrate that entropic spring effects can lead to polymer refolding an...
Mechanochemistry is a burgeoning field of materials science. Inspired by nature, many scientists ha...
Large or repeated mechanical loads usually degrade polymers by accelerating fragmentation of their b...
Breaking up and making up: The ultrasonic cleavage of high-molecular-weight linear coordination poly...
ABSTRACT: Covalent mechanochemistry within bulk polymers typically occurs with irreversible deformat...
The past 10 years have seen a resurgence of interest in the field of polymer mechanochemistry. Whils...
Covalent mechanochemistry within bulk polymers typically occurs with irreversible deformation of the...
Mechanochemical transduction enables an extraordinary range of physiological processes such as the s...
<p>Mechanically induced chemical bond scission underlies the fracture and macroscopic failure of pol...
The transduction of mechanical force into useful chemical reactions is an emerging design approach t...
The mechanical strength of scissile chemical bonds plays a role in material failure and in the mecha...
Mechanochemistry refers to chemical reactions that are induced by the direct absorption of mechanica...
The fracture of rubbery polymer networks involves a series of molecular events, beginning with confo...
<p>The mechanical forces typical of daily life have the potential to induce dramatic reactivity at t...
Mechanochemical scission of supramolecular polymer complexes by ultrasound is investigated using vis...
We describe studies in mechanochemical transduction that probe the activation of bonds orthogonal to...
Mechanochemistry is a burgeoning field of materials science. Inspired by nature, many scientists ha...
Large or repeated mechanical loads usually degrade polymers by accelerating fragmentation of their b...
Breaking up and making up: The ultrasonic cleavage of high-molecular-weight linear coordination poly...
ABSTRACT: Covalent mechanochemistry within bulk polymers typically occurs with irreversible deformat...
The past 10 years have seen a resurgence of interest in the field of polymer mechanochemistry. Whils...
Covalent mechanochemistry within bulk polymers typically occurs with irreversible deformation of the...
Mechanochemical transduction enables an extraordinary range of physiological processes such as the s...
<p>Mechanically induced chemical bond scission underlies the fracture and macroscopic failure of pol...
The transduction of mechanical force into useful chemical reactions is an emerging design approach t...
The mechanical strength of scissile chemical bonds plays a role in material failure and in the mecha...
Mechanochemistry refers to chemical reactions that are induced by the direct absorption of mechanica...
The fracture of rubbery polymer networks involves a series of molecular events, beginning with confo...
<p>The mechanical forces typical of daily life have the potential to induce dramatic reactivity at t...
Mechanochemical scission of supramolecular polymer complexes by ultrasound is investigated using vis...
We describe studies in mechanochemical transduction that probe the activation of bonds orthogonal to...
Mechanochemistry is a burgeoning field of materials science. Inspired by nature, many scientists ha...
Large or repeated mechanical loads usually degrade polymers by accelerating fragmentation of their b...
Breaking up and making up: The ultrasonic cleavage of high-molecular-weight linear coordination poly...