Conventional thermosets are built by nonrenewable fossil resources and are arduous to be reprocessed, recycled, and reshaped due to their permanent covalent cross-linking, and their flammability makes them unsafe during use. Here, for the first time, we synthesized a novel Schiff base precursor from abundant and renewable lignin derivative vanillin and produced malleable thermosets (Schiff base covalent adaptable networks (CANs)) combining high performance, super-rapid reprocessability, excellent monomer recovery, and arbitrary permanent shape changeability as well as outstanding fire resistance. The Schiff base CANs exhibited high glass transition temperatures of ∼178 °C, tensile strength of ∼69 MPa, tensile modulus of ∼1925 MPa, excellent...
Covalent adaptable networks (CANs) provide a promising approach to solve the issue of recycling ther...
Epoxy thermoset represents one of the most versatile thermosetting materials that has been used as c...
The need for renewable alternatives for fossil-based aromatic material constituents is evident for a...
Conventional thermosets are built by nonrenewable fossil resources and are arduous to be reprocessed...
Dynamic covalent polymers (DCPs) have attracted extensive attention as they integrate the advantages...
Readily recyclable, high-performance thermosetting materials based on a lignin-derived spiro diaceta...
This thesis aims to address the growing demand for sustainable materials by developing novel reversi...
In this study, dynamic imine covalent bonds were introduced into vanillin-based vitrimers networks, ...
Traditional thermoset materials have favorable material properties but are unable to reprocess and a...
A broad spectrum of applications of “Salen”-based Schiff bases tagged them as versatile multifunctio...
Epoxy thermosets play a significant role in our life, while they have three common issues of dependi...
Nitrogen-based thermoset polymers have many industrial applications (for example, in composites), bu...
A carboxylic acid functional trimer made from the reaction of isosorbide with maleic anhydride was u...
Since the advent of synthetic polymers over a century ago, polymer science and technology developmen...
The finite petroleum resources and increasing polymer waste have given rise to concerns associated w...
Covalent adaptable networks (CANs) provide a promising approach to solve the issue of recycling ther...
Epoxy thermoset represents one of the most versatile thermosetting materials that has been used as c...
The need for renewable alternatives for fossil-based aromatic material constituents is evident for a...
Conventional thermosets are built by nonrenewable fossil resources and are arduous to be reprocessed...
Dynamic covalent polymers (DCPs) have attracted extensive attention as they integrate the advantages...
Readily recyclable, high-performance thermosetting materials based on a lignin-derived spiro diaceta...
This thesis aims to address the growing demand for sustainable materials by developing novel reversi...
In this study, dynamic imine covalent bonds were introduced into vanillin-based vitrimers networks, ...
Traditional thermoset materials have favorable material properties but are unable to reprocess and a...
A broad spectrum of applications of “Salen”-based Schiff bases tagged them as versatile multifunctio...
Epoxy thermosets play a significant role in our life, while they have three common issues of dependi...
Nitrogen-based thermoset polymers have many industrial applications (for example, in composites), bu...
A carboxylic acid functional trimer made from the reaction of isosorbide with maleic anhydride was u...
Since the advent of synthetic polymers over a century ago, polymer science and technology developmen...
The finite petroleum resources and increasing polymer waste have given rise to concerns associated w...
Covalent adaptable networks (CANs) provide a promising approach to solve the issue of recycling ther...
Epoxy thermoset represents one of the most versatile thermosetting materials that has been used as c...
The need for renewable alternatives for fossil-based aromatic material constituents is evident for a...