A biorenewable polymer is synthesized via a green process using the RAFT principle for the first time in supercritical CO2 at 300 bar and 80 °C. α-Methylene-γ-butyrolactone polymers of various chain lengths and molecular weights are obtained. The molecular weights vary from 10 000 up to 20 000 with low polydispersity indexes (PDI <1.5). Furthermore, the monomer conversion in supercritical CO2 is substantially higher, respectively 85% for ScCO2 compared to ≈65% for polymerizations conducted in dimethyl formamide (DMF) solvent. Chain extensions are carried out to confirm the livingness of the formed polymers in ScCO2. This opens up future possibilities of the formation of different polymer architectures in ScCO2. The polymers synthesized i...
Chapter 1 The traditional thermal Mannich reaction is unsuitable for preparing polymerizable N-methy...
α-Methylene-γ-butyrolactone (MBL), a naturally occurring and biomass-sourced bifunctional monomer, c...
A family of monomers including 2,5-hexandiol, 2,7-octandiol, 2,5-furandicarboxylic acid (FDCA) , ter...
A biorenewable polymer is synthesized via a green process using the RAFT principle for the first tim...
The search for renewable monomers for radical polymerization techniques is of current interest due t...
This thesis details novel research on the design of new approaches that might lead to a more sustain...
Product degradability, sustainability and low-toxicity are driving demand for the synthesis of bioba...
Product degradability, sustainability and low-toxicity are driving demand for the synthesis of bioba...
Chapter 1 is a general introduction with a description of conventional radical polymerization and re...
We present a novel near ambient temperature approach to telechelic renewable polyesters by exploitin...
In light of fossil fuel depletion and a general necessity for sustainable development, the synthesis...
201 pagesThe design, development, and implementation of sustainable polymers is paramount to the pre...
We demonstrate that useful bio-based amphiphilic polymers can be produced enzymatically at a mild te...
As a result of environmental concerns and the depletion of biomass assets, eco-friendly, renewable b...
Chapter 1 The traditional thermal Mannich reaction is unsuitable for preparing polymerizable N-methy...
α-Methylene-γ-butyrolactone (MBL), a naturally occurring and biomass-sourced bifunctional monomer, c...
A family of monomers including 2,5-hexandiol, 2,7-octandiol, 2,5-furandicarboxylic acid (FDCA) , ter...
A biorenewable polymer is synthesized via a green process using the RAFT principle for the first tim...
The search for renewable monomers for radical polymerization techniques is of current interest due t...
This thesis details novel research on the design of new approaches that might lead to a more sustain...
Product degradability, sustainability and low-toxicity are driving demand for the synthesis of bioba...
Product degradability, sustainability and low-toxicity are driving demand for the synthesis of bioba...
Chapter 1 is a general introduction with a description of conventional radical polymerization and re...
We present a novel near ambient temperature approach to telechelic renewable polyesters by exploitin...
In light of fossil fuel depletion and a general necessity for sustainable development, the synthesis...
201 pagesThe design, development, and implementation of sustainable polymers is paramount to the pre...
We demonstrate that useful bio-based amphiphilic polymers can be produced enzymatically at a mild te...
As a result of environmental concerns and the depletion of biomass assets, eco-friendly, renewable b...
Chapter 1 The traditional thermal Mannich reaction is unsuitable for preparing polymerizable N-methy...
α-Methylene-γ-butyrolactone (MBL), a naturally occurring and biomass-sourced bifunctional monomer, c...
A family of monomers including 2,5-hexandiol, 2,7-octandiol, 2,5-furandicarboxylic acid (FDCA) , ter...