Vat photopolymerization 3D printing provides new opportunities for the fabrication of tissue scaffolds and medical devices. However, for the manufacturing of biodegradable elastomers, it usually requires the use of organic solvents to dissolve the solid photoinitators and achieve low resin viscosity, making this process environmentally unfriendly and not optimal for biomedical applications. Here, we report solvent-free 3D printing of biodegradable elastomers by digital light processing with well-defined photoinitiator–polymer conjugates. Being in liquid state at room temperature, the macrophotoinitiators enabled high-quality 3D printing in the absence of any organic solvents that are usually used in digital light 3D printing. This allowed t...
3D printing technology is changing how objects are designed and manufactured by gradually introducin...
Vat polymerization allows for the accurate and fast fabrication of personalized implants and devices...
Vat photopolymerization 3D printing (3DP) of thermoplastic materials is exceedingly difficult due to...
Vat photopolymerization 3D printing provides new opportunities for the fabrication of tissue scaffol...
Vat photopolymerization 3D printing provides new opportunities for the fabrication of tissue scaffol...
Since the first report of 3D printed biodegradable structures by stereolithography, vat photopolymer...
3D printing has enabled the design of biomaterials into intricate and customized scaffolds. However,...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
In the past decade, the healthcare industry has seen a significant increase in the use of additive m...
The 3D printing of biodegradable elastomers with high mechanical strength is of great interest for p...
The global market for 3D printing materials has grown exponentially in the last decade. Today, photo...
To facilitate the ongoing transition toward a circular economy, the availability of renewable materi...
Digital light processing (DLP) is an accurate and fast additive manufacturing technique to produce a...
In this experimental report, the biocompatibility of elastomeric scaffold structures made via stereo...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
3D printing technology is changing how objects are designed and manufactured by gradually introducin...
Vat polymerization allows for the accurate and fast fabrication of personalized implants and devices...
Vat photopolymerization 3D printing (3DP) of thermoplastic materials is exceedingly difficult due to...
Vat photopolymerization 3D printing provides new opportunities for the fabrication of tissue scaffol...
Vat photopolymerization 3D printing provides new opportunities for the fabrication of tissue scaffol...
Since the first report of 3D printed biodegradable structures by stereolithography, vat photopolymer...
3D printing has enabled the design of biomaterials into intricate and customized scaffolds. However,...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
In the past decade, the healthcare industry has seen a significant increase in the use of additive m...
The 3D printing of biodegradable elastomers with high mechanical strength is of great interest for p...
The global market for 3D printing materials has grown exponentially in the last decade. Today, photo...
To facilitate the ongoing transition toward a circular economy, the availability of renewable materi...
Digital light processing (DLP) is an accurate and fast additive manufacturing technique to produce a...
In this experimental report, the biocompatibility of elastomeric scaffold structures made via stereo...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
3D printing technology is changing how objects are designed and manufactured by gradually introducin...
Vat polymerization allows for the accurate and fast fabrication of personalized implants and devices...
Vat photopolymerization 3D printing (3DP) of thermoplastic materials is exceedingly difficult due to...