The functional and responsive properties of elastomeric materials highly depend on crosslink density and molecular weight between crosslinks. However, tedious analytical steps are needed to obtain polymer network structure–property relationships. In this article, an in situ structure–property characterization method is reported by monitoring the structural color change in a photonic elastomeric material. The photonic materials are prepared in a two-step polymerization process. First, linear chain extension occurs via Michael addition. Second, photopolymerization ensures crosslinking, resulting in the formation of an elastomeric photonic network. During the first step, the step-growth polymer process can be monitored by following the photoni...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
Precise manipulation of light-matter interactions has enabled a wide variety of approaches to create...
Herein, a strategy to control conformational changes in grafted polymer brushes via photoinduced cro...
\u3cp\u3eThe functional and responsive properties of elastomeric materials highly depend on crosslin...
The UV intensity during photopolymerization allows control over the structural color of a cholesteri...
The ability of light to remotely control the properties of soft matter materials in a dynamic fashio...
The synthesis and characterization of precision polymeric materials represents a broad research area...
Light-induced curing of photoresists is a well-established technique to fabricate polymer networks w...
We will discuss methodologies that lead to the production of substrates featuring spatial variation ...
A range of color quantification methods are developed and applied to characterize the structural col...
Thesis: Ph. D. in Polymer Science and Technology, Massachusetts Institute of Technology, Department ...
We report a wavelength-selective polymerization process controlled by visible/UV light, whereby a ba...
\u3cp\u3eA new principle is developed to fabricate temperature-responsive, multicolor photonic coati...
This feature article focuses on the highlights in the development of photonic polymer coatings that ...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
Precise manipulation of light-matter interactions has enabled a wide variety of approaches to create...
Herein, a strategy to control conformational changes in grafted polymer brushes via photoinduced cro...
\u3cp\u3eThe functional and responsive properties of elastomeric materials highly depend on crosslin...
The UV intensity during photopolymerization allows control over the structural color of a cholesteri...
The ability of light to remotely control the properties of soft matter materials in a dynamic fashio...
The synthesis and characterization of precision polymeric materials represents a broad research area...
Light-induced curing of photoresists is a well-established technique to fabricate polymer networks w...
We will discuss methodologies that lead to the production of substrates featuring spatial variation ...
A range of color quantification methods are developed and applied to characterize the structural col...
Thesis: Ph. D. in Polymer Science and Technology, Massachusetts Institute of Technology, Department ...
We report a wavelength-selective polymerization process controlled by visible/UV light, whereby a ba...
\u3cp\u3eA new principle is developed to fabricate temperature-responsive, multicolor photonic coati...
This feature article focuses on the highlights in the development of photonic polymer coatings that ...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
Precise manipulation of light-matter interactions has enabled a wide variety of approaches to create...
Herein, a strategy to control conformational changes in grafted polymer brushes via photoinduced cro...