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Dylan W. Domaille

Researcher at Colorado School of Mines

Publications -  47
Citations -  5959

Dylan W. Domaille is an academic researcher from Colorado School of Mines. The author has contributed to research in topics: Self-healing hydrogels & Catalysis. The author has an hindex of 21, co-authored 43 publications receiving 5328 citations. Previous affiliations of Dylan W. Domaille include University of California, San Diego & University of California, Berkeley.

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Dynamic and Responsive DNA-like Polymers.

TL;DR: This approach constitutes the first step toward a platform that enables for the routine synthesis of sequence controlled polymers via dynamic template directed synthesis, demonstrated here by depolymerization of the polymers and coalescing of two polymers of different molecular weight or chemical composition.
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High density DNA loading on the M13 bacteriophage provides access to colorimetric and fluorescent protein microarray biosensors.

TL;DR: The synthesis, characterization, and protein sensing capabilities of M13 bacteriophage-DNA bioconjugates were reported, and the dynamic nature of the hydrazone allowed for liberation of DNA from the phage under mild conditions.
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Catalytic Upgrading in Bacteria-Compatible Conditions via a Biocompatible Aldol Condensation.

TL;DR: A systematic study of different organocatalysts that enable aldol condensation in biological media under physiological conditions of neutral pH, moderate temperature, and ambient pressure is presented and it is demonstrated that a biocompatible oil can be used to selectively extract the upgraded products.
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Multicatalytic, Light-Driven Upgrading of Butanol to 2-Ethylhexenal and Hydrogen under Mild Aqueous Conditions

TL;DR: Three disparate types of catalysts synergistically generated C8 products from C4 alcohols under green chemistry conditions of neutral pH, low temperature, and pressure.
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Corrigendum: Synthetic fluorescent sensors for studying the cell biology of metals

TL;DR: In the version of this article initially published, the chemical structures for S3 and RS2 in Figure 6 were incorrect and the error has been corrected in the HTML and PDF versions of the article.