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Philippe Blanchard

Researcher at University of Angers

Publications -  77
Citations -  4846

Philippe Blanchard is an academic researcher from University of Angers. The author has contributed to research in topics: Porcine circovirus & Circovirus. The author has an hindex of 34, co-authored 64 publications receiving 4580 citations. Previous affiliations of Philippe Blanchard include University of Rennes & University of Paris-Sud.

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Site-selected thionated benzothioxanthene chromophores as heavy-atom-free small-molecule photosensitizers for photodynamic therapy

TL;DR: In this paper , a rational design synthetic procedure that converts the ultrabright benzothioxanthene imide (BTI) dye into three heavy-atom-free thionated compounds featuring close-to-unit singlet oxygen quantum yields is presented.
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Thiochromenocarbazole Imide: A new organic dye with first utility in large area flexible electroluminescent devices

TL;DR: The N-annulation of a benzothioxanthene imide (BTI) derivative is demonstrated in this article , affording the unprecedented thiochromenocarbazole imide.
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Benzothioxanthene dicarboximide as a tuneable electrogenerated chemiluminescence dye

TL;DR: In this paper , the BTXI moiety was found to be ECL-active in both annihilation and co-reactant mechanisms, and Tri-n-propylamine (TPA) and benzoyl peroxide (BPO) were selected as sacrificial coreactants for promoting ECL.

On the effectiveness of experimenting with C-K theory in design education: Analysis of process methodology, results and main lessons drawn

TL;DR: In this paper, a transdisciplinary design innovation way in educational contexts through workshops implementing a C-K theory-based coevolution between concepts and knowledge spaces is explored. But the workshop participants were not allowed to share their knowledge with each other, and cross-contents swaps brought ruptures in groups' bias and enabled locating and addressing cognitive fixations.
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Effect of Chalcogen Incorporation and Rigidification on the Photovoltaic Properties of Simple Arylamine‐Based D‐π‐A Push‐‐Pull Molecular Systems

TL;DR: In this article , four D-p-A push-pull derivatives based on diphenylmethylamine or a 9-methyl carbazole electron rich block (D), connected to a dicyanovinyl accepting moiety (A) through two different spacers (p), namely a thiophene or selenophene, were synthesized and characterized.