Identification of a Biosynthetic Gene Cluster for the Production of the Blue-Green Pigment Xylindein by the Fungus <i>Chlorociboria aeruginascens</i>. [PDF]
Xylindein is a blue-green pigment produced by the fungi Chlorociboria aeruginascens and Chlorociboria aeruginosa. Its stunning color and optoelectronic properties make xylindein valuable for textiles and as a natural semiconductor material. However, producing xylindein from culture broths remains challenging because of the slow growth of the ...
Guo Y +11 more
europepmc +7 more sources
Det blågröna pigmentet xylindein som produceras av svampar i släktet Chlorociboria har det senaste decenniet fått mer uppmärksamhet i och med pigmentets potential att ersätta syntetiska pigment. Syntetiska pigment som släpps ut i naturen har visat sig ha cancerogena, mutagena och ekotoxiska effekter på levande organismer vilket gjort att efterfrågan ...
Selinder, Amanda
core +5 more sources
Blueprints of Blue From evolutionary origins to biosynthetic pathway engineering: exploring the sustainable production of the fungal cyan pigment xylindein [PDF]
PhD thesis, submitted to the university of Groningen to obtain the degree of PhD of the University of Groningen on the authority of the Rector Magnificus Prof. J.M.A. Scherpen and in accordance with the decision by the College of Deans. Propositions (by the author, who has actively participated in Mycobiomics) 01. Beyond its potential as a natural
Guo, Yanfang; id_orcid
openaire +3 more sources
ロクショウグサレキン(Chlorociboria aeruginosa complex)由来の色素(Xylindein)の抽出とその生理学的特性 [PDF]
Xylindein (XL) was effectively extracted from wood rotted by Chlorociboria aeruginosa complex using a hot-compressed-water; in particular, with aqueous NaOH solution. The blue color of XL became red by ultraviolet irradiation, while XL was blue. It was estimated that the phenolic hydroxyl groups of XL were acylated by ultraviolet irradiation, because ...
前田, みずき +17 more
core +3 more sources
(Opto)electronic Properties of Xylindein and Organic (Opto)electronic Devices [PDF]
Organic semiconductors are of interest for (opto)electronic applications due to their low cost, solution processability, and tunable properties. Natural product-derived organic pigments have attracted attention due to their extraordinary environmental ...
Giesbers, Gregory J.
core +6 more sources
Edible Electronics: The Vision and the Challenge
Conceiving electronics through the prism of the fridge content appears to be an exotic exercise, but it is appealing for the development of a ground‐breaking edible technological platform, able to change the paradigm in healthcare and environmental sustainability.
Alina S. Sharova +4 more
wiley +1 more source
Exploring the Optical and Electronic Properties of Xylindein, a Fungus-Derived Pigment, as a Sustainable Organic Semiconductor [PDF]
Xylindein is an organic pigment derived from Chlorociboria aeruginascens and C. aeruginosa fungi that has shown promise as an organic semiconductor. Preliminary estimates of charge carrier mobilities (CCMs) on the order of 0.1 cm2/Vs were calculated from
Quinn, Alexander
core +6 more sources
Optimization of Extracted Xylindein from Chlorociboria aeruginascens
The fungal pigment xylindein, extracted from species of the Chlorociboria genus, has a long history of use in the arts, and is of growing interest to material scientists as a component in photovoltaic cells, textile dyes, and semiconductors.
Duggan, Padraic
core +5 more sources
Organic Semiconductors : Incorporating Xylindein into (Opto)Electronic Devices [PDF]
This research investigates the electronic properties of a fungi-derived pigment, xylindein as a novel sustainable material for organic electronics. Xylindein molecules were characterized in solution and in film. Absorption spectra and (photo)luminescence
Rath, Jeremy J.
core +6 more sources

