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In this work we study a co-oligomer based on fluorenone and thiophene moieties, whose chemical design aimed at a molecule suitable for application as active material in organic field effect transistors.
The work described here resulted in the discovery and design of CA652.g2 human γ1 Fab, a highly stable and potent anti-IL-13 molecule suitable for delivery via inhalation.
This antibody is able to bind to all serogroups of the VEEV complex when used in ELISA and therefore is an excellent candidate for protein engineering in order to derive a humanised molecule suitable for therapeutic use in humans.
An alternate method for observing virion kinetics would be to label the particles with a molecule suitable for imaging.
The present study is devoted to 2,2′:6′,2″-ternaphthalene (NNN), a molecule suitable for preparation of organic light-emitting diodes.
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The results also show that, the range of reactivity index can be used as a suitable property to scale activity of chromophore molecules suitable for the sensing process.
The CF and OF for both molecules are thermally stable and reversibly switchable and have appropriate photoconversion quantum yields [15] which make these molecules suitable for further implementation in the molecular-scaled flexible devices with optically modulated properties [5].
Conversion processes carry out chemical reactions that crack large, high-boiling point hydrocarbon molecules into smaller, lighter molecules suitable for gasoline, jet fuel, diesel fuel, petrochemical feedstocks, and other high-value products.
Chemical substructure-based in silico techniques have been wildly used as an effective and popular approach to reduce the cost in identifying molecules suitable for pharmaceutical development in early stage of drug discovery [28, 29].
The synthetic strategies used in the present work have potential to prepare a large number of compounds for further refinement of structures to obtain molecules suitable for development as antifungal drugs.
The quantitative description of the interactions of uranium with blood serum components is of high relevance for a rational design of molecules suitable for in vivo chelation of uranium.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com