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"With this first modern voucher of the kingfisher, the only adult male, we now have a comprehensive set of material for molecular, morphological, toxicological, and plumage studies that are unavailable from blood samples, individual feathers, or photographs.
The chemistry of carbon is well known, which makes graphene a useful material for molecular attachment and functionalization.
In this paper, nanocrystalline graphite (or nanographite) has been evaluated as a membrane material for molecular sieving of helium and hydrogen from larger gas constituents.
Such information can be helpful to predict potential usefulness of existing FFPE material for molecular studies, and perhaps also for optimization of sample management for the future.
The large archives of formalin-fixed paraffin-embedded (FFPE) tissue specimens that exist are a highly valuable source of sample material for molecular biological analysis, including gene expression profiling.
Paraffin-embedded tissues are an invaluable source of material for molecular investigations.
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Self-assembled monolayers (SAMs) are highly promising materials for molecular engineering of electronic and spintronics devices thanks to their surface functionalization properties.
Using mesoporous materials for molecular imprinting is an effective approach to overcome this barrier and to remove the limitations of the traditional molecularly imprinted polymers which include incomplete template removal, small binding capacity, slow mass transfer, and irregular materials shape.
The lack of readily available, patient-derived materials for molecular genetic testing of many heterozygous or rare disorders creates a major impediment for laboratory proficiency and quality control procedures.
Some catalytic applications of calixarenes are also presented in conjunction with self-assembly phenomena, both in solution and in the solid state, which have led to self-assembled capsules and to new materials for molecular storage.
The spectroelectrochemical characterization of the supermolecular porphyrin in solution (−2.6 to 2.3 V) revealed 11 redox processes involving up to 26 electrons, allowing further applications of the thin films as multi electron-transfer catalysts and active materials for molecular devices.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com