Electronic spectroscopy is a complementary tool for studying the degree of aromatic content of certain molecules.
Other products ranged from aromatic woods and rattans through to a range of ancillary medical and culinary products.
To achieve this with the same fluorochrome moiety, different carrier structures were generated using conjugated aromatic rings.
It is shown that the best match with the reference spectrum is achieved by highly aromatic petroleum fractions having also a kerogenic nature.
Bases are bound within this channel by means of aromatic stacking interactions.
This means that the products may cyclize, condense together forming small amounts of aromatic compounds.
The presence of a glycine in this pocket dictates binding of large aromatic or aliphatic residues.
Other weaker spectral features are assignable to aromatic ring modes and proteins.
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