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Optimization through enhanced efficiency

The covalent attachment of electron transfer mediators to siloxane or ethylene oxide polymers produces highly efficient relay systems for use in amperometric sensors based on flavin-containing oxidases. It is clear from the response curves that the biosensors can be optimized through systematic changes in the polymeric backbone. The results discussed above, as well as those described previously (25-32), show that the mediating ability of these flexible polymers is quite general and that it is possible to systematically tailor these systems in order to enhance this mediating ability. [Pg.129]

From this relationship it follows that thin-layer efficiency (plate number N) and composition of mobile phases (monitored through K2lK and Rj) can be optimized separately. Enhancement of thin-layer performance in terms of raising N will be the subject of Section VI, while the approaches aiming to optimize the composition of mobile phases will be discussed below. [Pg.70]


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See also in sourсe #XX -- [ Pg.12 ]




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