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On page 911, G. Palazzo and co‐workers show how electrolyte gated organic field‐effect transistor (EGOFET) biosensors, can successfully detect, in highly concentrated salt solutions, binding occurring at distances from the transistor electronic channel that are much larger than the Debye length. The sensing mechanism is mainly capacitive and is due to the formation of Donnan's equilibria within the...
Electrolyte‐gated organic field‐effect transistors are successfully used as biosensors to detect binding events occurring at distances from the transistor electronic channel that are much larger than the Debye length in highly concentrated solutions. The sensing mechanism is mainly capacitive and is due to the formation of Donnan's equilibria within the protein layer, leading to an extra capacitance...
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