Biochip composition In molecular electronics–style biochips, active sensing layers are commonly constructed from what type of materials integrated with biological frameworks?
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ASemiconducting molecules integrated into protein frameworks
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BPurely conducting metals without any biolayer
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CNonconducting polymers only, without recognition elements
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DAny of the above with equal performance
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EGlass only, without electronics or biochemistry
Answer
Correct Answer: Semiconducting molecules integrated into protein frameworks
Explanation
Introduction / Context:“Biochips” couple biological recognition (proteins, nucleic acids) with microfabricated or molecular electronic substrates (silicon, organic semiconductors). The synergy enables transduction of binding events into measurable electrical or optical signals.
Given Data / Assumptions:
- Functional biochips require both a biorecognition layer and a transduction material.
- Semiconducting materials (inorganic or organic) are widely used for sensitive transduction.
Concept / Approach:Semiconducting layers (for example, organic semiconductors, silicon, conductive oxides) can host immobilized proteins/oligos, forming hybrid interfaces. Charge, field, or photonic changes upon binding are transduced into signals. Pure metals or insulators without biolayers do not provide specificity.
Step-by-Step Solution:
Identify that “biochip” implies biological + chip (electronic/optical).Select the option combining semiconducting materials with protein frameworks, enabling recognition and transduction.Exclude options lacking biorecognition or appropriate transduction.Verification / Alternative check:Field-effect transistor biosensors, organic electrochemical transistors, and silicon photonic biochips all rely on semiconducting transducers with immobilized biomolecules.
Why Other Options Are Wrong:
- Pure metals or nonconducting polymers without recognition layers lack specificity or transduction.
- “Any of the above” ignores the need for matched materials and recognition chemistry.
- Glass alone is a substrate, not an active biochip without electronics/biochemistry.
Common Pitfalls:Confusing generic lab substrates with integrated bioelectronic platforms.
Final Answer:Semiconducting molecules integrated into protein frameworks