Publication | Open Access
DNA Sensors with Diamond as a Promising Alternative Transducer Material
56
Citations
39
References
2009
Year
EngineeringBioelectrochemistryBiomedical EngineeringBiosensorsDna NanotechnologyBiosensing SystemsBiochemical EngineeringInstrumentationNanosensorBioelectrochemical SystemDna ComputingBiophysicsDna ReplicationTowards DiamondElectrochemical BiosensorsDna SensorsBioreceptor MoleculesBiomolecular EngineeringElectrochemistrySensorsBioelectronicsTransducer PrincipleBiotechnologySynthetic BiologySensor DesignElectroanalytical Sensor
Bio-electronics is a scientific field coupling the achievements in biology with electronics to obtain higher sensitivity, specificity and speed. Biosensors have played a pivotal role, and many have become established in the clinical and scientific world. They need to be sensitive, specific, fast and cheap. Electrochemical biosensors are most frequently cited in literature, often in the context of DNA sensing and mutation analysis. However, many popular electrochemical transduction materials, such as silicon, are susceptible to hydrolysis, leading to loss of bioreceptor molecules from the surface. Hence, increased attention has been shifted towards diamond, which surpasses silicon on many levels.
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