Biological and chemical sensors based on graphene materials
Биологические и химические сенсоры на основе графеновых материалов
2011-12-05
SCID: 54.1/amurpw5q
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electrochemical sensorselectronic sensorsgraphene-based sensorsnanopore sensorsoptical sensors
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Abstract (AI)
Owing to their extraordinary electrical, chemical, optical, mechanical and structural properties, graphene and its derivatives have stimulated exploding interests in their sensor applications ever since the first isolation of free-standing graphene sheets in year 2004. This article critically and comprehensively reviews the emerging graphene-based electrochemical sensors, electronic sensors, optical sensors, and nanopore sensors for biological or chemical detection. We emphasize on the underlying detection (or signal transduction) mechanisms, the unique roles and advantages of the used graphene materials. Properties and preparations of different graphene materials, their functionalizations are also comparatively discussed in view of sensor development. Finally, the perspective and current challenges of graphene sensors are outlined (312 references).
Key Findings
1
Current challenges and future prospects for graphene-based biological and chemical sensors are identified.
2
Different graphene materials, preparation methods, and functionalization strategies are comparatively evaluated for sensor development.
3
Graphene and its derivatives have enabled broad sensor development because of their exceptional electrical, chemical, optical, mechanical, and structural properties.
4
Graphene sensor performance depends on detection and signal-transduction mechanisms, as well as the specific roles and advantages of different graphene materials.
5
The review comprehensively covers graphene-based electrochemical, electronic, optical, and nanopore sensors for biological and chemical detection.
Research Object
graphene materials used in biological and chemical sensors
Research Subject
sensor detection and signal transduction mechanisms, material properties, functionalization, advantages, and development challenges
Publication Details
Publication Date
2011-12-05
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