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Nano compound In area of nanotechnology, noble Boron Nitride nano particles (NPs) have played an important role in development of new bio sensors and/or in the enhancement of existing bio sensing techniques to fulfill the demand for more specific and highly sensitive bio molecular diagnostics. The unique physicochemical properties of such metals at the nano scale have led to the development of a wide variety of biosensors, such as: (i) nano biosensors for point of care disease diagnosis, (ii) nano probes for in vivo sensing/imaging, cell tracking and monitoring disease pathogenesis or therapy monitoring and (iii) other nanotechnology-based tools that benefit scientific research on basic biology. In fact, Nano Compound are, in general, one of the most common nanotechnology-based approaches for developing biosensors, due to their simplicity, physic-chemical malleability and high surface areas.
Nano compound on their size and composition we can observe peculiar properties, such as quantum confinement in semiconductor nanocrystals, surface Plasmon resonance in some metal NPs and super para magnetism in magnetic materials. Noble metal NPs, in particular gold and silver NPs, are among the most extensively studied Nanomaterials and have led to the development of numerous techniques and methods for molecular diagnostics, imaging, drug delivery and the rapeutics. Most of their unique physicochemical properties at the nanoscale, such as Localized Surface Plasmon Resonance (LSPR), have been explored for the development of new biosensors. This review will focus on these unique physicochemical properties of noble metal NPs that have thus far been explored for the development of new highly sensitive and specific bio sensing techniques, favouring those that have already been successfully tested with biological samples.
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