Recent Progress in Fabrication and Application of BN Nanostructures and BN-Based Nanohybrids.
Dmitry V ShtanskyAndrei T MatveevElizaveta S PermyakovaDenis V LeyboAnton S KonopatskyPavel B SorokinPublished in: Nanomaterials (Basel, Switzerland) (2022)
Due to its unique physical, chemical, and mechanical properties, such as a low specific density, large specific surface area, excellent thermal stability, oxidation resistance, low friction, good dispersion stability, enhanced adsorbing capacity, large interlayer shear force, and wide bandgap, hexagonal boron nitride ( h -BN) nanostructures are of great interest in many fields. These include, but are not limited to, (i) heterogeneous catalysts, (ii) promising nanocarriers for targeted drug delivery to tumor cells and nanoparticles containing therapeutic agents to fight bacterial and fungal infections, (iii) reinforcing phases in metal, ceramics, and polymer matrix composites, (iv) additives to liquid lubricants, (v) substrates for surface enhanced Raman spectroscopy, (vi) agents for boron neutron capture therapy, (vii) water purifiers, (viii) gas and biological sensors, and (ix) quantum dots, single photon emitters, and heterostructures for electronic, plasmonic, optical, optoelectronic, semiconductor, and magnetic devices. All of these areas are developing rapidly. Thus, the goal of this review is to analyze the critical mass of knowledge and the current state-of-the-art in the field of BN-based nanomaterial fabrication and application based on their amazing properties.
Keyphrases
- drug delivery
- raman spectroscopy
- quantum dots
- room temperature
- cancer therapy
- reduced graphene oxide
- low cost
- ionic liquid
- single molecule
- visible light
- healthcare
- high resolution
- mental health
- drug release
- tissue engineering
- highly efficient
- high speed
- bone marrow
- transition metal
- electron transfer
- simultaneous determination