covers defect engineering and physical properties of black phosphorous;
describes different strategies for the development of 2D nanostructures of BP with other species such as polymers, organic molecules, and other inorganic materials;
offers a comparative study of 3D BP structures with other 3D architectures such as dichalcogenides (TMDs, graphene, and boron nitride); and
discusses in detail applications of 3D macrostructures of BP in various fields such as energy, biomedical, and catalysis.
This is an essential reference for researchers and advanced students in materials science and chemical, optoelectronic, and electrical engineering.
covers defect engineering and physical properties of black phosphorous;
describes different strategies for the development of 2D nanostructures of BP with other species such as polymers, organic molecules, and other inorganic materials;
offers a comparative study of 3D BP structures with other 3D architectures such as dichalcogenides (TMDs, graphene, and boron nitride); and
discusses in detail applications of 3D macrostructures of BP in various fields such as energy, biomedical, and catalysis.
This is an essential reference for researchers and advanced students in materials science and chemical, optoelectronic, and electrical engineering.
![Semiconducting Black Phosphorus: From 2D Nanomaterial to Emerging 3D Architecture](http://img.images-bn.com/static/redesign/srcs/images/grey-box.png?v11.10.4)
Semiconducting Black Phosphorus: From 2D Nanomaterial to Emerging 3D Architecture
216![Semiconducting Black Phosphorus: From 2D Nanomaterial to Emerging 3D Architecture](http://img.images-bn.com/static/redesign/srcs/images/grey-box.png?v11.10.4)
Semiconducting Black Phosphorus: From 2D Nanomaterial to Emerging 3D Architecture
216Product Details
ISBN-13: | 9781032067636 |
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Publisher: | CRC Press |
Publication date: | 10/25/2021 |
Series: | Emerging Materials and Technologies |
Pages: | 216 |
Product dimensions: | 6.12(w) x 9.19(h) x (d) |