- ホーム
- > 洋書
- > 英文書
- > Science / Mathematics
Full Description
Hierarchical Micro/Nanostructured Materials: Fabrication, Properties, and Applications presents the latest fabrication, properties, and applications of hierarchical micro/nanostructured materials in two sections—powders and arrays.
After a general introduction to hierarchical micro/nanostructured materials, the first section begins with a detailed discussion of the methods of mass production for hierarchical micro/nanostructured powders, including structure-directed solvothermal routes, template-etching strategies, and electrospinning technologies. It then proceeds to address structurally enhanced adsorption and photocatalytic performances.
The second section describes strategies for the fabrication of hierarchical micro/nanostructured object arrays and their devices, such as modified colloidal lithographies-based solution and electrodeposition. It also examines the structure-dependent properties and performances of the micro/nanostructured arrays, including surface wettability, optical properties, surface-enhanced Raman scattering (SERS) effects, and gas-sensing performances.
In its cutting-edge coverage, Hierarchical Micro/Nanostructured Materials: Fabrication, Properties, and Applications explores the use of hierarchical micro/nanostructured materials in environmental remediation and detection devices, commenting on future trends and applications in catalysis, integrated nanophotonics, optical devices, super-high density storage media, sensors, nanobiotechnology, SERS substrates, and more.
Contents
General Introduction. Section I: Hierarchical Micro/Nanostructured Powders. Solvothermal Routes. Template-Etching Strategies. Electrospinning and In Situ Conversion. Structurally Enhanced Photocatalysis Properties. Structurally Enhanced Adsorption Performances for Environment. Section II: Hierarchical Micro/Nanostructured Arrays. Micro/Nanostructured Block-Built Arrays. Micro/Nanostructured Ordered Porous Arrays. Surface Wettability and Self-Cleaning Properties. Optical Properties and Devices. Gas-Sensing Devices and Structurally Enhanced Gas-Sensing Performances. Surface-Enhanced Raman Scattering Performances and Detection Applications.