Superhydrophobicity of Surfaces Dressed by Electrospun Fibers Superhydrophobicity of Surfaces Dressed by Electrospun Fibers
Synthesis Lectures on Green Energy and Technology

Superhydrophobicity of Surfaces Dressed by Electrospun Fibers

    • USD 139.99
    • USD 139.99

Descripción editorial

This book provides insights into the wetting behavior on fiber-dressed surfaces and guidelines for developing superhydrophobicity based on electrospinning. In developing superhydrophobicity, electrospinning possesses the following advantages over other fabrication techniques. First, the electrospun micro- and nanofibers, which may also featured with secondary fiber morphology, provide sufficient surface roughness for superhydrophobicity. Second, electrospinning is considered an additive manufacturing technique, so the surfaces to be modified are not destroyed for superhydrophobicity. Third, the introduced electrospun structure is featured with high porosity with inter-fiber pores, allowing for a high vapor transmission rate, which is necessary in many applications such as wound dressing, gas sensor.However, books focused on developing superhydrophobicity using electrospinning are rarely found. Electrospinning is only introduced as one section in most superhydrophobicity-related books, and the mechanism of superhydrophobicity by different electrospinning-based methods lacks detailed explanation.

GÉNERO
Técnicos y profesionales
PUBLICADO
2024
31 de marzo
IDIOMA
EN
Inglés
EXTENSIÓN
117
Páginas
EDITORIAL
Springer Nature Switzerland
VENDEDOR
Springer Nature B.V.
TAMAÑO
19.5
MB
Social Development and Social Changes in China Social Development and Social Changes in China
2024
Cameras and Display Systems Towards Photorealistic 3D Holography Cameras and Display Systems Towards Photorealistic 3D Holography
2023
Crossing the Himalayas Crossing the Himalayas
2021
Smart Wireless Sensing Smart Wireless Sensing
2021
Atlas of Thoracoscopic-lapacoscopic Esophagectomy Atlas of Thoracoscopic-lapacoscopic Esophagectomy
2018
Advancing Health and Wellbeing in the Changing Urban Environment Advancing Health and Wellbeing in the Changing Urban Environment
2017
Modulation Strategies of Cu-based Electrocatalysts for Enhancing Electrocatalytic CO2 Conversion Modulation Strategies of Cu-based Electrocatalysts for Enhancing Electrocatalytic CO2 Conversion
2025
Electrospun Nanofibrous Separator for Enhancing Capacity of Lithium-ion Batteries Electrospun Nanofibrous Separator for Enhancing Capacity of Lithium-ion Batteries
2024