Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Aerogels for Biomedical, Energy and Sensing Applications

View through CrossRef
The term aerogel is used for unique solid-state structures composed of three-dimensional (3D) interconnected networks filled with a huge amount of air. These air-filled pores enhance the physicochemical properties and the structural characteristics in macroscale as well as integrate typical characteristics of aerogels, e.g., low density, high porosity and some specific properties of their constituents. These characteristics equip aerogels for highly sensitive and highly selective sensing and energy materials, e.g., biosensors, gas sensors, pressure and strain sensors, supercapacitors, catalysts and ion batteries, etc. In recent years, considerable research efforts are devoted towards the applications of aerogels and promising results have been achieved and reported. In this thematic issue, ground-breaking and recent advances in the field of biomedical, energy and sensing are presented and discussed in detail. In addition, some other perspectives and recent challenges for the synthesis of high performance and low-cost aerogels and their applications are also summarized.
Title: Aerogels for Biomedical, Energy and Sensing Applications
Description:
The term aerogel is used for unique solid-state structures composed of three-dimensional (3D) interconnected networks filled with a huge amount of air.
These air-filled pores enhance the physicochemical properties and the structural characteristics in macroscale as well as integrate typical characteristics of aerogels, e.
g.
, low density, high porosity and some specific properties of their constituents.
These characteristics equip aerogels for highly sensitive and highly selective sensing and energy materials, e.
g.
, biosensors, gas sensors, pressure and strain sensors, supercapacitors, catalysts and ion batteries, etc.
In recent years, considerable research efforts are devoted towards the applications of aerogels and promising results have been achieved and reported.
In this thematic issue, ground-breaking and recent advances in the field of biomedical, energy and sensing are presented and discussed in detail.
In addition, some other perspectives and recent challenges for the synthesis of high performance and low-cost aerogels and their applications are also summarized.

Related Results

Recent Progress in Cellulose-Based Aerogels for Sustainable Oil–Water Separation Technologies
Recent Progress in Cellulose-Based Aerogels for Sustainable Oil–Water Separation Technologies
Polymer-based aerogels have recently received considerable research attention as a favorable option for oil–water separation due to their enhanced porous 3D structure with great sp...
Aerogels and Their Composites for Sensing Applications
Aerogels and Their Composites for Sensing Applications
Aerogels have garnered significant attention in recent years owing to their unique properties, such as ultra-low density, high surface area, and excellent thermal insulation. These...
Structure and Photocatalytic Properties of Ni-, Co-, Cu-, and Fe-Doped TiO2 Aerogels
Structure and Photocatalytic Properties of Ni-, Co-, Cu-, and Fe-Doped TiO2 Aerogels
TiO2 aerogels doped with Ni, Co, Cu, and Fe were prepared, and their structure and photocatalytic activity during the decomposition of a model pollutant, acid orange (AO7), were st...
Application of Aerogels in Acoustic and Thermal Insulation
Application of Aerogels in Acoustic and Thermal Insulation
Aerogels, renowned for their low density and high porosity, have garnered significant attention in the realm of acoustic and thermal insulation due to their exceptional properties....
Biomedical Applications of Aerogel
Biomedical Applications of Aerogel
Aerogels have garnered significant attention in biomedical applications due to their unique properties. This review explores three key areas: biosensing, imaging, and bone regenera...
Novel 3-D hierarchical multiconfiguration graphene/polyaniline-based aerogels with directed higher performances
Novel 3-D hierarchical multiconfiguration graphene/polyaniline-based aerogels with directed higher performances
Novel three-dimensional (3-D) hierarchical multiconfiguration graphene/polyaniline-based aerogels were synthesized via in situ polymerization and directed freeze-drying method. The...
Electrocatalyzing Oxygen Evolution Reaction with Nifeooh Aerogels
Electrocatalyzing Oxygen Evolution Reaction with Nifeooh Aerogels
Increasing the production capacity of electrical energy to fulfill the continuously rising global demand, while simultaneously trying to avoid greenhouse gas emissions in the proce...
Physicochemical Properties and Types of Aerogels
Physicochemical Properties and Types of Aerogels
Aerogels are a class of materials known for their exceptional physical properties, characterized by their high porosity and low density. They are composed of a network of interconn...

Back to Top