A simple, inexpensive, and scalable method is developed to produce cobalt-nanoparticles-encapsulated nitrogen-doped carbon nanotubes (Co-N-CNTs) as bifunctional air electrodes for Zn–air batteries.
A simple, inexpensive, and scalable method is developed to produce cobalt-nanoparticles-encapsulated nitrogen-doped carbon nanotubes (Co-N-CNTs) as bifunctional air electrodes for Zn–air batteries.
Fats and oils derived from plants, microorganisms and animals are an excellent feedstock for the “green” and renewable chemical industry.
A novel reactive oxygen species (ROS)-promoted nanomedicine platform can effectively inhibit tumor growth, reduce side effects experienced in common anticancer drugs, while promote on-target uptake.
Tuo Jin and colleagues from Shanghai Jiao Tong University synthesize a synthetic carrier system for small interfering RNA (siRNA) with customizable size, pH-responsive degradability, and optimized surface population of cell-targeting agent.
A simple, robust, and versatile way of molding all-liquid objects with potential applications in materials and life sciences.
Science fact catches up with science fiction: by exploiting magnetic levitation, biomanufacturing – creating living 3D structures – is now possible in zero gravity. Utkan Demirci discusses how this works.
Multifunctional gadolinium-doped titania nanoparticles perform combined diagnostics and treament without compromising the advantages of their components.
Complex micro and nanodevices are fabricated using a simple strategy that enables sophisticated architectures to be produced.
A team of researchers develop a unique molding process for generating all-liquid structures via interfacial jamming of cellulose nanocrystal (CNC) surfactants. The structures have long-term stability and can adapt or respond to external stimuli, allowing for potential applications in encapsulation, sensors, and liquid electronic devices.
Latest Advanced Healthcare Materials covers.