Silica nanocapsules have attracted tremendous interest for encapsulation, protection, and controlled release of various cargoes due to their unique hierarchical core–shell structure. However, it remains challenging to synthesize silica nanocapsules having high cargo-loading capacity and cargo-protection capability without compromising process simplicity and biocompatibility properties. Here, we synthesized oil-core silica-shell nanocapsules under environmentally friendly conditions by a novel emulsion and biomimetic dual-templating approach using a dual-functional protein, in lieu of petrochemical surfactants, thus avoiding the necessities for the removal of toxic components. A light- and pH-sensitive compound can be facilely encapsulated i...
Biomimetic nanomaterials have attracted tremendous research interest in the past decade. We recently...
The design of nanocarriers containing hydrophobic and hydrophilic compounds represents a powerful to...
This paper reports interfacially driven synthesis of oil-core silica-shell nanocapsules using a rati...
Silica nanocapsules have attracted tremendous interest for encapsulation, protection, and controlled...
A novel, bio-inspired templating platform technology is reported for the synthesis of biocompatible ...
Biomimetic nanomaterials have attracted tremendous research interest in the past decade. We recently...
Stable, biocompatible, multifunctional and multicompartment nanocarriers are much needed in the fiel...
The application of multimodal systems in the field of nanomedicine is advantageous as they can perfo...
This paper reports interfacially driven synthesis of oil-core silica-shell nanocapsules using a rati...
The design of nanocarriers containing hydrophobic and hydrophilic compounds represents a powerful to...
We recently developed a novel approach for making oil-core silica-shell nanocapsules using designed ...
One intriguing route for in vivo imaging, as well as drug delivery, is the use of core-shell type st...
We recently developed a novel approach for making oil-core silica-shell nanocapsules using designed ...
Biomimetic nanomaterials have attracted tremendous research interest in the past decade. We recently...
The design of nanocarriers containing hydrophobic and hydrophilic compounds represents a powerful to...
This paper reports interfacially driven synthesis of oil-core silica-shell nanocapsules using a rati...
Silica nanocapsules have attracted tremendous interest for encapsulation, protection, and controlled...
A novel, bio-inspired templating platform technology is reported for the synthesis of biocompatible ...
Biomimetic nanomaterials have attracted tremendous research interest in the past decade. We recently...
Stable, biocompatible, multifunctional and multicompartment nanocarriers are much needed in the fiel...
The application of multimodal systems in the field of nanomedicine is advantageous as they can perfo...
This paper reports interfacially driven synthesis of oil-core silica-shell nanocapsules using a rati...
The design of nanocarriers containing hydrophobic and hydrophilic compounds represents a powerful to...
We recently developed a novel approach for making oil-core silica-shell nanocapsules using designed ...
One intriguing route for in vivo imaging, as well as drug delivery, is the use of core-shell type st...
We recently developed a novel approach for making oil-core silica-shell nanocapsules using designed ...
Biomimetic nanomaterials have attracted tremendous research interest in the past decade. We recently...
The design of nanocarriers containing hydrophobic and hydrophilic compounds represents a powerful to...
This paper reports interfacially driven synthesis of oil-core silica-shell nanocapsules using a rati...