The Handbook of Industrial Inkjet Printing provides an overview of all the individual subareas of industrial inkjet printing.
The Handbook of Industrial Inkjet Printing provides an overview of all the individual subareas of industrial inkjet printing.
Making methanol for use as a renewable energy carrier.
High-density stretchable electrode grids based on a material that can resolve high spatiotemporal neural signals from the surface of the cortex in freely moving rats with stable recording quality during 3 months of implantation.
Various approaches for converting CO2 and H2O to liquid hydrocarbons using solar energy involve electro/photo/thermochemical catalytic processes and combinations thereof exist.
Imagine a scenario where CO2 greenhouse gas emissions could be used to desalinate briny water. This would be a creative way of killing two birds with one stone, namely helping to ameliorate global-warming-induced climate change and producing high quality water for agriculture and drinking purposes.
A fascinating approach for utilizing the chemical energy contained in the carbon–hydrogen bonds of methane without the co-production of carbon dioxide in the combustion process is discussed.
In a WIREs Nanomedicine and Nanobiotechnology review, a discussion about the need for a unifying interpretation of the available experimental data regarding nanomedicines is presented.
The burgeoning development and sustained production of advances in the booming field of solar-to-energy conversion have inspired a Special Issue specifically dedicated to “Artificial Photosynthesis: Mimicking Nature for Renewable Energy Production” – guest editors Wee-Jun Ong, Zhiqun Lin and Kazunari Domen.
Bioinspired, biohybrid device design and fabrication strategy for investigating the ability of therapeutics to cross the blood brain barrier.
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.