Cambridge scientists have discovered a light-powered chemical reaction that lets researchers modify complex drug molecules at the final stages of development. Unlike traditional methods that rely on ...
Most materials, especially metals and ceramics, are crystals. Their atoms are arranged in three-dimensional lattices that repeat the same exact pattern, over and over again. But there's a well-known ...
A surprising lab discovery reveals a light-powered way to tweak complex drugs faster, cleaner, and later in development.
Imaging-based single-cell physiological profiling holds great potential for uncovering fundamental bacterial cold shock response (CSR) mechanisms, but its application is impeded by severe focus drift ...
Abstract: Here we introduce an efficient approach for fabricating nanoscale periodic and aperiodic structures through a multiple-exposure interference lithography technique. The proposed method ...