A new optofluidic technique uses laser-generated heat and Marangoni flows to precisely guide micro- and nanoparticles, opening new possibilities for lab-on-a-chip technology and micro-robotics. Controlling tiny particles inside liquids is important for many areas of modern science and technology. Micro- and nanoparticles are used in biological research, medical diagnostics, chemical analysis, micro-robotics, and lab-on-a-chip devices. However, moving these extremely small objects with high precision remains challenging. Light offers an attractive way to control microscopic objects because laser beams can be focused and moved without physically touching the particles. Yet conventional light-driven fluid systems often have important limitations. Their flow patterns can become unstable, their direction of movement can be difficult to control, and changing the particle trajectory often requires complicated hardware. Now, Liu and his research team have demonstrated a new approach that...