This dissertation offers demonstrations of autonomous catalytic microtubes (microjet engines) with tunable diameters ranging from micro- to nanoscale and lengths from 50 μm to 1 mm. These results open the door to effective microengines and represent the entry in the Guinness Book of World Records for “the smallest man-made jet engine.” Several attractive methodologies of machine-based functions at the micro- and nanoscale are shown. For instance, catalytic Ti/Cr/Pt microjets, which are integrated on a planar substrate, can operate as “on chip” chemical micropumps by decomposition of hydrogen peroxide fuel into oxygen bubbles and water. When released from a substrate, microjets self-propel autonomously in solution. The incorporation of ferr...
We designed microrobots in the form of autonomous and remotely guided microtubes. One of the challen...
Gaseous oxygen plays a vital role in driving the metabolism of living organisms and has multiple agr...
We describe nanoscale tools in the form of autonomous and remotely guided catalytically self-propell...
This dissertation offers demonstrations of autonomous catalytic microtubes (microjet engines) with t...
Self-propelled microjet engines (microbots) can transport multiple cells into specific locations in ...
The 1966 movie Fantastic Voyage captured the world's imagination, portraying a tiny submarine naviga...
We describe the propulsion mechanism of the catalytic microjet engines that are fabricated using rol...
This work focuses on the investigation of platinum-based catalytic micro/nanomotors, including worki...
Self-propelled micro and nanosystems are at the forefront of nanotechnology research. Here we descri...
In this tutorial review we describe the recent progress on catalytic microtubular engines fabricated...
Highly efficient catalytic microtubular engines are synthesized rapidly and inexpensively using an e...
We designed microrobots in the form of autonomous and remotely guided microtubes. One of the challen...
Gaseous oxygen plays a vital role in driving the metabolism of living organisms and has multiple agr...
We describe nanoscale tools in the form of autonomous and remotely guided catalytically self-propell...
This dissertation offers demonstrations of autonomous catalytic microtubes (microjet engines) with t...
Self-propelled microjet engines (microbots) can transport multiple cells into specific locations in ...
The 1966 movie Fantastic Voyage captured the world's imagination, portraying a tiny submarine naviga...
We describe the propulsion mechanism of the catalytic microjet engines that are fabricated using rol...
This work focuses on the investigation of platinum-based catalytic micro/nanomotors, including worki...
Self-propelled micro and nanosystems are at the forefront of nanotechnology research. Here we descri...
In this tutorial review we describe the recent progress on catalytic microtubular engines fabricated...
Highly efficient catalytic microtubular engines are synthesized rapidly and inexpensively using an e...
We designed microrobots in the form of autonomous and remotely guided microtubes. One of the challen...
Gaseous oxygen plays a vital role in driving the metabolism of living organisms and has multiple agr...
We describe nanoscale tools in the form of autonomous and remotely guided catalytically self-propell...