We have modified surface catalytic activity in real time and space by focusing an addressable laser beam to differentially heat a platinum (110) single-crystal surface. Ellipsomicroscopy imaging of local conditions (such as reactant and product local coverages) enabled us to close the loop between sensing and actuation (both spatiotemporally resolved). Pulses and fronts, the basic building blocks of patterns, could be formed, accelerated, modified, guided, and destroyed at will. Real-time image processing and feedback allow the design and implementation of new classes of nonlocal evolution rules
International audienceSurface chemical reactivity is imaged by combining electro-chemical activation...
International audienceSurface chemical reactivity is imaged by combining electro-chemical activation...
Ellipsomicroscopy for surface imaging (EMSI) is a powerful new tool for studying spatiotemporal adso...
We have modified surface catalytic activity in real time and space by focusing an addressable laser ...
Utilizing a focused laser beam manipulated through computer-controlled mirrors, and capable of “writ...
This article focuses on the technical issues of imaging of dynamic adsorbatepattern formation on pla...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction–diffusion syste...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
We study computationally and experimentally the propagation of chemical pulses in complex geometries...
The average reactivity of a catalytic surface was appreciably enhanced through spatio-temporally var...
This review focuses on various methods to image surface reactions in real time. Development of the p...
This article focuses on the technical issues of imaging of dynamic adsorbate pattern formation on pl...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
International audienceThe spatio-temporal design of ultrafast laser excitation can have a determinan...
International audienceSurface chemical reactivity is imaged by combining electro-chemical activation...
International audienceSurface chemical reactivity is imaged by combining electro-chemical activation...
Ellipsomicroscopy for surface imaging (EMSI) is a powerful new tool for studying spatiotemporal adso...
We have modified surface catalytic activity in real time and space by focusing an addressable laser ...
Utilizing a focused laser beam manipulated through computer-controlled mirrors, and capable of “writ...
This article focuses on the technical issues of imaging of dynamic adsorbatepattern formation on pla...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction–diffusion syste...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
We study computationally and experimentally the propagation of chemical pulses in complex geometries...
The average reactivity of a catalytic surface was appreciably enhanced through spatio-temporally var...
This review focuses on various methods to image surface reactions in real time. Development of the p...
This article focuses on the technical issues of imaging of dynamic adsorbate pattern formation on pl...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
International audienceThe spatio-temporal design of ultrafast laser excitation can have a determinan...
International audienceSurface chemical reactivity is imaged by combining electro-chemical activation...
International audienceSurface chemical reactivity is imaged by combining electro-chemical activation...
Ellipsomicroscopy for surface imaging (EMSI) is a powerful new tool for studying spatiotemporal adso...