Being able to control in time and space the positioning, orientation, movement, and sense of rotation of nano- to microscale objects is currently an active research area in nanoscience, having diverse nanotechnological applications. In this paper, we demonstrate unprecedented control and maneuvering of rod-shaped or tubular nanostructures with high aspect ratios which are formed by self-assembling synthetic porphyrins. The self-assembly algorithm, encoded by appended chemical-recognition groups on the periphery of these porphyrins, is the same as the one operating for chlorosomal bacteriochlorophylls (BChl's). Chlorosomes, rod-shaped organelles with relatively long-range molecular order, are the most efficient naturally occurring light-harv...
Porphyrin-based molecules play an important role in natural biological systems such as photosyntheti...
Mimicking green plants’ and bacteria’s extraordinary ability to absorb a vast number of photons and ...
Of all known photosynthetic organisms, the green sulfur bacteria are able to survive under the lowes...
Being able to control in time and space the positioning, orientation, movement, and sense of rotatio...
We prepare artificial aggregates that mimic the structure and function of natural chlorosomal light ...
Biomimetics provides us a new perspective to understand complex biological process and strategy to f...
Chlorosomes are the largest and most efficient light-harvesting antennae found in nature, and they a...
Title: Study of light-harvesting antennae based on bacteriolorophyll aggregates Author: Jan Alster D...
The retention of photochemical properties of individual chromophores is a key feature of biological ...
YesThe retention of photochemical properties of individual chromophores is a key feature of biologic...
Energy transfer and electron transfer events as they occur between well arranged light harvesting an...
peer-reviewedOne of the many evolved functions of photosynthetic organisms is to synthesize light ...
Incorporating artificial molecular motors and switches into self-assembled systems allows transferri...
Artificial light-harvesting systems have until now not been able to self-assemble into structures wi...
Chlorosomes are one of the characteristic light-harvesting antennas from green sulfur bacteria. Thes...
Porphyrin-based molecules play an important role in natural biological systems such as photosyntheti...
Mimicking green plants’ and bacteria’s extraordinary ability to absorb a vast number of photons and ...
Of all known photosynthetic organisms, the green sulfur bacteria are able to survive under the lowes...
Being able to control in time and space the positioning, orientation, movement, and sense of rotatio...
We prepare artificial aggregates that mimic the structure and function of natural chlorosomal light ...
Biomimetics provides us a new perspective to understand complex biological process and strategy to f...
Chlorosomes are the largest and most efficient light-harvesting antennae found in nature, and they a...
Title: Study of light-harvesting antennae based on bacteriolorophyll aggregates Author: Jan Alster D...
The retention of photochemical properties of individual chromophores is a key feature of biological ...
YesThe retention of photochemical properties of individual chromophores is a key feature of biologic...
Energy transfer and electron transfer events as they occur between well arranged light harvesting an...
peer-reviewedOne of the many evolved functions of photosynthetic organisms is to synthesize light ...
Incorporating artificial molecular motors and switches into self-assembled systems allows transferri...
Artificial light-harvesting systems have until now not been able to self-assemble into structures wi...
Chlorosomes are one of the characteristic light-harvesting antennas from green sulfur bacteria. Thes...
Porphyrin-based molecules play an important role in natural biological systems such as photosyntheti...
Mimicking green plants’ and bacteria’s extraordinary ability to absorb a vast number of photons and ...
Of all known photosynthetic organisms, the green sulfur bacteria are able to survive under the lowes...