The structural, coordinative, photochemical and electrochemical properties of the porphyrin macrocycle that make them the functional element of choice in ubiquitous biological systems, e.g., chlorophyll, cytochrome P450 and hemoglobin, also contribute to making porphyrins and metalloporphyrins desirable in a “bottom-up” approach to the construction of nanosized devices. This paper highlights some recent advances in the construction of supramolecular assemblies based on the porphyrin macrocycle that display optically readable functions as a result of photonic or chemical stimuli
Porphyrins and related macrocycles have been intensively exploited as sensing materials in chemical ...
The work described in this thesis demonstrates the use of supramolecular chemistry in the template-d...
Interesting supramolecular architectures can be obtained exploiting the exocyclic coordination abili...
The interest in assembling porphyrin derivatives is widespread and is accounted by the impressive im...
Advances in porphyrin chemistry have provided novel materials and exciting technologies for bioanaly...
The construction of nanosized supramolecular hosts via self-assembly of molecular components is a fa...
Supramolecular chemistry is expected to keep a high developing pace in the next years, giving suppor...
Tetrapyrrolic macrocycles, such as porphyrins, belong to a class of distinctively multifunctional bi...
The emergence of complex, carefully designed, molecular architectures incorporating either a lanthan...
Certain applications of supramolecular porphyrinic systems, such as molecular sieves and photonics, ...
From the green chlorophyll in plants and algae that we depend upon to transform sunlight into useful...
Porphyrin derivatives are highly relevant to biological processes such as light harvesting and charg...
Supramolecular chemistry deals with the association of several chemical species, in an organized way...
Porphyrins, a substance class that can be found in diverse materials including green leaves and red ...
Aerobic life on earth is made possible through the functions of the porphyrin. These colorful and u...
Porphyrins and related macrocycles have been intensively exploited as sensing materials in chemical ...
The work described in this thesis demonstrates the use of supramolecular chemistry in the template-d...
Interesting supramolecular architectures can be obtained exploiting the exocyclic coordination abili...
The interest in assembling porphyrin derivatives is widespread and is accounted by the impressive im...
Advances in porphyrin chemistry have provided novel materials and exciting technologies for bioanaly...
The construction of nanosized supramolecular hosts via self-assembly of molecular components is a fa...
Supramolecular chemistry is expected to keep a high developing pace in the next years, giving suppor...
Tetrapyrrolic macrocycles, such as porphyrins, belong to a class of distinctively multifunctional bi...
The emergence of complex, carefully designed, molecular architectures incorporating either a lanthan...
Certain applications of supramolecular porphyrinic systems, such as molecular sieves and photonics, ...
From the green chlorophyll in plants and algae that we depend upon to transform sunlight into useful...
Porphyrin derivatives are highly relevant to biological processes such as light harvesting and charg...
Supramolecular chemistry deals with the association of several chemical species, in an organized way...
Porphyrins, a substance class that can be found in diverse materials including green leaves and red ...
Aerobic life on earth is made possible through the functions of the porphyrin. These colorful and u...
Porphyrins and related macrocycles have been intensively exploited as sensing materials in chemical ...
The work described in this thesis demonstrates the use of supramolecular chemistry in the template-d...
Interesting supramolecular architectures can be obtained exploiting the exocyclic coordination abili...