Supramolecular interactions between organic molecules not only enable them to self-organize into large regular assemblies, but also enhance their electronic and luminescent properties, which should help to improve the performance of organic devices. Supramolecular chemistry has been around for several decades, but never has it been so close to delivering materials of technological relevance for organic electronics. The recent European Materials Research Society symposium on Supramolecular Approaches to Organic Electronics and Nanotechnology in Strasbourg, France (24–28 May, 2004) featured a number of important advances towards the development of electronic devices
A comprehensive overview of functional nanosystems based on organic and polymeric materials and thei...
\u3cp\u3eSelf-organizing molecules can form structures with useful electronic properties. These supr...
Materials science is an interdisciplinary field where physicists, chemists and engineers work togeth...
Supramolecular chemistry has been around forseveral decades,but never has it been so close todeliver...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
The development of organic devices with nanoscale features is becoming the focus of intense research...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
An overview is given on molecular defined materials for conventional electronics and on potential ma...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
The use of organic materials to design electronic devices has actually presented a broad interest be...
A comprehensive overview of functional nanosystems based on organic and polymeric materials and thei...
\u3cp\u3eSelf-organizing molecules can form structures with useful electronic properties. These supr...
Materials science is an interdisciplinary field where physicists, chemists and engineers work togeth...
Supramolecular chemistry has been around forseveral decades,but never has it been so close todeliver...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
The development of organic devices with nanoscale features is becoming the focus of intense research...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
Self-organizing molecules can form structures with useful electronic properties. These supramolecula...
An overview is given on molecular defined materials for conventional electronics and on potential ma...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
The use of organic materials to design electronic devices has actually presented a broad interest be...
A comprehensive overview of functional nanosystems based on organic and polymeric materials and thei...
\u3cp\u3eSelf-organizing molecules can form structures with useful electronic properties. These supr...
Materials science is an interdisciplinary field where physicists, chemists and engineers work togeth...