Organic molecules with extended -conjugation can display unusual electronic properties, traditionally associated with solid state inorganic materials. Manipulating a molecular structure, one can design organic metals, semiconductors or superconductor, magnetic, non-linear optical and lasing materials and even combine several of these properties in a single material. Such behavior of “-functional” materials has already led to a number of technologies, eg. organic light-emitting diodes (OLED), field-effect transistors (OFET) and photovoltaics (OPV). However, the optimization of these properties and the performance of corresponding devices relies not only on a fine-tuned molecular structure but also on a difficult-to-control supramolecular org...
Appealing properties: ChemPlusChem is proud to present its Special Issue on π‐Conjugated Molecules a...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
Organic field-effect transistors (OFETs) are key devices in organic electronics, and their performan...
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...
Presented on April 3, 2015 from 4:00 to 5:00 pm in the Molecular Science and Engineering Building (M...
The use of organic materials to design electronic devices has actually presented a broad interest be...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
Supramolecular interactions between organic molecules not only enable them to self-organize into lar...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
Well-defined conjugated materials play an important role in organic electronics because of their pre...
Control of solid state ordering in conjugated small molecules is paramount to the continued developm...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
A pesar del enorme esfuerzo llevado a cabo durante los últimos años en el desarrollo de semiconducto...
Appealing properties: ChemPlusChem is proud to present its Special Issue on π‐Conjugated Molecules a...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
Organic field-effect transistors (OFETs) are key devices in organic electronics, and their performan...
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...
Presented on April 3, 2015 from 4:00 to 5:00 pm in the Molecular Science and Engineering Building (M...
The use of organic materials to design electronic devices has actually presented a broad interest be...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
Supramolecular interactions between organic molecules not only enable them to self-organize into lar...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
Well-defined conjugated materials play an important role in organic electronics because of their pre...
Control of solid state ordering in conjugated small molecules is paramount to the continued developm...
The rapid development of conjugated polymeric materials has enabled the organic electronic and optoe...
A pesar del enorme esfuerzo llevado a cabo durante los últimos años en el desarrollo de semiconducto...
Appealing properties: ChemPlusChem is proud to present its Special Issue on π‐Conjugated Molecules a...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
Organic field-effect transistors (OFETs) are key devices in organic electronics, and their performan...