Ambipolar molecular materials hold great promise as a building block of next generation highly efficient, less complex and low cost electronic devices. In this endeavor, the present work reports the fabrication of organic heterojunction devices based on halogenated copper phthalocyanine (CuPc) and lutetium bisphthalocyanine (LuPc2) bilayers, investigates their structural and electrical properties and probes the ambipolar behavior by ammonia sensing. Microstructural analysis of the heterostructure thin films revealed compact and semicrystalline organization, depending on the number of halogen substituents in CuPc. The heterojunction devices reveal non-linear I(V) characteristics associated with an interfacial energy barrier which is tuned by...
The realization of organic light-emitting transistors (OLETs) with high quantum efficiency and fast ...
We realized ambipolar transport behavior in field-effect transistors by using p-p isotype heterojunc...
International audienceThe two-component phthalocyaninato copper-based heterojunctions fabricated fro...
International audienceAmbipolar molecular materials hold great promises as a building block of next ...
International audienceModulation of charge transport in an organic heterojunction sensor is a promis...
This article describes a new principle of transduction involving an heterojunction between a Molecul...
Ambipolar organic field-effect transistors (OFETs) are produced, based on organic heterojunctions fa...
International audienceBased on the electrochemical properties of a series of metallophthalocyanines ...
Photodiodes made of small molecular weight organic semiconductors have been fabricated. The organic...
International audienceOrganic heterostructures have emerged as highly promising transducers to reali...
Molecular orientation-controlled charge transfer has been observed at the organic-organic heterojunc...
Bulky organic semiconductors have been widely applied on a variety of devices including transistors,...
The interfaces formed between copper-hexadecafluoro-phthalocyanine (F16CuPc) and 2,5-bis(4-biphenyly...
The realization of organic light-emitting transistors (OLETs) with high quantum efficiency and fast ...
We realized ambipolar transport behavior in field-effect transistors by using p-p isotype heterojunc...
International audienceThe two-component phthalocyaninato copper-based heterojunctions fabricated fro...
International audienceAmbipolar molecular materials hold great promises as a building block of next ...
International audienceModulation of charge transport in an organic heterojunction sensor is a promis...
This article describes a new principle of transduction involving an heterojunction between a Molecul...
Ambipolar organic field-effect transistors (OFETs) are produced, based on organic heterojunctions fa...
International audienceBased on the electrochemical properties of a series of metallophthalocyanines ...
Photodiodes made of small molecular weight organic semiconductors have been fabricated. The organic...
International audienceOrganic heterostructures have emerged as highly promising transducers to reali...
Molecular orientation-controlled charge transfer has been observed at the organic-organic heterojunc...
Bulky organic semiconductors have been widely applied on a variety of devices including transistors,...
The interfaces formed between copper-hexadecafluoro-phthalocyanine (F16CuPc) and 2,5-bis(4-biphenyly...
The realization of organic light-emitting transistors (OLETs) with high quantum efficiency and fast ...
We realized ambipolar transport behavior in field-effect transistors by using p-p isotype heterojunc...
International audienceThe two-component phthalocyaninato copper-based heterojunctions fabricated fro...