Copper(I) iodide (CuI)-based inorganic–organic hybrid materials in the general chemical formula of CuI(L) are well-known for their structural diversity and strong photoluminescence and are therefore considered promising candidates for a number of optical applications. In this work, we demonstrate a systematic, bottom-up precursor approach to developing a series of CuI(L) network structures built on CuI rhomboid dimers. These compounds combine strong luminescence due to the CuI inorganic modules and significantly enhanced thermal stability as a result of connecting individual building units into robust, extended networks. Examination of their optical properties reveals that these materials not only exhibit exceptionally high photoluminesc...
The synthesis, structural, and photophysical investigations of CuI complexes with a disilanylene-bri...
Copper(I) halide clusters are recently considered as good candidate for optoelectronic devices such ...
The long standing controversy concerning the defect band in cuprous iodide (CuI) has been addressed ...
Copper(I) iodide (CuI)-based inorganic–organic hybrid materials in the general chemical formula of ...
The authors have designed and synthesized a family of high-performance inorganic–organic hybrid phos...
Crystalline inorganic–organic hybrid materials have been explored for decades. They are both fundame...
Inorganic-organic hybrid semiconductors are promising candidates for energy-related applications. He...
A series of copper halide based inorganic-organic hybrid semiconductors have been synthesized. Struc...
Inorganic semiconductor materials are best known for their superior physical properties, as well as ...
Structure and properties of crystalline organic-inorganic hybrid semiconductors have been explored a...
A group of copper iodide-based hybrid semiconductors with the general formula of 2D-CuI(L)0.5 (L = o...
Global energy consumption has escalated dramatically with continuing consumption and population incr...
Organic–inorganic hybrid metal halides are well known for their structural flexibility and high phot...
International audienceUsing multinuclear copper iodide complexes as cross-linking agents in a polyur...
Phosphor-converted white light-emitting diodes (pc-wLEDs) are promising candidates for next-generati...
The synthesis, structural, and photophysical investigations of CuI complexes with a disilanylene-bri...
Copper(I) halide clusters are recently considered as good candidate for optoelectronic devices such ...
The long standing controversy concerning the defect band in cuprous iodide (CuI) has been addressed ...
Copper(I) iodide (CuI)-based inorganic–organic hybrid materials in the general chemical formula of ...
The authors have designed and synthesized a family of high-performance inorganic–organic hybrid phos...
Crystalline inorganic–organic hybrid materials have been explored for decades. They are both fundame...
Inorganic-organic hybrid semiconductors are promising candidates for energy-related applications. He...
A series of copper halide based inorganic-organic hybrid semiconductors have been synthesized. Struc...
Inorganic semiconductor materials are best known for their superior physical properties, as well as ...
Structure and properties of crystalline organic-inorganic hybrid semiconductors have been explored a...
A group of copper iodide-based hybrid semiconductors with the general formula of 2D-CuI(L)0.5 (L = o...
Global energy consumption has escalated dramatically with continuing consumption and population incr...
Organic–inorganic hybrid metal halides are well known for their structural flexibility and high phot...
International audienceUsing multinuclear copper iodide complexes as cross-linking agents in a polyur...
Phosphor-converted white light-emitting diodes (pc-wLEDs) are promising candidates for next-generati...
The synthesis, structural, and photophysical investigations of CuI complexes with a disilanylene-bri...
Copper(I) halide clusters are recently considered as good candidate for optoelectronic devices such ...
The long standing controversy concerning the defect band in cuprous iodide (CuI) has been addressed ...