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ZnS nanostructures: from synthesis to applications
Zinc sulfide (ZnS) is one of the first semiconductors discovered. It has traditionally shown
remarkable versatility and promise for novel fundamental properties and diverse …
remarkable versatility and promise for novel fundamental properties and diverse …
ZnSe nanostructures: synthesis, properties and applications
As an important II–VI semiconductor, ZnSe is one of the first semiconductors discovered and
is probably one of the most important electronic and optoelectronic materials with prominent …
is probably one of the most important electronic and optoelectronic materials with prominent …
Chemical management for colorful, efficient, and stable inorganic–organic hybrid nanostructured solar cells
Chemically tuned inorganic–organic hybrid materials, based on CH3NH3 ( MA) Pb (I1–x
Br x) 3 perovskites, have been studied using UV–vis absorption and X-ray diffraction …
Br x) 3 perovskites, have been studied using UV–vis absorption and X-ray diffraction …
Band Gap Tuning of CH3NH3Pb(Br1–xClx)3 Hybrid Perovskite for Blue Electroluminescence
We report on the structural, morphological and optical properties of AB (Br1–x Cl x) 3
(where, A= CH3NH3+, B= Pb2+ and x= 0 to 1) perovskite semiconductor and their …
(where, A= CH3NH3+, B= Pb2+ and x= 0 to 1) perovskite semiconductor and their …
Factors affecting the stability of perovskite solar cells: a comprehensive review
Accelerated depletion of fossil fuel, energy demands, and pollution force us to choose
renewable and eco-friendly energy resources. Solar cells are considered as an efficient …
renewable and eco-friendly energy resources. Solar cells are considered as an efficient …
Perovskite CH 3 NH 3 Pb (Br x I 1− x) 3 single crystals with controlled composition for fine-tuned bandgap towards optimized optoelectronic applications
A series of 10 perovskite CH3NH3Pb (BrxI1− x) 3 (x= 0–1) single crystals have been
prepared using a strategy of inverse-temperature reactive crystallization. Using individually …
prepared using a strategy of inverse-temperature reactive crystallization. Using individually …
Thermodynamics at the nanoscale: A new approach to the investigation of unique physicochemical properties of nanomaterials
CC Yang, YW Mai - Materials Science and Engineering: R: Reports, 2014 - Elsevier
An extension of the classic thermodynamics theory to nanometer scale has generated a new
interdisciplinary theory–nanothermodynamics. It serves as a bridge between macroscopic …
interdisciplinary theory–nanothermodynamics. It serves as a bridge between macroscopic …
Arrays of ZnO/ZnxCd1–xSe Nanocables: Band Gap Engineering and Photovoltaic Applications
Arrays of ZnO/Zn x Cd1–x Se (0≤ x≤ 1) core/shell nanocables with shells of tunable
compositions have been synthesized on fluorine-doped tin oxide glass substrates via a …
compositions have been synthesized on fluorine-doped tin oxide glass substrates via a …
Tunable cathodoluminescence over the entire visible window from all-inorganic perovskite CsPbX 3 1D architecture
With exceptional attributes like high carrier mobility, long diffusion lengths and tunable
spectral absorption window, all-inorganic perovskites have shown the potential to be the …
spectral absorption window, all-inorganic perovskites have shown the potential to be the …
Spatial composition grading of quaternary ZnCdSSe alloy nanowires with tunable light emission between 350 and 710 nm on a single substrate
We demonstrated a general methodology of growing spatially composition-controlled alloys
by combining spatial source reagent gradient with a temperature gradient. Using this dual …
by combining spatial source reagent gradient with a temperature gradient. Using this dual …