[[abstract]]A simple method was developed to fabricate tungsten oxide (WO3-x) nanowires based electrochromic devices. The WO3-x nanowires are grown directly from tungsten oxide powders in a tube furnace. The WO3-x nanowires have diameters ranging froin 30 to 70 nm and lengths Lip to several micrometers. The WO3-x nanowires based device has short bleach-coloration transition time and can be grown on a large scale directly onto ail ITO-coated glass that makes it potential in many electrochromic applications. The structure, morphology, and composition of the WO3-x nanowires were characterized using the scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and energy-dispersive spectrometer. The optical and electroc...
Motivated by the technological relevance of tungsten oxide nanostructures as valuable materials for ...
We demonstrate that a three dimensional (3D) crystalline tungsten trioxide (WO3 ) nanoporous network...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Hierarchical WO3 nanotree-like structures grown from nanowires were prepared by a two-step nonseeded...
Electrochromic devices have shown enhanced performances when constructed with nanostructured crystal...
© 2019 Yiqun LiElectrochromic materials have attracted the interest of researchers over the last sev...
Abstract — Facile and cost-efficient hydrothermally grown 3-D tungsten trioxide (WO3) nanowires (NWs...
Hierarchical WO<sub>3</sub> nanotree-like structures grown from nanowires were prepared by a two-ste...
Among the transition metal oxides, tungsten oxide (WO3) remained the most promising candidate for el...
Among the transition metal oxides, tungsten oxide (WO3) remained the most promising candidate for el...
Vertically aligned WO3 nano-architectures on the transparent conducting substrate are produced via a...
Summarization: We present a study of electrochromic (EC) devices based on WO3 thin films with textur...
WO3 films are the most widely used electrochromic functional layers. It is known that WO3 films prep...
WO3 nanorod/V2O5 dot hybrid arrays have been successfully prepared by combining solvothermal and ele...
Nanostructured tungsten oxide (WO3) and hydrated tungsten oxide (WO3•H2O) films were assembled on fl...
Motivated by the technological relevance of tungsten oxide nanostructures as valuable materials for ...
We demonstrate that a three dimensional (3D) crystalline tungsten trioxide (WO3 ) nanoporous network...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Hierarchical WO3 nanotree-like structures grown from nanowires were prepared by a two-step nonseeded...
Electrochromic devices have shown enhanced performances when constructed with nanostructured crystal...
© 2019 Yiqun LiElectrochromic materials have attracted the interest of researchers over the last sev...
Abstract — Facile and cost-efficient hydrothermally grown 3-D tungsten trioxide (WO3) nanowires (NWs...
Hierarchical WO<sub>3</sub> nanotree-like structures grown from nanowires were prepared by a two-ste...
Among the transition metal oxides, tungsten oxide (WO3) remained the most promising candidate for el...
Among the transition metal oxides, tungsten oxide (WO3) remained the most promising candidate for el...
Vertically aligned WO3 nano-architectures on the transparent conducting substrate are produced via a...
Summarization: We present a study of electrochromic (EC) devices based on WO3 thin films with textur...
WO3 films are the most widely used electrochromic functional layers. It is known that WO3 films prep...
WO3 nanorod/V2O5 dot hybrid arrays have been successfully prepared by combining solvothermal and ele...
Nanostructured tungsten oxide (WO3) and hydrated tungsten oxide (WO3•H2O) films were assembled on fl...
Motivated by the technological relevance of tungsten oxide nanostructures as valuable materials for ...
We demonstrate that a three dimensional (3D) crystalline tungsten trioxide (WO3 ) nanoporous network...
This is the author accepted manuscript. The final version is available from the publisher via the DO...