Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputtering and were cycled voltammetrically in an electrolyte of lithium perchlorate in propylene carbonate. Film degradation was studied for up to 500 voltammetric cycles in voltage ranges between 1.5–4.0 and 2.0–4.0 V vs. Li/Li+. Optically and electrochemically degraded films were subjected to potentiostatic posttreatment at 6.0 V vs. Li/Li+ to achieve ion de-trapping and rejuvenation so that the films partly regained their original properties. Ti incorporation and potentiostatic posttreatment jointly yielded superior electrochromic properties provided the lower limit of the voltage range was above 1.6–1.7 V vs. Li/Li+. Degradation dynamics for as-d...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of W oxide were prepared by reactive DC magnetron sputtering (5 cm-diameter W target), an...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputterin...
Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputterin...
Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputterin...
Electrochromic W–Ti oxide thin films were prepared by reactive DC magnetron sputtering and cycled vo...
Electrochromic W–Ti oxide thin films were prepared by reactive DC magnetron sputtering and cycled vo...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Thin films of W-Ti oxide were prepared by reactive DC magnetron sputtering and were characterized by...
Thin films of W oxide were prepared by reactive DC magnetron sputtering (5 cm-diameter W target), an...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of W oxide were prepared by reactive DC magnetron sputtering (5 cm-diameter W target), an...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputterin...
Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputterin...
Thin films of electrochromic W oxide and W–Ti oxide were prepared by reactive DC magnetron sputterin...
Electrochromic W–Ti oxide thin films were prepared by reactive DC magnetron sputtering and cycled vo...
Electrochromic W–Ti oxide thin films were prepared by reactive DC magnetron sputtering and cycled vo...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Electrochemical degradation of electrochromic W oxide and W–Ti oxide thin films, prepared by reactiv...
Thin films of W-Ti oxide were prepared by reactive DC magnetron sputtering and were characterized by...
Thin films of W oxide were prepared by reactive DC magnetron sputtering (5 cm-diameter W target), an...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...
Thin films of W oxide were prepared by reactive DC magnetron sputtering (5 cm-diameter W target), an...
Thin films of electrochromic (EC) W oxide were prepared by reactive DC magnetron sputtering and were...