Electrolyte design for zinc dynamic windows with fast switching that cycle more than 11,000 times with high optical contrast

Author:

Bhoumik Nikhil C.,Thompson Samantha M.,Barile Christopher J.

Funder

National Science Foundation

Publisher

Elsevier BV

Reference31 articles.

1. Monthly Energy Review. July 2020, U.S. Energy Information Administration, 〈https://www.eia.gov/totalenergy/data/monthly/archive/00352007.pdf〉 / (accessed: January 2021).

2. E. Lee, M. Yazdanian, S. Selkowitz, The Energy-savings Potential of Electrochromic Windows in the US Commercial Buildings Sector, 2019, 〈https://www.osti.gov/servlets/purl/891618/〉 (accessed: January 5, 2021).

3. Comparison of the energy saving potential of adaptive and controllable smart windows: a state-of-the-art review and simulation studies of thermochromic, photochromic and electrochromic technologies;Tällberg;Sol. Energ. Mat. Sol. C,2019

4. Dynamic windows using reversible zinc electrodeposition in neutral electrolytes with high opacity and excellent resting stability;Islam;Adv. Energy Mater.,2021

5. Electrochromic organic and polymeric materials for display applications;Mortimer;Displays,2006

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