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PV_window_building_study

Publicly accessible License 

Data associated with the paper ?Photovoltaic Windows to Offset the Intensive Energy and Carbon Footprints of Highly Glazed Buildings? by Vincent M. Wheeler, Janghyun Kim, Tom Daligault, Bryan Rosales, Chaiwat Engtrakul, Robert C. Tenent, and Lance M. Wheeler

Citation Formats

Chemistry & Nanoscience. (2022). PV_window_building_study [data set]. Retrieved from c06eea14-8f77-43ef-98e0-b29e07d80897.
Export Citation to RIS
Wheeler, . PV_window_building_study. United States: N.p., 24 Oct, 2022. Web. c06eea14-8f77-43ef-98e0-b29e07d80897.
Wheeler, . PV_window_building_study. United States. c06eea14-8f77-43ef-98e0-b29e07d80897
Wheeler, . 2022. "PV_window_building_study". United States. c06eea14-8f77-43ef-98e0-b29e07d80897.
@div{oedi_6393, title = {PV_window_building_study}, author = {Wheeler, .}, abstractNote = {Data associated with the paper ?Photovoltaic Windows to Offset the Intensive Energy and Carbon Footprints of Highly Glazed Buildings? by Vincent M. Wheeler, Janghyun Kim, Tom Daligault, Bryan Rosales, Chaiwat Engtrakul, Robert C. Tenent, and Lance M. Wheeler }, doi = {}, url = {c06eea14-8f77-43ef-98e0-b29e07d80897}, journal = {}, number = , volume = , place = {United States}, year = {2022}, month = {10}}

Details

Data from Oct 24, 2022

Last updated Dec 18, 2024

Submitted Oct 24, 2022

Organization

Chemistry & Nanoscience

Contact

Lance Wheeler

Authors

Wheeler

Chemistry & Nanoscience

DOE Project Details

Project Name Combining high thermal performance, switchability, and energy generation into a unified durable window platform

Project Number DE-AC36-08GO28308

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