<?xml version='1.0' encoding='UTF-8'?><codeBook xmlns="ddi:codebook:2_5" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="ddi:codebook:2_5 https://ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" version="2.5"><docDscr><citation><titlStmt><titl>Replication Data for: Bifacial, Color-Tunable Semitransparent Perovskite Solar Cells for Building-Integrated Photovoltaics</titl><IDNo agency="DOI">doi:10.21979/N9/NDEFOW</IDNo></titlStmt><distStmt><distrbtr source="archive">DR-NTU (Data)</distrbtr><distDate>2020-04-24</distDate></distStmt><verStmt source="archive"><version date="2023-09-28" type="RELEASED">2</version></verStmt><biblCit>Wang, Hao; Dewi, Herlina Arianita; Koh, Teck Ming; Bruno, Annalisa; Mhaisalkar, Subodh; Mathews, Nripan, 2020, "Replication Data for: Bifacial, Color-Tunable Semitransparent Perovskite Solar Cells for Building-Integrated Photovoltaics", https://doi.org/10.21979/N9/NDEFOW, DR-NTU (Data), V2</biblCit></citation></docDscr><stdyDscr><citation><titlStmt><titl>Replication Data for: Bifacial, Color-Tunable Semitransparent Perovskite Solar Cells for Building-Integrated Photovoltaics</titl><IDNo agency="DOI">doi:10.21979/N9/NDEFOW</IDNo></titlStmt><rspStmt><AuthEnty affiliation="Nanyang Technological University">Wang, Hao</AuthEnty><AuthEnty affiliation="Nanyang Technological University">Dewi, Herlina Arianita</AuthEnty><AuthEnty affiliation="Nanyang Technological University">Koh, Teck Ming</AuthEnty><AuthEnty affiliation="Nanyang Technological University">Bruno, Annalisa</AuthEnty><AuthEnty affiliation="Nanyang Technological University">Mhaisalkar, Subodh</AuthEnty><AuthEnty affiliation="Nanyang Technological University">Mathews, Nripan</AuthEnty></rspStmt><prodStmt><software version="8">OriginLab</software><grantNo agency="National Research Foundation (NRF)">NRF2018-ITC001-001</grantNo><grantNo agency="National Research Foundation (NRF)">NRF-CRP14-2014-03</grantNo><grantNo agency="National Research Foundation (NRF)">NRF2015-EWT-EIRP003-004</grantNo><grantNo agency="National Research Foundation (NRF)">Solar CRP (S18-1176-SCRP</grantNo><grantNo agency="Office of Naval Research Global">ONRG-NICOP-N62909-17-1-2155</grantNo></prodStmt><distStmt><distrbtr source="archive">DR-NTU (Data)</distrbtr><contact affiliation="Nanyang Technological University">Wang, Hao</contact><contact affiliation="Nanyang Technological University">Dewi, Herlina Arianita</contact><depositr>Wang, Hao</depositr><depDate>2020-04-24</depDate></distStmt><holdings URI="https://doi.org/10.21979/N9/NDEFOW"/></citation><stdyInfo><subject><keyword xml:lang="en">Engineering</keyword><keyword>colorful perovskite solar cell</keyword><keyword>bifacial solar cell</keyword><keyword>semitransparent perovskite solar cell</keyword><keyword>CuSCN</keyword></subject><abstract>Efficient
bifacial colorful ST-PSCs were demonstrated using copper thiocyanate (CuSCN), as a holetransporting material, in an n−i−p architecture. The n−i−p ST-PSCs exhibit
the highest reported bifacial factor of 93.7% and achieve a bifacial equivalent
efficiency of 22.1% when illuminated under 1 sun standard conditions on the
front side and with a reflected albedo of ∼54.4% from the back side. We have
also demonstrated that the colorful appearance of CuSCN-based ST-PSCs
can be easily tuned across the entire visible spectrum by tuning either the indium tin oxide (ITO) or the CuSCN thickness without affecting their final efficiency. The wide colorful tunability and excellent bifacial photovoltaic behavior of CuSCN-based
ST-PSCs make them a promising candidate for BIPV applications.</abstract><sumDscr><dataKind>experiment data</dataKind><dataKind>simulation data</dataKind></sumDscr></stdyInfo><method><dataColl><sources/></dataColl><anlyInfo/></method><dataAccs><setAvail/><useStmt/></dataAccs><othrStdyMat><relPubl><citation><titlStmt><titl>Wang, H., Dewi, H. A., Koh, T. M., Bruno, A., Mhaisalkar, S., &amp; Mathews, N. (2019). Bifacial, color-tunable semitransparent perovskite solar cells for building-integrated photovoltaics. ACS Applied Materials &amp; Interfaces, 12(1), 484-493.</titl><IDNo agency="doi">10.1021/acsami.9b15488</IDNo></titlStmt><biblCit>Wang, H., Dewi, H. A., Koh, T. M., Bruno, A., Mhaisalkar, S., &amp; Mathews, N. (2019). Bifacial, color-tunable semitransparent perovskite solar cells for building-integrated photovoltaics. ACS Applied Materials &amp; Interfaces, 12(1), 484-493.</biblCit></citation><ExtLink URI="https://pubs.acs.org/doi/abs/10.1021/acsami.9b15488"/></relPubl><relPubl><citation><titlStmt><titl>Wang, H., Dewi, H. A., Koh, T. M., Bruno, A., Mhaisalkar, S., &amp; Mathews, N. (2019). Bifacial, color-tunable semitransparent perovskite solar cells for building-integrated photovoltaics. ACS Applied Materials &amp; Interfaces, 12(1), 484-493.</titl><IDNo agency="handle">10356/142485</IDNo></titlStmt><biblCit>Wang, H., Dewi, H. A., Koh, T. M., Bruno, A., Mhaisalkar, S., &amp; Mathews, N. (2019). Bifacial, color-tunable semitransparent perovskite solar cells for building-integrated photovoltaics. ACS Applied Materials &amp; Interfaces, 12(1), 484-493.</biblCit></citation><ExtLink URI="https://hdl.handle.net/10356/142485"/></relPubl></othrStdyMat></stdyDscr><otherMat ID="f118940" URI="https://researchdata.ntu.edu.sg/api/access/datafile/118940" level="datafile"><labl>Raw data for Bifacial, Color-Tunable Semitransparent Perovskite Solar Cells for Building-Integrated Photovoltaics_DRAFT.pptx</labl><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/vnd.openxmlformats-officedocument.presentationml.presentation</notes></otherMat><otherMat ID="f27412" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27412" level="datafile"><labl>Figure 1 a -.jpg</labl><txt>SEM image showing the morphology of&#xd;
CuSCN films.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">image/jpeg</notes></otherMat><otherMat ID="f27408" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27408" level="datafile"><labl>Figure 1 a.opj</labl><txt>Transmittance spectra of CuSCN films on glass. </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27413" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27413" level="datafile"><labl>Figure 1 b -.tif</labl><txt>SEM image shows the morphology of perovskite films</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">image/tiff</notes></otherMat><otherMat ID="f27411" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27411" level="datafile"><labl>Figure 1 b.opj</labl><txt> Steady-state photoluminescence spectra of perovskite films and a triple-cation perovskite/CuSCN bilayer on glass substrates</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27409" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27409" level="datafile"><labl>Figure 1 d.png</labl><txt>Crosssectional field emission scanning electron microscopy (FESEM) image of bifacial ST-PSCs</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">image/png</notes></otherMat><otherMat ID="f27410" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27410" level="datafile"><labl>Figure 2 a.opj</labl><txt>(a) Current−voltage (J−V) curves of Bifacial ST-PSC in the dark and under 1 sun illumination.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27415" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27415" level="datafile"><labl>Figure 2 b.opj</labl><txt>External quantum efficiency (EQE) spectra and integrated current density of ST-PSC</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27416" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27416" level="datafile"><labl>Figure 2 c.opj</labl><txt>Optical analysis of CuSCN STPSCs and their integrated current density (calculated for λ = 300−800 nm)</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27407" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27407" level="datafile"><labl>Figure 2 d.opj</labl><txt>Optical analysis of Spiro-OMeTAD ST-PSCs and their integrated current density (calculated for λ = 300−800 nm)</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27550" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27550" level="datafile"><labl>Figure 3 b _s.jpg</labl><txt>Reflection albedo determination using power meter</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">image/jpeg</notes></otherMat><otherMat ID="f27551" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27551" level="datafile"><labl>Figure 3 b.opj</labl><txt>Current−voltage characteristics of the bifacial STPSC when illuminated using the setup described in (a), with front direct 1 sun illumination and back RAs of 33.7% (orange curve) and 54.4% (red&#xd;
curve)</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27552" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27552" level="datafile"><labl>Figure 3 c_1.opj</labl><txt>Calculated prediction of bifacial equivalent efficiency of bifacial ST-PSCs with different RAs </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27553" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27553" level="datafile"><labl>Figure 3 c_2.opj</labl><txt>experimental measurements of bifacial equivalent efficiency of bifacial ST-PSCs with 33.7% RA and 54.4% RA  </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27555" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27555" level="datafile"><labl>Figure 4 a _s.opj</labl><txt>optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (a) CuSCN = 50 nm, with different ITO thicknesses. </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27556" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27556" level="datafile"><labl>Figure 4 a.opj</labl><txt>color coordinates (x, y) in the CIE 1931 chromaticity diagram of optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (a) CuSCN = 50 nm, with different ITO thicknesses. </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27557" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27557" level="datafile"><labl>Figure 4 b _s.opj</labl><txt>optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (b) CuSCN = 110 nm, with different ITO thicknesses. </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27559" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27559" level="datafile"><labl>Figure 4 b.opj</labl><txt>color coordinates (x, y) in the CIE 1931 chromaticity diagram of optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (b) CuSCN = 110 nm, with different ITO thicknesses. </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27560" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27560" level="datafile"><labl>Figure 4 c _s.opj</labl><txt>optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (c) ITO = 100 nm, with different CuSCN thicknesses.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27562" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27562" level="datafile"><labl>Figure 4 c.opj</labl><txt>color coordinates (x, y) in the CIE 1931 chromaticity diagram of optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (c) ITO = 100 nm, with different CuSCN thicknesses.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27563" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27563" level="datafile"><labl>Figure 4 d _s.opj</labl><txt>optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (d) ITO = 200 nm, with different CuSCN thicknesses.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27565" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27565" level="datafile"><labl>Figure 4 d.opj</labl><txt>color coordinates (x, y) in the CIE 1931 chromaticity diagram of optical simulated light reflectance spectra of CuSCN based bifacial ST-PSCs from the ITO electrode side. (d) ITO = 200 nm, with different CuSCN thicknesses.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27568" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27568" level="datafile"><labl>Figure 5 b.opj</labl><txt> color coordinates (x, y) of the colorful&#xd;
CuSCN-based ST-PSCs with different ITO thicknesses in the CIE 1931 chromaticity diagram.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27569" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27569" level="datafile"><labl>Figure 5 c.opj</labl><txt> Reflectance spectra of CuSCN-based ST-PSCs with pink, purple, blue, and green colors when the ITO thickness is about 145, 170, 190, and 210 nm, respectively. </txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27570" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27570" level="datafile"><labl>Figure 5 d.opj</labl><txt> Integrated Jsc calculated from back-EQE spectra (from the rear ITO&#xd;
side) for CuSCN-based ST-PSCs with different ITO thicknesses.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat><otherMat ID="f27571" URI="https://researchdata.ntu.edu.sg/api/access/datafile/27571" level="datafile"><labl>Figure 5 d_s.opj</labl><txt>back-EQE spectra (from the rear ITO&#xd;
side) for CuSCN-based ST-PSCs with different ITO thicknesses.</txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/octet-stream</notes></otherMat></codeBook>