Interfacial engineering and optical coupling for multicolored semitransparent inverted organic photovoltaics with a record efficiency of over 12%
- 6 June 2019
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Journal of Materials Chemistry A
- Vol. 7 (26), 15887-15894
- https://doi.org/10.1039/c9ta05789g
Abstract
Semitransparent organic solar cells (ST-OSCs) exhibit great potential in building-integrated photovoltaics (BIPV) due to their low cost large area manufacturing process manufacturing process and tunable vivid colors for power-generating glass. However, the contradiction of achieving high power conversion efficiency (PCE) whilst keeping rational average visible transmittance (AVT) leads to the development of ST-OSCs lagging behind that of traditional opaque OSCs. In this work, chemically precipitated SnO2 colloidal particles are used as an electron collection interlayer in ST-OSCs for the first time. Due to the excellent transparency and high reflective index, the SnO2 layer can effectively tune the light-distribution of the incident light within the whole multilayered ST-OSCs. Guided by finite-difference time-domain (FDTD) and optical transfer matrix formalism (TMF) simulation, we successfully solved the contradiction between PCE and AVT, and achieved multicolored ST-OSCs with record high efficiency. The deep blue device shows the highest PCE of 12.88%, AVT of 25.60% (from 370 nm to 740 nm) and color rendering index (CRI) of 97.6, which are the best values for the state-of-the-art ST-OSCs. Our findings indicate that interfacial engineering and optical coupling are effective approaches to achieve high performance ST-OSCs with vivid colors, remarkable transparency and high efficiency.Funding Information
- National Natural Science Foundation of China (51573042, 51873007, 21835006)
- Fundamental Research Funds for the Central Universities (2019MS025, 2018MS032, 2017MS027, 2017XS084)
This publication has 46 references indexed in Scilit:
- Single-Junction Organic Solar Cell with over 15% Efficiency Using Fused-Ring Acceptor with Electron-Deficient CoreJoule, 2019
- Heat-Insulating Multifunctional Semitransparent Polymer Solar CellsJoule, 2018
- Recent advances in semi-transparent polymer and perovskite solar cells for power generating window applicationsEnergy & Environmental Science, 2018
- Flexible and Semitransparent Organic Solar CellsAdvanced Energy Materials, 2017
- Emerging Semitransparent Solar Cells: Materials and Device DesignAdvanced Materials, 2017
- Organic photovoltaic greenhouses: a unique application for semi-transparent PV?Energy & Environmental Science, 2015
- Transparent polymer solar cells employing a layered light-trapping architectureNature Photonics, 2013
- Inverted Semi‐transparent Polymer Solar Cells with Transparency Color Rendering Indices approaching 100Advanced Energy Materials, 2012
- Semi-transparent polymer solar cells with 6% PCE, 25% average visible transmittance and a color rendering index close to 100 for power generating window applicationsEnergy & Environmental Science, 2012
- Efficient Semi‐Transparent Organic Solar Cells with Good Transparency Color Perception and Rendering PropertiesAdvanced Energy Materials, 2011