
Xingxing Zhang
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CH3NH3PbI3, A Potential Solar Cell Candidate: Structural and Spectroscopic Investigations
Impact of Selective Contacts on Long-Term Stability of CH3NH3PbI3 Perovskite Solar Cells
Electronic and Optical Properties of VSc2N@C68 Fullerene
Morphology Evolution of High Efficiency Perovskite Solar Cells via Vapor Induced Intermediate Phases
All-Inorganic Perovskite Solar Cells
Intrinsic Halide Segregation at Nanometer Scale Determines the High Efficiency of Mixed Cation/Mixed Halide Perovskite Solar Cells
Intriguing Photochemistry of the Additives in the Dye-Sensitized Solar Cells
Understanding Physico-Chemical Aspects in the Depth Profiling of Polymer:Fullerene Layers
A Thieno[3,4-b]thiophene-Based Non-fullerene Electron Acceptor for High-Performance Bulk-Heterojunction Organic Solar Cells
Donor–Acceptor Interfaces by Engineered Nanoparticles Assemblies for Enhanced Efficiency in Plastic Planar Heterojunction Solar Cells
Density Functional Theory Study of Selenium-Substituted Low-Bandgap Donor–Acceptor–Donor Polymer
Reducing the efficiency–stability–cost gap of organic photovoltaics with highly efficient and stable small molecule acceptor ternary solar cells
Nature Materials. doi:10.1038/nmat4797
Authors: Derya Baran, Raja Shahid Ashraf, David A. Hanifi, Maged Abdelsamie, Nicola Gasparini, Jason A. Röhr, Sarah Holliday, Andrew Wadsworth, Sarah Lockett, Marios Neophytou, Christopher J. M. Emmott, Jenny Nelson, Christoph J. Brabec, Aram Amassian, Alberto Salleo, Thomas Kirchartz, James R. Durrant & Iain McCulloch
Triarylamine: Versatile Platform for Organic, Dye-Sensitized, and Perovskite Solar Cells
Crystallization of HC(NH2)2PbI3 Black Polymorph by Solvent Intercalation for Low Temperature Solution Processing of Perovskite Solar Cells
Efficient Perovskite Solar Cells Based on Multilayer Transparent Electrodes through Morphology Control
Nitrogen Plasma Surface Modification of Poly(3,4-ethylenedioxythiophene):Poly(styrenesulfonate) Films To Enhance the Piezoresistive Pressure-Sensing Properties
A Strategy for Enhancing the Performance of Borondipyrromethene Dye-Sensitized Solar Cells
Stark Spectroscopy of Absorption and Emission of Indoline Sensitizers: A Correlation with the Performance of Photovoltaic Cells
Modulating FRET in Organic–Inorganic Nanohybrids for Light Harvesting Applications
Realizing High Performance Inverted Organic Solar Cells via a Nonconjugated Electrolyte Cathode Interlayer
Copper Bipyridyl Redox Mediators for Dye-Sensitized Solar Cells with High Photovoltage
Side-Chain Isomerization on an n-type Organic Semiconductor ITIC Acceptor Makes 11.77% High Efficiency Polymer Solar Cells
TiO2–ZnS Cascade Electron Transport Layer for Efficient Formamidinium Tin Iodide Perovskite Solar Cells
Sc3O@Ih(7)-C80: A Trimetallic Oxide Clusterfullerene Abundant in the Raw Soot
Graded bandgap perovskite solar cells
Nature Materials. doi:10.1038/nmat4795
Authors: Onur Ergen, S. Matt Gilbert, Thang Pham, Sally J. Turner, Mark Tian Zhi Tan, Marcus A. Worsley & Alex Zettl
Organic–inorganic halide perovskite materials have emerged as attractive alternatives to conventional solar cell building blocks. Their high light absorption coefficients and long diffusion lengths suggest high power conversion efficiencies, and indeed perovskite-based single bandgap and tandem solar cell designs have yielded impressive performances. One approach to further enhance solar spectrum utilization is the graded bandgap, but this has not been previously achieved for perovskites. In this study, we demonstrate graded bandgap perovskite solar cells with steady-state conversion efficiencies averaging 18.4%, with a best of 21.7%, all without reflective coatings. An analysis of the experimental data yields high fill factors of ∼75% and high short-circuit current densities up to 42.1 mA cm−2. The cells are based on an architecture of two perovskite layers (CH3NH3SnI3 and CH3NH3PbI3−xBrx), incorporating GaN, monolayer hexagonal boron nitride, and graphene aerogel.


























