From post

Integrating Ultrathin Bulk-Heterojunction Organic Semiconductor Intermediary for High-Performance Low-Bandgap Perovskite Solar Cells with Low Energy Loss

, , , , , , , , , и . Advanced Functional Materials, (2018)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed.

 

Другие публикации лиц с тем же именем

Nonfullerene Polymer Solar Cells based on a Perylene Monoimide Acceptor with a High Open-Circuit Voltage of 1.3 V, , , , , и . Advanced Functional Materials, 27 (10): n/a--n/a (2017)Combining Energy Transfer and Optimized Morphology for Highly Efficient Ternary Polymer Solar Cells, , , , , , , , , и 5 other автор(ы). Advanced Energy Materials, (2017)High-Performance Colorful Semitransparent Polymer Solar Cells with Ultrathin Hybrid-Metal Electrodes and Fine-Tuned Dielectric Mirrors, , , , , , , , , и 1 other автор(ы). Advanced Functional Materials, 27 (15): n/a--n/a (2017)A Synergetic Effect of Molecular Weight and Fluorine in All-Polymer Solar Cells with Enhanced Performance, , , , , , и . Advanced Functional Materials, (2016)Origin of Efficient Inverted Nonfullerene Organic Solar Cells: Enhancement of Charge Extraction and Suppression of Bimolecular Recombination Enabled by Augmented Internal Electric Field, , , , , , и . The Journal of Physical Chemistry Letters, 8 (21): 5264-5271 (2017)PMID: 29027803.New Strategy for Two‐Step Sequential Deposition: Incorporation of Hydrophilic Fullerene in Second Precursor for High‐Performance p‐i‐n Planar Perovskite Solar Cells, , , , , , , , , и . Advanced Energy Materials, (апреля 2018)Overcoming the Interface Losses in Planar Heterojunction Perovskite-Based Solar Cells, , , , , , , , , и 12 other автор(ы). Advanced Materials, 28 (25): 5112--5120 (2016)Feasible D1–A–D2–A Random Copolymers for Simultaneous High-Performance Fullerene and Nonfullerene Solar Cells, , , , , , , , , и . Advanced Energy Materials, (2017)A Fused Ring Electron Acceptor with Decacyclic Core Enables over 13.5 % Efficiency for Organic Solar Cells, , , , , , , , , и 1 other автор(ы). Advanced Energy Materials, 8 (30): 1802050 (сентября 2018)10.8% Efficiency Polymer Solar Cells Based on PTB7-Th and PC71BM via Binary Solvent Additives Treatment, , , , , , , и . Advanced Functional Materials, 26 (36): 6635--6640 (2016)