Hefei Institutes of Physical Science

Parallel Planar Heterojunction: A Promising Strategy for Enhancing Solar Cell Efficiency
Discover a new breakthrough strategy to maximize the efficiency of solar cells! The PPHJ device, consisting of two types of conventional PHJ subcells and antimony trisulfide, simplifies the preparation process of solar cells and has achieved an impressive 8.32% efficiency- the highest among all Sb2S3 devices. Unlock the potential of low-cost and efficient solar cells!
Nov 13, 2023 // Technology, solar cell, efficiency, Chinese Academy of Sciences, CAS, Hefei Institutes of Physical Science, HFIPS, Wang Mingtai, Institute of Solid State Physics
Molecular Bridge Boosts Perovskite Solar Cells
A research team has proposed a novel strategy to enhance the performance of perovskite solar cells; using a molecular bridge made of ammonium cations to create a strong connection between layers. Theoretical and experimental studies show promise for top-performing solar cells, with potential for clean energy generation.
Nov 8, 2023 // Technology, Chinese Academy of Sciences, CAS, perovskite solar cells, Pan Xu, Hefei Institutes of Physical Science, Institute of Solid-State Physics, HIPS
Directional management of user interface defects achieved in perovskite solar cells
Organic-inorganic halide perovskite products have outstanding optical capture capacity and also service provider conductivity. Perovskite solar cells, with amazing power conversion effectiveness, reveal fantastic application potential customers.
Dec 1, 2021 // Technology, China, Asia, perovskite solar cells, Pan Xu, Hefei Institutes of Physical Science, HFIPS
Directional administration of interface problems achieved in perovskite solar cells
Organic-inorganic halide perovskite products have superb optical capture capacity and also carrier conductivity.
Nov 25, 2021 // Technology, China, solar cells, Asia, perovskite, Chinese Academy of Sciences, Pan Xu, Hefei Institutes of Physical Science, HFIPS