27.09%-efficiency silicon heterojunction back contact solar cell and going beyond

G Wang, Q Su, H Tang, H Wu, H Lin, C Han… - Nature …, 2024 - nature.com
Crystalline-silicon heterojunction back contact solar cells represent the forefront of
photovoltaic technology, but encounter significant challenges in managing charge carrier …

Silicon heterojunction back contact solar cells by laser patterning

H Wu, F Ye, M Yang, F Luo, X Tang, Q Tang, H Qiu… - Nature, 2024 - nature.com
Back contact silicon solar cells, valued for their aesthetic appeal by removing grid lines on
the sunny side, find applications in buildings, vehicles and aircrafts, enabling self-power …

Inorganic photovoltaics–planar and nanostructured devices

J Ramanujam, A Verma, B González-Díaz… - Progress in Materials …, 2016 - Elsevier
Since its invention in the 1950s, semiconductor solar cell technology has evolved in great
leaps and bounds. Solar power is now being considered as a serious leading contender for …

High-efficiency silicon solar cells—materials and devices physics

S Xiao, S Xu - Critical reviews in solid state and materials sciences, 2014 - Taylor & Francis
High-efficiency Si solar cells have attracted great attention from researchers, scientists,
engineers of photovoltaic (PV) industry for the past few decades. Many researchers …

Design, fabrication and characterisation of a 24.4% efficient interdigitated back contact solar cell

E Franklin, K Fong, K McIntosh, A Fell… - Progress in …, 2016 - Wiley Online Library
The interdigitated back contact (IBC) solar cells developed at the Australian National
University have resulted in an independently confirmed (Fraunhofer Institut für Solare …

Griddler: Intelligent computer aided design of complex solar cell metallization patterns

J Wong - 2013 IEEE 39th Photovoltaic Specialists Conference …, 2013 - ieeexplore.ieee.org
Solar cell designs with complex metallization geometries such as metal wrap through
(MWT), interdigitated-back-contact (IBC) cells, and metal grids with non-ideal features like …

Back-contacted silicon heterojunction solar cells with efficiency> 21%

A Tomasi, B Paviet-Salomon… - IEEE Journal of …, 2014 - ieeexplore.ieee.org
We report on the fabrication of back-contacted silicon heterojunction solar cells with
conversion efficiencies above 21%. Our process technology relies solely on simple and size …

A surface modifier enhances the performance of the all-inorganic CsPbI 2 Br perovskite solar cells with efficiencies approaching 15%

K Wang, J Zhou, X Li, N Ahmad, H Xia, G Wu… - Physical Chemistry …, 2020 - pubs.rsc.org
All-inorganic perovskite solar cells (PSCs) are attracting considerable attention due to their
promising thermal stability, but their inferior power-conversion efficiencies (PCE) hinder their …

Dopant-free multilayer back contact silicon solar cells employing V 2 O x/metal/V 2 O x as an emitter

W Wu, W Lin, J Bao, Z Liu, B Liu, K Qiu, Y Chen… - Rsc Advances, 2017 - pubs.rsc.org
In this study, we present novel multilayer back contact (MLBC) solar cells employing V2Ox (8
nm)/metal/V2Ox (8 nm)(VMV) multilayers as dopant-free hole-selective contacts deposited …

Back-contacted silicon heterojunction solar cells: optical-loss analysis and mitigation

B Paviet-Salomon, A Tomasi… - IEEE Journal of …, 2015 - ieeexplore.ieee.org
We analyze the optical losses that occur in interdigitated back-contacted
amorphous/crystalline silicon heterojunction solar cells. We show that in our devices, the …