Progress and prospects for ultrathin solar cells
Ultrathin solar cells with thicknesses at least 10 times lower than conventional solar cells
could have the unique potential to efficiently convert solar energy into electricity while …
could have the unique potential to efficiently convert solar energy into electricity while …
Recent advances in materials design using atomic layer deposition for energy applications
The design and development of materials at the nanoscale has enabled efficient, cutting‐
edge renewable energy storage, and conversion devices such as solar cells, water splitting …
edge renewable energy storage, and conversion devices such as solar cells, water splitting …
Realization of 18.97% theoretical efficiency of 0.9 μm thick c-Si/ZnO heterojunction ultrathin-film solar cells via surface plasmon resonance enhancement
F Zhao, J Lin, Z Lei, Z Yi, F Qin, J Zhang, L Liu… - Physical Chemistry …, 2022 - pubs.rsc.org
In this work, we demonstrate that the performance of c-Si/ZnO heterojunction ultrathin-film
solar cells (SCs) is enhanced by an integrated structure of c-Si trapezoidal pyramids on the …
solar cells (SCs) is enhanced by an integrated structure of c-Si trapezoidal pyramids on the …
High-efficiency silicon heterojunction solar cells: materials, devices and applications
Photovoltaic (PV) technology offers an economic and sustainable solution to the challenge
of increasing energy demand in times of global warming. The world PV market is currently …
of increasing energy demand in times of global warming. The world PV market is currently …
Passivating contacts for high-efficiency silicon-based solar cells: from single-junction to tandem architecture
J Zhou, Q Huang, Y Ding, G Hou, Y Zhao - Nano Energy, 2022 - Elsevier
The electricity market from renewable energies is strongly driven by the pursuit of high
energy conversion efficiency, which at present represents the most effective pathway to …
energy conversion efficiency, which at present represents the most effective pathway to …
High efficiency flexible PEDOT: PSS/silicon hybrid heterojunction solar cells by employing simple chemical approaches
In the development of efficient and cost-effective hybrid heterojunction solar cells (HHSCs),
thin-flexible solar cells based on conjugated polymer poly (3, 4-ethylenedioxythiophene) …
thin-flexible solar cells based on conjugated polymer poly (3, 4-ethylenedioxythiophene) …
Performance‐enhancing approaches for PEDOT: PSS‐Si hybrid solar cells
The emerging energy crisis has focused significant worldwide attention on solar cells.
Although crystalline silicon solar cells are currently widely used, their high cost limits the …
Although crystalline silicon solar cells are currently widely used, their high cost limits the …
Enabling transparent‐conductive‐oxide free efficient heterojunction solar cells by flexibly using dopant‐free contact
Minimizing the optical parasitic absorption loss in hydrogenated amorphous silicon (a‐Si: H)
and transparent conductive oxide (TCO) layers is considered an effective approach to further …
and transparent conductive oxide (TCO) layers is considered an effective approach to further …
Atomic layer deposition enabling higher efficiency solar cells: A review
Atomic layer deposition (ALD) can synthesise materials with atomic-scale precision. The
ability to tune the material composition, film thickness with excellent conformality, allow low …
ability to tune the material composition, film thickness with excellent conformality, allow low …
Progress in passivating selective contacts for heterojunction silicon solar cells
Photovoltaic (PV) technology, particularly silicon solar cells (SSCs), has emerged as a key
player in meeting this demand due to its mature technology, prolonged stability, non-toxicity …
player in meeting this demand due to its mature technology, prolonged stability, non-toxicity …