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The photoelectric conversion efficiency of bulk photovoltaic devices has been limited by open circuit voltages or short circuit current densities. Here, authors construct a 2D
Energy conversion efficiency limits for the bulk photovoltaic effect, a mechanism for conversion of light into electricity in solids, are
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The limitations imposed by low contact resistance, restricted polarization access, and tensile strain in bulk photovoltaic systems were mitigated by the engineering and
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This paper proposes a new bidirectional buck-boost converter, which is a key component in a photovoltaic and energy storage system (ESS). Conventional bidirectional
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In contrast to the conventional photovoltaic effect based on p-n or Schottky junctions [1], a bulk photovoltaic effect is driven by a polarization field generated through the
The bulk photovoltaic effect (BPVE) leads to directed photocurrents and photovoltages in bulk mate-rials. Unlike photovoltages in p-n junction solar cells that are limited by carrier
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Light: Science & Applications 14, Article number: 89 (2025) Cite this article The limitations imposed by low contact resistance, restricted polarization access, and tensile strain in bulk photovoltaic systems were mitigated by the engineering and optimization of edge semimetal contacts using Bi/Au.
The limitations imposed by low contact resistance, restricted polarization access, and tensile strain in bulk photovoltaic systems were mitigated by the engineering and optimization of edge semimetal contacts using Bi/Au. Improved bulk PV photocurrent and intriguing prospective applications are made possible by this effort.
The intrinsic homogeneity of BPVE systems, along with their potential to exceed the Shockley–Queisser efficiency limit, makes BPVE a promising candidate for next-generation photovoltaic technologies 3. Traditional non-centrosymmetric materials utilized in BPVE systems have an array of challenges despite their promise.
In this strain-modified state, the photocurrent experiences a remarkable increase due to the asymmetric distribution of photo-excited carriers, unlocking new potential for optimizing photovoltaic performance in semiconductors through mechanical manipulation 2, 7.