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20242026
most citedRethinking Charge Transport and Recombination in Donor-diluted Organic Solar Cells

1 citations · 1 across the 1 of their papers we have counts for

collaborators

5 papers

cond-mat.mtrl-sci20261 cited

Rethinking Charge Transport and Recombination in Donor-diluted Organic Solar Cells

Chen Wang, Christopher Wöpke, Toni Seiler +12

We systematically investigate PM6:Y12 bulk-heterojunction solar cells with donor fractions ranging from 1% to 45%, linking morphology, charge transport, and recombination to device…

cond-mat.mtrl-sci2026

Bridging the lab-to-fab gap in non-fullerene organic solar cells via gravure printing

Svitlana Taranenko, Chen Wang, David Holzner +10

Organic solar cells have reached record efficiencies with non-fullerene acceptors, yet their translation to industrial printing remains a critical bottleneck. Here we report the hi…

cond-mat.mtrl-sci2025

The contribution of electron and hole conductivity to the transport loss in organic solar cells

Chen Wang, Toni Seiler, Doyoung Sun +3

The effective conductivity determines the reciprocal of the transport resistance, the dominant loss of fill factor in organic solar cells. We experimentally determine the dependenc…

physics.app-ph2025

A Framework to Pinpoint Bottlenecks in Emerging Solar Cells and Disordered Devices via Differential Machine Learning

Cai Williams, Chen Wang, Alexander Ehm +4

A key challenge in the development of materials for the next generation of solar cells, sensors and transistors is linking macroscopic device performance to underlying microscopic…

cond-mat.mtrl-sci2024

Transport resistance dominates the fill factor losses in record organic solar cells

Chen Wang, Roderick C. I. MacKenzie, Uli Würfel +4

Organic photovoltaics are a promising solar cell technology well-suited to mass production using roll-to-roll processes. The efficiency of lab-scale solar cells has exceeded 20% an…