Publications

Here you will find research Research papers enabled by Fluxim’s development tools

Research Paper: Coordination-Based Doping of MEH-PPV with La(TFSI)3 Enables Air-Free Conductivity 2 and Stable Performance in Perovskite Solar Cells
Paios, Paper Fluxim AG Paios, Paper Fluxim AG

Research Paper: Coordination-Based Doping of MEH-PPV with La(TFSI)3 Enables Air-Free Conductivity 2 and Stable Performance in Perovskite Solar Cells

McPherson, Seth W. and Chou, Yeh-Chuan and Shin, Insoo and Maclean, Stephen A. and Li, Tai-De and Lin, Chieh-Ting and Kong, Jaemin and Rohr, Jason A. and Taylor, André D., Coordination-Based Doping of Meh-Ppv with La(Tfsi)3 Enables Air-Free Conductivity and Stable Performance in Perovskite Solar Cells.

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Research Paper: Dopant-free hydrophobic fluorene-based HTMs with methoxy-triphenylamine and carbazole groups for improved perovskite solar cell performance
Paios, Paper Fluxim AG Paios, Paper Fluxim AG

Research Paper: Dopant-free hydrophobic fluorene-based HTMs with methoxy-triphenylamine and carbazole groups for improved perovskite solar cell performance

Bhat, V.G., Keremane, K.S., Subramanya, K.S., Archana, S., Hegde, A., Asuo, I.M., Poudel, B. and Dalimba, U.K. (2025), Dopant-free hydrophobic fluorene-based hole transport materials: impact of methoxy-substituted triphenylamine and carbazole peripheral groups on the performance of perovskite solar cells. Sustainable Energy Fuels, 9: 2769.

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Research Paper: Dicyandiamide‑Driven Tailoring of the n‑Value Distribution and Interface Dynamics for High‑Performance ACI 2D Perovskite Solar Cell
Paios, Paper Fluxim AG Paios, Paper Fluxim AG

Research Paper: Dicyandiamide‑Driven Tailoring of the n‑Value Distribution and Interface Dynamics for High‑Performance ACI 2D Perovskite Solar Cell

Chen, G., Gan, Y., Wang, S., Liu, X., Yang, J., Peng, S., Zhao, Y., Li, P., Komilov, A., Song, Y., Zhang, Y. (2025), Dicyandiamide‑Driven Tailoring of the n‑Value Distribution and Interface Dynamics for High‑Performance ACI 2D Perovskite Solar Cells. Nano-Micro Lett., 17:305.

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Research Paper: Barrier layer design reduces top electrode ion migration in perovskite solar cells
Paios, Paper Fluxim AG Paios, Paper Fluxim AG

Research Paper: Barrier layer design reduces top electrode ion migration in perovskite solar cells

Penukula, S., Khanal, M.N., Sharma, M., Parashar, M., Kerner, R.A., Chen, M., Davis, M.A., Saha, R.A., Solano, E., Roeffaers, M.B.J., Berry, J.J., Luther, J.M., Steele, J.A., Palmstrom, A., Whiteside, V.R., Rout, B., Sellers, I.R. and Rolston, N. (2025), Barrier layer design reduces top electrode ion migration in perovskite solar cells. EES Sol., 1, 345.

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Research Paper: Dopant and Structure Optimization for OLED Microdisplays
Paper Fluxim AG Paper Fluxim AG

Research Paper: Dopant and Structure Optimization for OLED Microdisplays

Cho, H., Ahn, D. H., Choi, S., Kim, G. H., Joo, C. W., Kang, C., Shin, J.-W., Kim, K., Kwon, B.-H., Byun, C., Cho, N. S., An, Y. J., Kim, J. S., & Youn, H. M. (2025). Strategic use of dopants and device structure optimization for enhanced color gamut and efficiency in organic light-emitting diodes microdisplay applications. Optical Materials, 159, 116571.

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Surfing the Color Map with Carbazole-Appended Cyclometalated N-Heterocyclic Carbene Pt Complexes and Their Application in Green Organic Light-Emitting Devices
Paper, Setfos, Phelos, Paios Fluxim AG Paper, Setfos, Phelos, Paios Fluxim AG

Surfing the Color Map with Carbazole-Appended Cyclometalated N-Heterocyclic Carbene Pt Complexes and Their Application in Green Organic Light-Emitting Devices

J. Roy, M. Forzatti, A. Martín, I. Ara, E. Stanzani, S. Jenatsch, H. J. Bolink, S. Fuertes, D. Tordera, V. Sicilia, Surfing the Color Map with Carbazole-Appended Cyclometalated N-Heterocyclic Carbene Pt Complexes and Their Application in Green Organic Light-Emitting Devices. Adv. Optical Mater. 2025, 2500051.

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Enhancing Indoor Photovoltaic Efficiency to 37.6% Through Triple Passivation Reassembly and n-Type to p-Type Modulation in Wide Bandgap Perovskites
Paper, Paios Fluxim AG Paper, Paios Fluxim AG

Enhancing Indoor Photovoltaic Efficiency to 37.6% Through Triple Passivation Reassembly and n-Type to p-Type Modulation in Wide Bandgap Perovskites

S. Huang, S. Hou, G. Sanfo, J. Xu, Y. Wang, H. Muwanwella, L. Pfeifer, X. Liu, S. M. Zakeeruddin, Y. Huang, M. Grätzel, M. T. Sajjad, M. Abdi-Jalebi, Enhancing Indoor Photovoltaic Efficiency to 37.6% Through Triple Passivation Reassembly and n-Type to p-Type Modulation in Wide Bandgap Perovskites. Adv. Funct. Mater. 2025, 2502152.

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