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

Thin Thermally Evaporated Organic Hole Transport Layers for Reduced Optical Losses in Substrate-Configuration Perovskite Solar Cells
Benjamin T. Feleki, Christ H. L. Weijtens, Martijn M. Wienk, and René A. J. Janssen
ACS Appl. Energy Mater. 2021, 4, 3033−3043

Stable pure-blue hyperfluorescence organic light-emitting diodes with high-efficiency and narrow emission
Chin-Yiu Chan, Masaki Tanaka, Yi-Ting Lee, Yiu-Wing Wong, Hajime Nakanotani, Takuji Hatakeyama, and Chihaya Adachi
Nature Photonics, 15, 203–207, (2021)

Molecular-Switch-Embedded Organic Photodiode for Capturing Images Against Strong Backlight
Mingyun Kang, Syed Zahid Hassan, Seong-Min Ko, Changwon Choi, Juhee Kim, Santosh K. R. Parumala, Yun-Hi Kim, Yun Hee Jang, Jinhwan Yoon, Dong-Woo Jee, Dae Sung Chung
Advanced Materials

Determining non-radiative decay rates in TADF compounds using coupled transient and steady state optical data
Stefano Sem, Sandra Jenatsch, Kleitos Stavrou, Andrew Danos,
Andrew P. Monkman and Beat Ruhstaller
J. Mater. Chem. C, 2022, Advance Article

To realize a variety of structural color adjustments via lossy-dielectric-based Fabry–Perot cavity structure
Rahman, Md Abdur, Kim, Dong Kyu, Lee, Jong-Kwon and Byun, Ji Young.
Nanophotonics, vol. 11, no. 21, 2022, pp. 4855-4868.

From Molecule to Device: Prediction and Validation of the Optical Orientation of Iridium Phosphors in Organic Light-Emitting Diodes
Carl Degitz , Markus Schmid, Falk May, Jochen Pfister, Armin Auch, Wolfgang Brütting, and Wolfgang Wenzel
Chem. Mater. 2023, 35, 1, 295–303

Ultrapure green organic light-emitting diodes based on highly distorted fused π-conjugated molecular design
Fan, XC., Wang, K., Shi, YZ. et al.
Nat. Photon. (2023).

Process Engineered Spontaneous Orientation Polarization in Organic Light-Emitting Devices
Siliang He, Evgeny Pakhomenko, Russell J. Holmes
CS Appl. Mater. Interfaces 2023, 15, 1, 1652–1660

Classic Fluorophores With a Horizontal Alignment for Enhancing Light Outcoupling Efficiency (≈30%) and External Quantum Efficiency (≈7%) of Near Ultraviolet (λmax < 400 nm) OLEDs
Lee, J. H., Huang, J.-X., Chen, C.-H., Lee, Y.-T., Chan, C.-Y., Dzeng, Y.-C., Tang, P.-W., Chen, C., Adachi, C., Chiu, T.-L., Lee, J.-H., Chen, C.-T.,
Adv. Optical Mater. 2023, 2202666.

Heteroleptic Ir(III)‑based near‑infrared organic light‑emitting diodes with high radiance capacity
Park, Y., Lee, G.S., Lee, W. et al.
Sci Rep 13, 1369 (2023).

A touchless user interface based on a near-infrared-sensitive transparent optical imager
Kamijo, T., van Breemen, A.J.J.M., Ma, X. et al. A touchless user interface based on a near-infrared-sensitive transparent optical imager. Nat Electron (2023).

Scaling Considerations for Organic Photovoltaics for Indoor Applications
Gregory Burwell, Oskar J. Sandberg, Wei Li, Paul Meredith, Matt Carnie, and Ardalan Armin
Sol. RRL 2200315, 1 , (2022)

Printed Copper Grid Transparent Conducting Electrodes for Organic Light-Emitting Diodes
Takeshi Kamijo, Suzanne de Winter, Pradeep Panditha, and Eric Meulenkamp
ACS Applied Electronic Materials 2022 4 (2), 698-706