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Chemical Communications (Cambridge, England)|February 18, 2011
Controlling side-chain density of electron donating polymers for improving their packing structure and photovoltaic performanceChul-Hee Cho, Hyunbum Kang, Tae Eui Kang, et al.
ACS Applied Materials & Interfaces|November 14, 2014
Naphthalene-, anthracene-, and pyrene-substituted fullerene derivatives as electron acceptors in polymer-based solar cellsHee Un Kim, Ji-Hoon Kim, Hyunbum Kang, et al.
Frontiers in Chemistry|October 26, 2018
Development of n-Type Porphyrin Acceptors for Panchromatic Light-Harvesting Fullerene-Free Organic Solar CellsUn-Hak Lee, Wisnu Tantyo Hadmojo, Junho Kim, et al.
Journal of Nanoscience and Nanotechnology|November 14, 2009
Ethyleneoxy substituted methanofullerenes for acceptor materials in organic photovoltaic cellsSo Youn Nam, Hak Sung Lee, Jaewook Jung, et al.
Chemical Communications (Cambridge, England)|October 17, 2013
High open circuit voltage organic photovoltaic cells fabricated using 9,9'-bifluorenylidene as a non-fullerene type electron acceptorHee Un Kim, Ji-Hoon Kim, Hongsuk Suh, et al.
ACS Applied Materials & Interfaces|September 21, 2018
Performance Improvement in Low-Temperature-Processed Perovskite Solar Cells by Molecular Engineering of Porphyrin-Based Hole Transport MaterialsRandi Azmi, Un-Hak Lee, Febrian Tri Adhi Wibowo, et al.
ACS Applied Materials & Interfaces|November 3, 2018
High-Performance Near-Infrared Absorbing n-Type Porphyrin Acceptor for Organic Solar CellsWisnu Tantyo Hadmojo, Un-Hak Lee, Dajeong Yim, et al.
Chemsuschem|September 7, 2017
Diphenyl-2-pyridylamine-Substituted Porphyrins as Hole-Transporting Materials for Perovskite Solar CellsUn-Hak Lee, Randi Azmi, Septy Sinaga, et al.
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