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Scholars Hub of the Academia Sinica
Research Outputs
Browsing by Author
Adane Desta Fenta
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Showing results 1 to 6 of 6
Issue Date
Title
Author(s)
Relation
scopus
WOS
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2023
Difluoro and dicyano substituted sexithiophene−isoindigo terpolymers enabling ternary polymer solar cells with a bulk heterojunction thickness 100 nm →300 nm and a minor decline of efficiency 14.5% →14.0%
Adane Desta Fenta; Chiao-Wen Lin; Syuan-Wei Li; Chao-Tsen Chen; Chin-Ti Chen
CHEMICAL ENGINEERING JOURNAL 468, 143796
2021
First conventional solution sol-gel-prepared nanoporous materials of nickel oxide for efficiency enhancing and stability extending MAPbI3 inverted perovskite solar cells
Abraha Tadese Gidey; Da-Wei Kuo; Adane Desta Fenta; Chin-Ti Chen
; Chao-Tsen Chen
ACS APPLIED ENERGY MATERIALS 4(7), 6486-6499
2021
High Efficiency Organic Photovoltaics with a Thick (300 nm) Bulk Heterojunction Comprising a Ternary Composition of a PFT Polymer−PC71BM Fullerene−IT4F Nonfullerene Acceptor
Adane Desta Fenta; Chun-Fu Lu; Abraha Tadese Gidey; Chin-Ti Chen
ACS APPLIED ENERGY MATERIALS 4(5), 5274-5285
2019
High face-on ratio isoindigo copolymers with extended nano-fibrillar networks in fullerene-based thick (>300 nm) photovoltaics achieving a high efficiency of 10.7%
Song-Fu Liao; Chun-Fu Lu; Adane Desta Fenta; Chin-Ti Chen
; Chi-Yang Chao; Wei-Fang Su
JOURNAL OF MATERIALS CHEMISTRY A 7(37), 21309-21320
2020
Increasing the Fluorine Substituent of Thieno[3,4-c]pyrrole-4,6-dione Terthiophene Copolymers Progressively Narrows the Nanofibrils and Enhances the Efficiency of Fullerene-Based Polymer Photovoltaics
Adane Desta Fenta; Song-Fu Liao; Syuan-Wei Li; Chun-Fu Lu; Chin-Ti Chen
MACROMOLECULES 53(16), 7073-7083
2023
Inverted MAPbI3 Perovskite Solar Cells Based on Optimized NiOx Hole-Transporting Material and an Interlayer of Photovoltaic Polymers Exhibit a Power Conversion Efficiency over 21% with an Extended Stability
Da-Wei Kuo; Yan-Shen Liu; Adane Desta Fenta; Syuan-Wei Li; Tulsiram Moodalabeed Prasannakumar; Chin-Ti Chen
; Chao-Tsen Chen
ACS APPLIED ELECTRONIC MATERIALS 5(12), 6897-6907