Search Results - "Eom, Yu Kyung"
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14.2% Efficiency Dye‐Sensitized Solar Cells by Co‐sensitizing Novel Thieno[3,2‐b]indole‐Based Organic Dyes with a Promising Porphyrin Sensitizer
Published in Advanced energy materials (01-04-2020)“…A new series of 4‐hexyl‐4H‐thieno[3,2‐b]indole (HxTI) based organic chromophores is developed by structural engineering of the electron donor (D) group in the…”
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Porphyrin Sensitizers with Donor Structural Engineering for Superior Performance Dye‐Sensitized Solar Cells and Tandem Solar Cells for Water Splitting Applications
Published in Advanced energy materials (01-04-2017)“…Zn(II)–porphyrin sensitizers, coded as SGT‐020 and SGT‐021, are designed and synthesized through donor structural engineering. The photovoltaic (PV)…”
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Graphene Nanoplatelets Doped with N at its Edges as Metal-Free Cathodes for Organic Dye-Sensitized Solar Cells
Published in Advanced materials (Weinheim) (21-05-2014)“…Challenging precious Pt‐based electrocatalysts for dye‐sensitized solar cells (DSSCs), graphene nanoplatelets that are N‐doped at the edges (NGnPs) are…”
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Quinoxaline Dendrimers at the Air–Aqueous Interface and Their Photoluminescent Properties
Published in Chemistry letters (05-08-2014)“…The monolayer behaviors of two dendrimers containing a hydrophilic core group (carboxy group) and hydrophobic branches (quinoxaline and methoxyphenyl groups),…”
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Novel D-π-A system based on zinc-porphyrin derivatives for highly efficient dye-sensitised solar cells
Published in Tetrahedron letters (27-07-2011)“…We have designed and synthesised novel zinc porphyrin dyes that have a D-π-A system based on porphyrin derivatives containing a carbazole linked triphenylamine…”
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Lanthanide(III) dendrimer complexes based on diphenylquinoxaline derivatives for photonic amplification
Published in Macromolecular research (01-05-2013)“…A series of novel lanthanide(III) complexes (Ln=Gd, Er, Yb) based on dendritic diphenylquinoxaline (DPQ) ligands was designed and synthesized with the aim of…”
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Triarylamine-based dual-function coadsorbents with extended π-conjugation aryl linkers for organic dye-sensitized solar cells
Published in Organic electronics (01-11-2014)Get full text
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Influence of the π‑Bridge-Fused Ring and Acceptor Unit Extension in D−π–A-Structured Organic Dyes for Highly Efficient Dye-Sensitized Solar Cells
Published in ACS applied materials & interfaces (30-11-2022)“…Three new D−π–A-structured organic dyes, coded as SGT-138, SGT-150, and SGT-151, with the expansion of π-conjugation in the π-bridge and acceptor parts have…”
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Thieno[3,2-b][1]benzothiophene Derivative as a New π-Bridge Unit in D-π-A Structural Organic Sensitizers with Over 10.47% Efficiency for Dye-Sensitized Solar Cells
Published in Advanced energy materials (01-08-2015)“…Three new thieno[3,2‐b][1]benzothiophene (TBT)‐based donor–π–acceptor (D–π–A) sensitizers, coded as SGT‐121, SGT‐129, and SGT‐130, have been designed and…”
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Triphenylamine-based organic sensitizers with π-spacer structural engineering for dye-sensitized solar cells: Synthesis, theoretical calculations, molecular spectroscopy and structure-property-performance relationships
Published in Dyes and pigments (01-01-2017)“…The heteroaromatic units play a key role in the D-π-A organic sensitizers for dye-sensitized solar cells (DSSCs), not only as π-spacers for tuning the optical…”
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Bulky Phenanthroimidazole–Phenothiazine D−π–A Based Organic Sensitizers for Application in Efficient Dye-Sensitized Solar Cells
Published in ACS applied energy materials (27-07-2020)“…Metal-free organic sensitizers are important in dye-sensitized solar cells (DSSCs) to overcome the existing concerns such as synthetic feasibility and cost…”
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Exploratory synthesis and photovoltaic performance comparison of D–π–A structured Zn-porphyrins for dye-sensitized solar cells
Published in Dyes and pigments (01-02-2018)“…The design and synthesis of D–π–A structured Zn(II)–porphyrin sensitizers with extended π-conjugation, coded as SGT-012, SGT-016, SGT-052 and SGT-053, were…”
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Dye‐Sensitized Solar Cells: 14.2% Efficiency Dye‐Sensitized Solar Cells by Co‐sensitizing Novel Thieno[3,2‐b]indole‐Based Organic Dyes with a Promising Porphyrin Sensitizer (Adv. Energy Mater. 15/2020)
Published in Advanced energy materials (21-04-2020)“…In article number 2000124, Hwan Kyu Kim and co‐workers develop a series of highly efficient organic dyes and a simple co‐sensitization method for…”
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14.2% Efficiency Dye‐Sensitized Solar Cells by Co‐sensitizing Novel Thienoindole‐Based Organic Dyes with a Promising Porphyrin Sensitizer
Published in Advanced energy materials (01-04-2020)“…A new series of 4‐hexyl‐4H‐thieno[3,2‐b]indole (HxTI) based organic chromophores is developed by structural engineering of the electron donor (D) group in the…”
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A Eu(III) tetrakis(β-diketonate) dimeric complex: photophysical properties, structural elucidation by Sparkle/AM1 calculations, and doping into PMMA films and nanowires
Published in Inorganic chemistry (18-08-2014)“…Reaction of Ln(III) with a tetrakis(diketone) ligand H4L [1,1'-(4,4'-(2,2-bis((4-(4,4,4-trifluoro-3-oxobutanoyl)…”
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Metalloid tellurium-doped graphene nanoplatelets as ultimately stable electrocatalysts for cobalt reduction reaction in dye-sensitized solar cells
Published in Nano energy (01-12-2016)“…One feasible alternative to Pt catalyst in dye-sensitized solar cells (DSSCs) is metalloid tellurium (Te)-doped graphene nanoplatelets (TeGnPs). These were…”
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Polymer Chromophore–Catalyst Assembly for Photocatalytic CO2 Reduction
Published in ACS applied energy materials (26-07-2021)“…A polystyrene-based chromophore–catalyst assembly (PS-RuC/RuCat) was synthesized and applied for photocatalytic CO2 reduction in an organic solution in the…”
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Comparative study of edge-functionalized graphene nanoplatelets as metal-free counter electrodes for highly efficient dye-sensitized solar cells
Published in Materials today energy (01-09-2018)“…Edge-functionalized graphene nanoplatelets (GnPs) were synthesized by a simple ball-milling process of graphite in the presence of halogen (F, I), metalloids…”
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Polymer Chromophore–Catalyst Assembly for Photocatalytic CO 2 Reduction
Published in ACS applied energy materials (26-07-2021)“…Not provided…”
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