Keyword search (4,164 papers available)

"Liu JT" Authored Publications:

Title Authors PubMed ID
1 Sterically-Hindered Molecular p-Dopants Promote Integer Charge Transfer in Organic Semiconductors Charoughchi S; Liu JT; Berteau-Rainville M; Hase H; Askari MS; Bhagat S; Forgione P; Salzmann I; 37220083
CHEMBIOCHEM
2 Preparation of a Convertible Spacer Containing a Disulfide Group for Versatile Functionalization of Oligonucleotides Pontarelli A; Liu JT; Oh JK; Wilds CJ; 36840706
CHEMBIOCHEM
3 Synthesis of a Convertible Linker Containing a Disulfide Group for Oligonucleotide Functionalization Pontarelli A; Liu JT; Movasat H; Ménard S; Oh JK; Wilds CJ; 35863757
CHEMBIOCHEM
4 Characterization of a recently synthesized microtubule-targeting compound that disrupts mitotic spindle poles in human cells Jaunky DB; Larocque K; Husser MC; Liu JT; Forgione P; Piekny A; 34880347
BIOLOGY
5 Design, structure-activity relationship study and biological evaluation of the thieno[3,2-c]isoquinoline scaffold as a potential anti-cancer agent Liu JT; Jaunky DB; Larocque K; Chen F; Mckibbon K; Sirouspour M; Taylor S; Shafeii A; Campbell D; Braga H; Piekny A; Forgione P; 34416378
BIOLOGY
6 Approaching the Integer-Charge Transfer Regime in Molecularly Doped Oligothiophenes by Efficient Decarboxylative Cross-Coupling Liu JT; Hase H; Taylor S; Salzmann I; Forgione P; 31961982
CHEMBIOCHEM

 

Title:Sterically-Hindered Molecular p-Dopants Promote Integer Charge Transfer in Organic Semiconductors
Authors:Charoughchi SLiu JTBerteau-Rainville MHase HAskari MSBhagat SForgione PSalzmann I
Link:https://pubmed.ncbi.nlm.nih.gov/37220083/
DOI:10.1002/anie.202304964
Publication:Angewandte Chemie (International ed. in English)
Keywords:Charge TransferDopingOrganic SemiconductorsSteric Hindrance
PMID:37220083 Category: Date Added:2023-05-23
Dept Affiliation: CHEMBIOCHEM
1 Department of Chemistry and Biochemistry, Concordia University, 7141 rue Sherbrooke Ouest, H4B?1R6, Montreal, Québec, Canada.
2 Centre for Research in Molecular Modeling (CERMM), Concordia University, 7141 rue Sherbrooke Ouest, H4B?1R6, Montreal, Québec, Canada.
3 Centre Énergie Matériaux Télécommunications, Institut national de la recherche scientifique (INRS), 1650 Bd Lionel-Boulet, J3X?1P7, Varennes, Québec, Canada.
4 Department of Physics, Concordia University, 7141 rue Sherbrooke Ouest, H4B?1R6, Montreal, Québec, Canada.
5 Centre for Nanoscience Research (CeNSR), Concordia University, 7141 rue Sherbrooke Ouest, H4B?1R6, Montreal, Québec, Canada.

Description:

Molecular p-dopants designed to undergo electron transfer with organic semiconductors are typically planar molecules with high electron affinity. However, their planarity can promote the formation of ground-state charge transfer complexes with the semiconductor host and results in fractional instead of integer charge transfer, which is highly detrimental to doping efficiency. Here, we show this process can be readily overcome by targeted dopant design exploiting steric hindrance. To this end, we synthesize and characterize the remarkably stable p-dopant 2,2',2''-(cyclopropane-1,2,3-triylidene)tris(2-(perfluorophenyl)acetonitrile) comprising pendant functional groups that sterically shield its central core while retaining high electron affinity. Finally, we demonstrate it outperforms a planar dopant of identical electron affinity and increases the thin film conductivity by up to an order of magnitude. We believe exploiting steric hindrance represents a promising design strategy towards molecular dopants of enhanced doping efficiency.





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