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2-Alkyl-5-thienyl-Substituted Benzo[1,2-b:4,5-b′]dithiophene-Based Donor Molecules for Solution-Processed Organic Solar Cells

TLDR
Two novel, symmetrical, and linear A-D-A-type π-conjugated donor molecules each containing a planar electron-rich 2-octylthiene-5-yl-substituted benzodithiophene (TBDT) unit as the core are synthesized and end-capped with electron-deficient cyanoacetate (CNR) or dicyanovinyl (CN) units.
Abstract
In this study, we have strategically designed and convergently synthesized two novel, symmetrical, and linear A–D–A-type π-conjugated donor molecules (TBDTCNR, TBDTCN), each containing a planar electron-rich 2-octylthiene-5-yl-substituted benzodithiophene (TBDT) unit as the core, flanked by octylthiophene units and end-capped with electron-deficient cyanoacetate (CNR) or dicyanovinyl (CN) units. We thoroughly characterized both of these materials and investigated the effects of the end groups (CNR, CN) on their optical, electrochemical, morphological, and photovoltaic properties. We then fabricated solution-processed bulk heterojunction organic solar cells incorporating TBDTCNR and TBDTCN. Among our tested devices, the one containing TBDTCNR and [6,6]-phenyl-C61-butyric acid methyl ester in a 1:0.40 ratio (w/w) exhibited the highest power conversion efficiency (5.42%) with a short-circuit current density (Jsc) of 9.08 mA cm–2, an open circuit voltage (Voc) of 0.90 V, and an impressive fill factor (FF) of ...

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Journal ArticleDOI

Molecular Design of Benzodithiophene-Based Organic Photovoltaic Materials.

TL;DR: This review offered an overview of the organic photovoltaic materials based on BDT from the aspects of backbones, functional groups, alkyl chains, and device performance, trying to provide a guideline about the structure-performance relationship.
Journal ArticleDOI

A–D–A small molecules for solution-processed organic photovoltaic cells

TL;DR: A-D-A small molecules have drawn more and more attention in solution-processed organic solar cells due to the advantages of a diversity of structures, easy control of energy levels, etc.
Journal ArticleDOI

Benzo[1,2-b:4,5-b′]dithiophene (BDT)-based small molecules for solution processed organic solar cells

TL;DR: In this paper, the progress made in the field of small molecules containing BDT units for solution-processed organic photovoltaic cells is reviewed, and insights into several important aspects regarding the design and synthesis of BDT based small molecules are also included.
Journal ArticleDOI

High efficiency solution-processed two-dimensional small molecule organic solar cells obtained via low-temperature thermal annealing

TL;DR: In this paper, a two-dimensional organic small molecule, DCA3T(T-BDT), was designed and synthesized for solution-processed organic solar cells (OSCs).
Journal ArticleDOI

Development of small-molecule materials for high-performance organic solar cells

TL;DR: In this paper, a mini review of small molecules with impressive photovoltaic performance especially reported in the last two years was highlighted, and the relationship between molecular structure and device performance was analyzed, which drew some rules for rational molecular design.
References
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Journal ArticleDOI

New conjugated polymers for plastic solar cells

TL;DR: In this paper, the authors gave an overview of four of the most promising classes of conjugated polymers for plastic solar cells, namely poly(2,7-carbazole), poly(1,4-diketopyrrolopyrrole)s, poly(thieno[3, 4-b]thiophene)s and poly(naphase-4,6-dione)s.
Journal ArticleDOI

High-performance solar cells using a solution-processed small molecule containing benzodithiophene unit.

TL;DR: A conjugated small molecule containing a benzodithiophene unit shows high performance in bulk heterojunction (BHJ) solar cells using the simple solution spinning process.
Journal ArticleDOI

Correlation of π-conjugated oligomer structure with film morphology and organic solar cell performance.

TL;DR: X-ray analysis of single crystals and evaporated neat and blend films gave insights into the packing and morphological behavior of the novel compounds that rationalized their improved photovoltaic performance.
Journal ArticleDOI

Dicyanovinyl–Substituted Oligothiophenes: Structure‐Property Relationships and Application in Vacuum‐Processed Small Molecule Organic Solar Cells

TL;DR: In this paper, a series of terminally dicyanovinyl (DCV)-substituted oligothiophenes, without solubilizing side chains synthesized via a novel convergent approach and their application as electron donors in vacuum-processed m-i p-type planar and p-i n-type bulk heterojunction organic solar cells is described.
Journal ArticleDOI

Spin-Coated Small Molecules for High Performance Solar Cells

TL;DR: In this article, the authors proposed a solution-processed small molecule based organic solar cells (OSCs) to achieve a power conversion efficiency of 10% or higher if a suitable low bandgap donor material can be designed and implemented.
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Frequently Asked Questions (1)
Q1. What are the contributions mentioned in the paper "2‐alkyl-5-thienyl-substituted benzo[1,2‐b:4,5‐b′]dithiophene-based donor molecules for solution-processed organic solar cells" ?

In this study, the authors have strategically designed and convergently synthesized two novel, symmetrical, and linear A− D−A-type π-conjugated donor molecules ( TBDTCNR, TBDTCN ), each containing a planar electron-rich 2-octylthiene-5-ylsubstituted benzodithiophene ( TBDT ) unit as the core, flanked by octylthiophene units and end-capped with electron-deficient cyanoacetate ( CNR ) or dicyanovinyl ( CN ) units. The authors thoroughly characterized both of these materials and investigated the effects of the end groups ( CNR, CN ) on their optical, electrochemical, morphological, and photovoltaic properties. The FFs of these solutionprocessed small-molecule organic solar cells ( SMOSCs ) are outstanding when compared with those recently reported for benzodithiophene ( BDT ) -based SMOSCs, because of the high crystallinity and excellent stacking properties of the TBDT-based compounds.