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ITIC-M, IT-M
ITIC-M, IT-M
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Product Details

ITIC-M, non-fullerene acceptor for high-efficiency polymer solar cells

Low price, high purity (≥99%) ITIC-M, quantities from 50 mg to 1 g available


ITIC-M, or IT-M, is a that is used for high-efficiency polymer solar cells. acceptors like ITIC-M have the benefit of strong and broad absorption (from visible to near infrared) with good energy level alignment to low band-gap polymer semiconductors.

Being slightly more electron-rich than , ITIC-M has a higher energy level with an elevated LUMO level to increase Voc for OPV devices, thus improving the overall power conversion efficiency (PCE). Methyl groups on the phenyl rings also increase the solubility of the structure, and help ITIC-M to have greater miscibility with polymer donors.

High efficiency non-fullerene acceptor

with highly conjugated core

Elevated LUMO

For an increase of open circuit voltage with wore electron rich than other NFAs

Worldwide shipping

Quick and reliable shipping

High purity

>99% High purity

ITIC-M, , , and from Ossila were used in the high-impact paper (IF 18.81), , S. Marina et al., Adv. Funct. Mater., 2103784 (2021); DOI: 10.1002/adfm.202103784.

We also have available as an alternative dimethyl substituted NFA for high efficiency NF-PSCs.

Chemical Structure



Chemical structure of ITIC-M, CAS 2047352-80-5

General Information


CAS Number2047352-80-5
2047352-83-8
2047352-86-1 (three isomers)
Chemical FormulaC96H86N4O2S4
Purity99% (1H NMR)
Full Name3,9-bis(2-methylene-((3-(1,1-dicyanomethylene)-6/7-methyl)-indanone))-5,5,11,11-tetrakis(4-hexylphenyl)-dithieno[2,3-d:2’,3’-d’]-s-indaceno[1,2-b:5,6-b’]dithiophene
Molecular Weight1455.99 g/mol
HOMO / LUMOHOMO = -5.58 eV, LUMO = -3.98 eV [1]
SynonymsIT-M
Classification / FamilyNon-fullerene acceptors (NFAs), Organic semiconducting materials, Low band-gap small molecule, Small molecular acceptor, Organic photovoltaics, Polymer solar cells, NF-PSCs, n-type acceptor

Pricing


BatchQuantityPrice
M2073A150 mg[[price gbp="180"]]
M2073A1100 mg[[price gbp="290"]]
M2073A1250 mg[[price gbp="580"]]
M2073A1500 mg[[price gbp="980"]]
M2073A11 g[[price gbp="1790"]]

MSDS Documentation


Literature and Reviews


  1. Energy-Level Modulation of Small-Molecule Electron Acceptors to Achieve over 12% Efficiency in Polymer Solar Cells, S. Li et al, Adv. Mater., 28, 9423–9429 (2016); .
  2. Side-Chain Isomerization on an n‑type Organic Semiconductor ITIC Acceptor Makes 11.77% High Efficiency Polymer Solar Cells, Y. Yang et al., J. Am. Chem. Soc., 138, 15011−15018 (2016); DOI: 10.1021/jacs.6b09110.
  3. Constructing Desired Vertical Component Distribution Within a PBDB-T:ITIC-M Photoactive Layer via Fine-Tuning the Surface Free Energy of a Titanium Chelate Cathode Buffer Layer, Y. Bai et al., Front Chem., 6: 292 (2018); doi: 10.3389/fchem.2018.00292.

Related Products


Non-fullerene acceptors (NFAs) are a promising alternative to fullerene-based electron acceptors.

Semiconducting polymers for bulk heterojunction, OPV, OLED, OFET and perovskite interfaces and solar cell research.

Organic conductors are an environmentally friendly alternative to traditional inorganic conductors.

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