Iden­ti­fi­ca­tion

CAS Number

2389125-23-7

Name

Y12 (BTP-4F-12)

Syn­onyms

2,2′-([12,13-Di(5-undecanyl)-3,9-diundecyl-12,13-dihydro[1,2,5]thiadiazolo[3,4-e]thieno[2′,3′:4,5]thieno[3,2-b]thieno[2″,3″:4′,5′]thieno[2′,3′:4,5]pyrrolo[3,2-g]indol-2,10-diyl]bis{(Z)methylyliden[( 2Z)-5,6-difluor-3-oxo-1H-inden-2,1(3H)-diyliden]})dimalononitril
[Ger­man]
[IUPAC name – gen­er­at­ed by ACD/​Name]
2,2′-([12,13-Di(5-undecanyl)-3,9-diundecyl-12,13-dihydro[1,2,5]thiadiazolo[3,4-e]thieno[2′,3′:4,5]thieno[3,2-b]thieno[2″,3″:4′,5′]thieno[2′,3′:4,5]pyrrolo[3,2-g]indole-2,10-diyl]bis{(Z)methylylidene [(2Z)-5,6-difluoro-3-oxo-1H-indene-2,1(3H)-diylidene]})dimalononitrile
[IUPAC name – gen­er­at­ed by ACD/​Name]
2,2′-([12,13-Di(5-undécanyl)-3,9-diundécyl-12,13-dihydro[1,2,5]thiadiazolo[3,4-e]thiéno[2′,3′:4,5]thiéno[3,2-b]thiéno[2″,3″:4′,5′]thiéno[2′,3′:4,5]pyrrolo[3,2-g]indole-2,10-diyl]bis{(Z)méthylylidène [(2Z)-5,6-difluoro-3-oxo-1H-indène-2,1(3H)-diylidène]})dimalononitrile
[French]
[IUPAC name – gen­er­at­ed by ACD/​Name]
Propane­dini­trile, 2,2′-[[12,13-bis(1-butylheptyl)-12,13-dihydro-3,9-diundecyl[1,2,5]thiadiazolo[3,4-e]thieno[2′,3′:4,5]thieno[3,2-b]thieno[2″,3″:4′,5′]thieno[2′,3′:4,5]pyrrolo[3,2-g]indole-2,10-diyl ]bis[(Z)methylidyne[(2Z)-5,6-difluoro-3-oxo-1H-indene-2,1(3H)-diylidene]]]bis-
[Index name – gen­er­at­ed by ACD/​Name]
Y6-BO-4F

SMILES

CCCCCCCCCCCc1c(/C=C2\C(=O)c3cc(F)c(F)cc3C2=C(C#N)C#N)sc2c1sc1c3c4nsnc4c4c5sc6c(CCC­C­C­C­C­C­C­CC)c(/C=C7\C(=O)c8cc(F)c(F)cc8C7=C(C#N)C#N)sc6c5n(C(CCCC)CCC­C­CC)c4c3n(C(CCCC)CCC­C­CC)c21

Std­InChI

InChI=1S/C88H98F4N8O2S5/c1-7-13-19-23-25-27-29-31-35-41-57-69(47-63-71(53(49-93)50-94)59-43-65(89)67(91)45-61(59)81(63)101)103-87-79-85(105-83(57)87)73-75-76(98-107-97-75)74-78(77(73)99(79)55(37-17-11-5)39-33-21-15-9-3)100(56(38-18-12-6)40-34-22-16-10-4)80-86(74)106-84-58(42-36-32-30-28-26-24-20-14-8-2)70(104-88(80)84)48-64-72(54(51-95)52-96)60-44-66(90)68(92)46-62(60)82(64)102/h43-48,55-56H,7-42H2,1-6H3/b63-47-,64-48-

Std­InChIKey

OMTZIDGQFH­­VACW-MRC­A­HA­JB­SA-N

Mol­e­c­u­lar Formula

C88H98F4N8O2S5

Mol­e­c­u­lar Weight

1536.098

Prop­er­ties

Appear­ance

Dark blue powder/​crystals

Safe­ty Data

RIDADR 

NONH for all modes of transport

Spec­i­fi­ca­tions and Oth­er Infor­ma­tion of Our Y12 (BTP-4F-12) CAS 2389125-23-7

Iden­ti­fi­ca­tion Methods

HNMR, HPLC

Puri­ty

98% min

Shelf Life

2 years

Stor­age

Under room tem­per­a­ture away from light

Known Appli­ca­tion

Y12 (BTP-4F-12) is a high-per­­for­­mance non-fullerene accep­tor fea­tur­ing high pho­to­volta­ic effi­cien­cy, excel­lent elec­tron trans­port, supe­ri­or film-for­m­ing prop­er­ties, and envi­ron­men­tal­ly friend­ly pro­cess­ing com­pat­i­bil­i­ty, mak­ing it an ide­al mate­r­i­al for high-effi­­cien­­cy organ­ic solar cells, flex­i­ble pho­to­volta­ic devices, and advanced organ­ic semi­con­duc­tor research.

Y12 (BTP-4F-12) is a high-per­­for­­mance non-fullerene accep­tor (NFA) pri­mar­i­ly used in the fields of organ­ic pho­to­voltaics (OPV) and organ­ic elec­tron­ics. Its main appli­ca­tions include :
1.Organic Solar Cells (OSCs): Used as an elec­tron accep­tor mate­r­i­al in com­bi­na­tion with donor poly­mers (e.g., PM6) to fab­ri­cate high-effi­­cien­­cy organ­ic solar cells.
2.Flexible Pho­to­volta­ic Devices : Suit­able for the devel­op­ment of flex­i­ble, light­weight, and semi-tran­s­­par­ent solar cells.
3.Organic Semi­con­duc­tor Research : Wide­ly used in stud­ies of charge trans­port, exci­ton dis­so­ci­a­tion, ener­gy lev­el align­ment, and thin-film mor­phol­o­gy.
4.Advanced Ener­gy Mate­ri­als : Applied in the research and devel­op­ment of next-gen­er­a­­tion pho­to­volta­ic mate­ri­als at uni­ver­si­ties, research insti­tutes, and indus­tri­al R&D lab­o­ra­to­ries.

Key Advan­tages

  1. High Pow­er Con­ver­sion Effi­cien­cy (PCE): Broad absorp­tion in the vis­i­ble and near-infrared region enables improved light har­vest­ing and enhanced pho­to­volta­ic performance.
  2. Excel­lent Elec­tron Trans­port : High elec­tron mobil­i­ty pro­motes effi­cient charge trans­port and improves device fill fac­tor (FF).
    Supe­ri­or Sol­u­bil­i­ty and Film-For­m­ing Prop­er­ties : Com­pared with con­ven­tion­al Y6-based mate­ri­als, Y12 offers improved sol­u­bil­i­ty and facil­i­tates the for­ma­tion of high-qual­i­­ty, uni­form active layers.
  3. Com­pat­i­ble with Green Pro­cess­ing : Can be processed using non-halo­­genat­ed, envi­ron­men­tal­ly friend­ly sol­vents, sup­port­ing sus­tain­able manufacturing.
  4. Enhanced Sta­bil­i­ty : Deliv­ers good pho­to­sta­bil­i­ty and oper­a­tional sta­bil­i­ty, con­tribut­ing to longer device lifetimes.
  5. Suit­able for Scal­able Man­u­fac­tur­ing : Com­pat­i­ble with print­ing tech­nolo­gies and roll-to-roll pro­cess­ing, mak­ing it a promis­ing mate­r­i­al for large-area and flex­i­ble organ­ic pho­to­volta­ic applications.

Gen­er­al View of Documents

This prod­uct is devel­oped by our R&D com­pa­ny Wat­sonChem Advanced Chem­i­cal Mate­ri­als (https://​www​.wat​sonchem​.com/).

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