Skip to main content
Top
Published in: Journal of Materials Science 44/2022

15-11-2022 | Electronic materials

Preparation and photocatalytic property of exfoliated poly(phenylenethiazolo[5,4‐d]thiazole) copolymers

Authors: Meiqi Ren, Xiaoli Dong, Yu Wang, Nan Zheng, Hongchao Ma, Xiufang Zhang

Published in: Journal of Materials Science | Issue 44/2022

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Conjugated microporous polymers have attracted significant attention in recent years due to their high porosity, broad functionality and excellent chemical stability. In this work, the small-sized layered structure of poly(phenylenethiazolo[5,4-d]thiazole) (p-PhTT) copolymer was achieved by a facile solvothermal-assisted exfoliation process in a polar organic solvent. Owing to the shorter diffusion length, the layered structure could enhance carrier diffusion from the interior to the surface, as well as provide more active sites in photocatalytic reaction. The obtained exfoliated p-PhTT copolymers show good dispersion and stability in aqueous solution and exhibit efficiently photocatalytic activity for degrading rhodamine B dye under visible-light irradiation. This effective method offers a promising strategy for exfoliating other organic porous polymers.

Graphical Abstract

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Appendix
Available only for authorised users
Literature
1.
go back to reference Li Z, Li L, Wang Y, Yang YW (2021) Pillararene-enriched linear conjugated polymer materials with thiazolo[5,4-d]thiazole linkages for photocatalysis. Chem Commun 57:6546–6549 Li Z, Li L, Wang Y, Yang YW (2021) Pillararene-enriched linear conjugated polymer materials with thiazolo[5,4-d]thiazole linkages for photocatalysis. Chem Commun 57:6546–6549
2.
go back to reference Wang H, Wang H, Wang Z, Tang L, Zeng G, Xu P, Chen M, Xiong T, Zhou C, Li X (2020) Covalent organic framework photocatalysts: structures and applications. Chem Soc Rev 49:4135–4165 Wang H, Wang H, Wang Z, Tang L, Zeng G, Xu P, Chen M, Xiong T, Zhou C, Li X (2020) Covalent organic framework photocatalysts: structures and applications. Chem Soc Rev 49:4135–4165
3.
go back to reference Zhan W, Sun L, Han X (2019) Recent progress on engineering highly efficient porous semiconductor photocatalysts derived from metal-organic frameworks. Nano-Micro Lett 11:1–28 Zhan W, Sun L, Han X (2019) Recent progress on engineering highly efficient porous semiconductor photocatalysts derived from metal-organic frameworks. Nano-Micro Lett 11:1–28
4.
go back to reference Fujishima A, Honda K (1972) Electrochemical photolysis of water at a semiconductor electrode. Nat 238:37–38 Fujishima A, Honda K (1972) Electrochemical photolysis of water at a semiconductor electrode. Nat 238:37–38
5.
go back to reference Xing J, Wen QF, Zhao PJ, Yang PG (2012) Inorganic photocatalysts for overall water splitting. Chem Asian J 7:642–657 Xing J, Wen QF, Zhao PJ, Yang PG (2012) Inorganic photocatalysts for overall water splitting. Chem Asian J 7:642–657
6.
go back to reference Wang M, Ioccozia J, Sun L, Lin C, Lin Z (2014) Inorganic-modified semiconductor TiO2 nanotube arrays for photocatalysis. Energy Environ Sci 7:2182–2202 Wang M, Ioccozia J, Sun L, Lin C, Lin Z (2014) Inorganic-modified semiconductor TiO2 nanotube arrays for photocatalysis. Energy Environ Sci 7:2182–2202
7.
go back to reference Li YH, Wang Y, Zheng LR, Zhao HJ, Yang HG, Li C (2017) Water-soluble inorganic photocatalyst for overall water splitting. Appl Catal B 209:247–252 Li YH, Wang Y, Zheng LR, Zhao HJ, Yang HG, Li C (2017) Water-soluble inorganic photocatalyst for overall water splitting. Appl Catal B 209:247–252
8.
go back to reference Bera S, Won DI, Rawal SB, Kang HJ, Lee WI (2019) Design of visible-light photocatalysts by coupling of inorganic semiconductors. Catal Today 335:3–19 Bera S, Won DI, Rawal SB, Kang HJ, Lee WI (2019) Design of visible-light photocatalysts by coupling of inorganic semiconductors. Catal Today 335:3–19
9.
go back to reference Dai C, Liu B (2020) Conjugated polymers for visible-light-driven photocatalysis. Energy Environ Sci 13:24–52 Dai C, Liu B (2020) Conjugated polymers for visible-light-driven photocatalysis. Energy Environ Sci 13:24–52
10.
go back to reference Sprick RS, Bonillo B, Clowes R, Guiglion P, Brownbill NJ, Slater BJ, Blanc F, Zwijnenburg MA, Adams DJ, Cooper AI (2016) Visible-light-driven hydrogen evolution using planarized conjugated polymer photocatalysts. Angew Chem Int Ed 55:1792–1796 Sprick RS, Bonillo B, Clowes R, Guiglion P, Brownbill NJ, Slater BJ, Blanc F, Zwijnenburg MA, Adams DJ, Cooper AI (2016) Visible-light-driven hydrogen evolution using planarized conjugated polymer photocatalysts. Angew Chem Int Ed 55:1792–1796
11.
go back to reference Ren S, Bojdys MJ, Dawson R, Laybourn A, Khimyak YZ, Adams DJ, Cooper AI (2012) Porous, fluorescent, covalent triazine-based frameworks via room-temperature and microwave-assisted synthesis. Adv Mater 24:2357–2361 Ren S, Bojdys MJ, Dawson R, Laybourn A, Khimyak YZ, Adams DJ, Cooper AI (2012) Porous, fluorescent, covalent triazine-based frameworks via room-temperature and microwave-assisted synthesis. Adv Mater 24:2357–2361
12.
go back to reference Kuecken S, Acharjya A, Zhi L, Schwarze M, Schomäcker R, Thomas A (2017) Fast tuning of covalent triazine frameworks for photocatalytic hydrogen evolution. Chem Commun 53:5854–5857 Kuecken S, Acharjya A, Zhi L, Schwarze M, Schomäcker R, Thomas A (2017) Fast tuning of covalent triazine frameworks for photocatalytic hydrogen evolution. Chem Commun 53:5854–5857
13.
go back to reference Yang Q, Luo M, Liu K, Cao H, Yan H (2020) Covalent organic frameworks for photocatalytic applications. Appl Catal B 276:119174–119191 Yang Q, Luo M, Liu K, Cao H, Yan H (2020) Covalent organic frameworks for photocatalytic applications. Appl Catal B 276:119174–119191
14.
go back to reference Huang N, Wang P, Jiang D (2016) Covalent organic frameworks: a materials platform for structural and functional designs. Nat Rev Mater 1:16068–16086 Huang N, Wang P, Jiang D (2016) Covalent organic frameworks: a materials platform for structural and functional designs. Nat Rev Mater 1:16068–16086
15.
go back to reference Dong H, Zeng G, Tang L, Fan C, Zhang C, He X, He Y (2015) An overview on limitations of TiO2-based particles for photocatalytic degradation of organic pollutants and the corresponding countermeasures. Water Res 79:128–146 Dong H, Zeng G, Tang L, Fan C, Zhang C, He X, He Y (2015) An overview on limitations of TiO2-based particles for photocatalytic degradation of organic pollutants and the corresponding countermeasures. Water Res 79:128–146
16.
go back to reference Dou W, Hu X, Kong L, Peng X (2021) Photo-induced dissolution of Bi2O3 during photocatalysis reactions: mechanisms and inhibition method. J Hazard Mater 412:125267–125276 Dou W, Hu X, Kong L, Peng X (2021) Photo-induced dissolution of Bi2O3 during photocatalysis reactions: mechanisms and inhibition method. J Hazard Mater 412:125267–125276
17.
go back to reference Feng B, Wu Z, Liu J, Zhu K, Li Z, Jin X, Hou Y, Xi Q, Cong M, Liu P, Gu Q (2017) Combination of ultrafast dye-sensitized-assisted electron transfer process and novel Z-scheme system: AgBr nanoparticles interspersed MoO3 nanobelts for enhancing photocatalytic performance of RhB. Appl Catal B 206:242–251 Feng B, Wu Z, Liu J, Zhu K, Li Z, Jin X, Hou Y, Xi Q, Cong M, Liu P, Gu Q (2017) Combination of ultrafast dye-sensitized-assisted electron transfer process and novel Z-scheme system: AgBr nanoparticles interspersed MoO3 nanobelts for enhancing photocatalytic performance of RhB. Appl Catal B 206:242–251
18.
go back to reference Zhang H, Chen G, Bahnemann DW (2009) Photoelectrocatalytic materials for environmental applications. J Mater Chem 19:5089–5121 Zhang H, Chen G, Bahnemann DW (2009) Photoelectrocatalytic materials for environmental applications. J Mater Chem 19:5089–5121
19.
go back to reference Wang X, Sun G, Routh P, Kim DH, Huang W, Chen P (2014) Heteroatom-doped graphene materials: syntheses, properties and applications. Chem Soc Rev 43:7067–7098 Wang X, Sun G, Routh P, Kim DH, Huang W, Chen P (2014) Heteroatom-doped graphene materials: syntheses, properties and applications. Chem Soc Rev 43:7067–7098
20.
go back to reference Bevk D, Marin L, Lutsen L, Vanderzande D, Maes W (2013) Thiazolo[5, 4-d]thiazoles–promising building blocks in the synthesis of semiconductors for plastic electronics. RSC Adv 3:11418–11431 Bevk D, Marin L, Lutsen L, Vanderzande D, Maes W (2013) Thiazolo[5, 4-d]thiazoles–promising building blocks in the synthesis of semiconductors for plastic electronics. RSC Adv 3:11418–11431
21.
go back to reference Li X, Hao H, Lang X (2021) Thiazolo[5, 4-d]thiazole linked conjugated microporous polymer photocatalysis for selective aerobic oxidation of amines. J Colloid Interface Sci 593:380–389 Li X, Hao H, Lang X (2021) Thiazolo[5, 4-d]thiazole linked conjugated microporous polymer photocatalysis for selective aerobic oxidation of amines. J Colloid Interface Sci 593:380–389
22.
go back to reference Wang Y, Liu H, Pan Q, Ding N, Yang C, Zhang Z, Jia C, Li Z, Liu J, Zhao Y (2020) Construction of thiazolo[5, 4-d]thiazole-based two-dimensional network for efficient photocatalytic CO2 reduction. ACS Appl Mater Interfaces 12:46483–46489 Wang Y, Liu H, Pan Q, Ding N, Yang C, Zhang Z, Jia C, Li Z, Liu J, Zhao Y (2020) Construction of thiazolo[5, 4-d]thiazole-based two-dimensional network for efficient photocatalytic CO2 reduction. ACS Appl Mater Interfaces 12:46483–46489
23.
go back to reference Biswal BP, Vignolo-González HA, Banerjee T, Grunenberg L, Savasci GK, Gottschling K, Nuss JR, Ochsenfeld C, Lotsch BV (2019) Sustained solar H2 evolution from a thiazolo[5, 4-d]thiazole-bridged covalent organic framework and nickel-thiolate cluster in water. J Am Chem Soc 141:11082–11092 Biswal BP, Vignolo-González HA, Banerjee T, Grunenberg L, Savasci GK, Gottschling K, Nuss JR, Ochsenfeld C, Lotsch BV (2019) Sustained solar H2 evolution from a thiazolo[5, 4-d]thiazole-bridged covalent organic framework and nickel-thiolate cluster in water. J Am Chem Soc 141:11082–11092
24.
go back to reference Olgun U, Gülfen M (2014) Effects of different dopants on the band gap and electrical conductivity of the poly(phenylene-thiazolo[5, 4-d]thiazole) copolymer. RSC Adv 4:25165–25171 Olgun U, Gülfen M (2014) Effects of different dopants on the band gap and electrical conductivity of the poly(phenylene-thiazolo[5, 4-d]thiazole) copolymer. RSC Adv 4:25165–25171
25.
go back to reference Li W, Huang X, Zeng T, Liu YA, Hu W, Yang H, Zhang YB, Wen K (2021) Thiazolo[5,4-d]thiazole-based donor–acceptor covalent organic framework for sunlight-driven hydrogen evolution. Angew Chem Int Ed 60:1869–1874 Li W, Huang X, Zeng T, Liu YA, Hu W, Yang H, Zhang YB, Wen K (2021) Thiazolo[5,4-d]thiazole-based donor–acceptor covalent organic framework for sunlight-driven hydrogen evolution. Angew Chem Int Ed 60:1869–1874
26.
go back to reference Li X, Hao H, Lang X (2021) Thiazolo[5,4-d]thiazole linked conjugated microporous polymer photocatalysis for selective aerobic oxidation of amines. J Colloid Interface Sci 593:380–389 Li X, Hao H, Lang X (2021) Thiazolo[5,4-d]thiazole linked conjugated microporous polymer photocatalysis for selective aerobic oxidation of amines. J Colloid Interface Sci 593:380–389
27.
go back to reference Huang Q, Guo L, Wang N, Zhu X, Jin S, Tan B (2019) Layered thiazolo[5,4-d] thiazole-linked conjugated microporous polymers with heteroatom adoption for efficient photocatalysis application. ACS Appl Mater Interfaces 11:15861–15868 Huang Q, Guo L, Wang N, Zhu X, Jin S, Tan B (2019) Layered thiazolo[5,4-d] thiazole-linked conjugated microporous polymers with heteroatom adoption for efficient photocatalysis application. ACS Appl Mater Interfaces 11:15861–15868
28.
go back to reference Li X, Ma X, Zhang F, Dong X, Lang X (2021) Selective photocatalytic formation of sulfoxides by aerobic oxidation of sulfides over conjugated microporous polymers with thiazolo[5, 4-d]thiazole linkage. Appl Catal B 298:120514–120522 Li X, Ma X, Zhang F, Dong X, Lang X (2021) Selective photocatalytic formation of sulfoxides by aerobic oxidation of sulfides over conjugated microporous polymers with thiazolo[5, 4-d]thiazole linkage. Appl Catal B 298:120514–120522
29.
go back to reference Qian W, Hao R, Hou Y, Tian Y, Shen C, Gao H, Liang X (2009) Solvothermal-assisted exfoliation process to produce graphene with high yield and high quality. Nano Res 2:706–712 Qian W, Hao R, Hou Y, Tian Y, Shen C, Gao H, Liang X (2009) Solvothermal-assisted exfoliation process to produce graphene with high yield and high quality. Nano Res 2:706–712
30.
go back to reference Yan Z, He X, She L, Sun J, Jiang R, Xu H, Shi F, Lei Z, Liu Z (2018) Solvothermal-assisted liquid-phase exfoliation of large size and high quality black phosphorus. J Materiom 4:129–134 Yan Z, He X, She L, Sun J, Jiang R, Xu H, Shi F, Lei Z, Liu Z (2018) Solvothermal-assisted liquid-phase exfoliation of large size and high quality black phosphorus. J Materiom 4:129–134
31.
go back to reference Li ZY, Backes RJ, Zhao C, Zhang W, Zhukov X, Tillotson A, Evan APD, Conlan H, Feng Sarah J, Coleman JN, Novoselov KS (2020) Mechanisms of liquid-phase exfoliation for the production of graphene. ACS Nano 14:10976–10985 Li ZY, Backes RJ, Zhao C, Zhang W, Zhukov X, Tillotson A, Evan APD, Conlan H, Feng Sarah J, Coleman JN, Novoselov KS (2020) Mechanisms of liquid-phase exfoliation for the production of graphene. ACS Nano 14:10976–10985
32.
go back to reference Zhang F, She L, Jia C, He X, Liu ZH (2020) Few-layer and large flake size borophene: preparation with solvothermal-assisted liquid phase exfoliation. RSC Adv 10:27532–27537 Zhang F, She L, Jia C, He X, Liu ZH (2020) Few-layer and large flake size borophene: preparation with solvothermal-assisted liquid phase exfoliation. RSC Adv 10:27532–27537
33.
go back to reference Wang Q, Guan S, Li B (2017) 2D graphitic-C3N4 hybridized with 1D flux-grown Na-modified K2Ti6O13 nanobelts for enhanced simulated sunlight and visible-light photocatalytic performance. Catal Sci Technol 7:4064–4078 Wang Q, Guan S, Li B (2017) 2D graphitic-C3N4 hybridized with 1D flux-grown Na-modified K2Ti6O13 nanobelts for enhanced simulated sunlight and visible-light photocatalytic performance. Catal Sci Technol 7:4064–4078
34.
go back to reference Luo B, Chen M, Zhang Z, Xu J, Li D, Xu D, Shi W (2017) Highly efficient visible-light-driven photocatalytic degradation of tetracycline by a Z-scheme g-C3N4/Bi3TaO7 nanocomposite photocatalyst. Dalton Trans 46:8431–8438 Luo B, Chen M, Zhang Z, Xu J, Li D, Xu D, Shi W (2017) Highly efficient visible-light-driven photocatalytic degradation of tetracycline by a Z-scheme g-C3N4/Bi3TaO7 nanocomposite photocatalyst. Dalton Trans 46:8431–8438
35.
go back to reference Zou Y, Xiao K, Qin Q, Shi JW, Heil T, Markushyna Y, Jiang L, Antonietti M, Savateev A (2021) Enhanced organic photocatalysis in confined flow through a carbon nitride nanotube membrane with conversions in the millisecond regime. ACS Nano 15:6551–6561 Zou Y, Xiao K, Qin Q, Shi JW, Heil T, Markushyna Y, Jiang L, Antonietti M, Savateev A (2021) Enhanced organic photocatalysis in confined flow through a carbon nitride nanotube membrane with conversions in the millisecond regime. ACS Nano 15:6551–6561
36.
go back to reference Shi R, Tian C, Zhu X, Peng CY, Mei B, He L, Du XL, Jiang Z, Chen Y, Dai S (2019) Achieving an exceptionally high loading of isolated cobalt single atoms on a porous carbon matrix for efficient visible-light-driven photocatalytic hydrogen production. Chem Sci 10:2585–2591 Shi R, Tian C, Zhu X, Peng CY, Mei B, He L, Du XL, Jiang Z, Chen Y, Dai S (2019) Achieving an exceptionally high loading of isolated cobalt single atoms on a porous carbon matrix for efficient visible-light-driven photocatalytic hydrogen production. Chem Sci 10:2585–2591
37.
go back to reference Liao SH, Jhuo HJ, Yeh PN, Cheng YS, Li YL, Lee YH, Sharma S, Chen SA (2014) Single junction inverted polymer solar cell reaching power conversion efficiency 10.31% by employing dual-doped zinc oxide nano-film as cathode interlayer. Sci Rep 4:1–7 Liao SH, Jhuo HJ, Yeh PN, Cheng YS, Li YL, Lee YH, Sharma S, Chen SA (2014) Single junction inverted polymer solar cell reaching power conversion efficiency 10.31% by employing dual-doped zinc oxide nano-film as cathode interlayer. Sci Rep 4:1–7
38.
go back to reference Jung IH, Hong CT, Lee UH, Kang YH, Jang KS, Cho SY (2017) High thermoelectric power factor of a diketopyrrolopyrrole-based low bandgap polymer via finely tuned doping engineering. Sci Rep 7:44704–44711 Jung IH, Hong CT, Lee UH, Kang YH, Jang KS, Cho SY (2017) High thermoelectric power factor of a diketopyrrolopyrrole-based low bandgap polymer via finely tuned doping engineering. Sci Rep 7:44704–44711
39.
go back to reference Carolan D, Rocks C, Padmanaban DB, Maguire P, Svrcek V, Mariotti D (2017) Environmentally friendly nitrogen-doped carbon quantum dots for next generation solar cells. Sustain Energy Fuels 1:1611–1619 Carolan D, Rocks C, Padmanaban DB, Maguire P, Svrcek V, Mariotti D (2017) Environmentally friendly nitrogen-doped carbon quantum dots for next generation solar cells. Sustain Energy Fuels 1:1611–1619
40.
go back to reference Humayun M, Ullah H, Shu L, Ao X, Tahir AA, Wang C, Luo W (2021) Plasmon assisted highly efficient visible light catalytic CO2 reduction over the noble metal decorated Sr-incorporated g-C3N4. Nano-Micro Lett 13:209–226 Humayun M, Ullah H, Shu L, Ao X, Tahir AA, Wang C, Luo W (2021) Plasmon assisted highly efficient visible light catalytic CO2 reduction over the noble metal decorated Sr-incorporated g-C3N4. Nano-Micro Lett 13:209–226
41.
go back to reference Zhou J, Lei Y, Ma C, Lv W, Li N, Wang Y, Xu H, Zou Z (2017) A (001) dominated conjugated polymer with high-performance of hydrogen evolution under solar light irradiation. Chem Commun 53:10536–10539 Zhou J, Lei Y, Ma C, Lv W, Li N, Wang Y, Xu H, Zou Z (2017) A (001) dominated conjugated polymer with high-performance of hydrogen evolution under solar light irradiation. Chem Commun 53:10536–10539
42.
go back to reference Liu N, Li T, Zhao Z, Liu J, Luo X, Yuan X, Luo K, He J, Yu D, Zhao Y (2020) From triazine to heptazine: origin of graphitic carbon nitride as a photocatalyst. ACS Omega 5:12557–12567 Liu N, Li T, Zhao Z, Liu J, Luo X, Yuan X, Luo K, He J, Yu D, Zhao Y (2020) From triazine to heptazine: origin of graphitic carbon nitride as a photocatalyst. ACS Omega 5:12557–12567
43.
go back to reference Zhang Q, Ma W, Peng Q, Shu X (2020) Stabilization and utilization of pyrite under light irradiation: discussion of photocorrosion resistance. ACS Omega 5:28693–28701 Zhang Q, Ma W, Peng Q, Shu X (2020) Stabilization and utilization of pyrite under light irradiation: discussion of photocorrosion resistance. ACS Omega 5:28693–28701
44.
go back to reference You R, Chen J, Hong M, Li J, Hong X (2020) Facile synthesis of g-C3N4/TiO2/hectorite Z-scheme composite and its visible photocatalytic degradation of rhodamine B. Mater 13:5304–5319 You R, Chen J, Hong M, Li J, Hong X (2020) Facile synthesis of g-C3N4/TiO2/hectorite Z-scheme composite and its visible photocatalytic degradation of rhodamine B. Mater 13:5304–5319
45.
go back to reference Zhang J, Ma Z (2017) Enhanced visible-light photocatalytic performance of Ag3VO4/Bi2WO6 heterojunctions in removing aqueous dyes and tetracycline hydrochloride. J Taiwan Inst Chem Eng 78:212–218 Zhang J, Ma Z (2017) Enhanced visible-light photocatalytic performance of Ag3VO4/Bi2WO6 heterojunctions in removing aqueous dyes and tetracycline hydrochloride. J Taiwan Inst Chem Eng 78:212–218
46.
go back to reference Guo F, Shi W, Wang H, Han M, Guan W, Huang H, Liu Y, Kang Z (2018) Study on highly enhanced photocatalytic tetracycline degradation of type II AgI/CuBi2O4 and Z-scheme AgBr/CuBi2O4 heterojunction photocatalysts. J Hazard Mater 349:111–118 Guo F, Shi W, Wang H, Han M, Guan W, Huang H, Liu Y, Kang Z (2018) Study on highly enhanced photocatalytic tetracycline degradation of type II AgI/CuBi2O4 and Z-scheme AgBr/CuBi2O4 heterojunction photocatalysts. J Hazard Mater 349:111–118
Metadata
Title
Preparation and photocatalytic property of exfoliated poly(phenylenethiazolo[5,4‐d]thiazole) copolymers
Authors
Meiqi Ren
Xiaoli Dong
Yu Wang
Nan Zheng
Hongchao Ma
Xiufang Zhang
Publication date
15-11-2022
Publisher
Springer US
Published in
Journal of Materials Science / Issue 44/2022
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-022-07898-y

Other articles of this Issue 44/2022

Journal of Materials Science 44/2022 Go to the issue

Premium Partners