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PUBMED FOR HANDHELDS

Journal Abstract Search


158 related items for PubMed ID: 34285274

  • 1. Synthesis of bimetallic nanoparticles loaded on to PNIPAM hybrid microgel and their catalytic activity.
    Kakar MU, Khan K, Akram M, Sami R, Khojah E, Iqbal I, Helal M, Hakeem A, Deng Y, Dai R.
    Sci Rep; 2021 Jul 20; 11(1):14759. PubMed ID: 34285274
    [Abstract] [Full Text] [Related]

  • 2. Temperature-Controlled Catalysis by Core-Shell-Satellite AuAg@pNIPAM@Ag Hybrid Microgels: A Highly Efficient Catalytic Thermoresponsive Nanoreactor.
    Tzounis L, Doña M, Lopez-Romero JM, Fery A, Contreras-Caceres R.
    ACS Appl Mater Interfaces; 2019 Aug 14; 11(32):29360-29372. PubMed ID: 31329406
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  • 3. Multifunctional Core-Shell Microgels as Pd-Nanoparticle Containing Nanoreactors With Enhanced Catalytic Turnover.
    Sabadasch V, Dirksen M, Fandrich P, Hellweg T.
    Front Chem; 2022 Aug 14; 10():889521. PubMed ID: 35692683
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  • 4. Ag-Au bimetallic nanocomposites stabilized with organic-inorganic hybrid microgels: synthesis and their regulated optical and catalytic properties.
    Li L, Niu R, Zhang Y.
    RSC Adv; 2018 Mar 26; 8(22):12428-12438. PubMed ID: 35539397
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  • 5. Smart microgel-metal hybrid particles of PNIPAM-co-PAA@AgAu: synthesis, characterizations and modulated catalytic activity.
    Bhol P, Mohanty PS.
    J Phys Condens Matter; 2020 Feb 24; 33(8):084002. PubMed ID: 33017813
    [Abstract] [Full Text] [Related]

  • 6. Incorporation of gold nanoparticles within thermoresponsive microgel particles: effect of crosslinking density.
    Dong Y, Ma Y, Zhai T, Zeng Y, Fu H, Yao J.
    J Nanosci Nanotechnol; 2008 Dec 24; 8(12):6283-9. PubMed ID: 19205195
    [Abstract] [Full Text] [Related]

  • 7. Preparation of Amino-Functionalized Poly(N-isopropylacrylamide)-Based Microgel Particles.
    Harsányi A, Kardos A, Varga I.
    Gels; 2023 Aug 28; 9(9):. PubMed ID: 37754373
    [Abstract] [Full Text] [Related]

  • 8. Catalytic reduction of nitroarenes by palladium nanoparticles decorated silica@poly(chitosan-N-isopropylacrylamide-methacrylic acid) hybrid microgels.
    Arif M, Rauf A, Raza H, Moussa SB, Haroon SM, Alzahrani AYA, Akhter T.
    Int J Biol Macromol; 2024 Aug 28; 275(Pt 1):133633. PubMed ID: 38964695
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  • 10. Synergistic Bonding of Poly(N-isopropylacrylamide)-Based Hybrid Microgels and Gold Nanoparticles Used for Temperature-Responsive Controllable Catalysis of p-Nitrophenol Reduction.
    Chang K, Yan Y, Zhang D, Xia Y, Chen X, Lei L, Shi S.
    Langmuir; 2023 Feb 14; 39(6):2408-2421. PubMed ID: 36725677
    [Abstract] [Full Text] [Related]

  • 11. Polymerized stimuli-responsive microgel hybrids of silver nanoparticles as efficient reusable catalyst for reduction reaction.
    Pany B, Majumdar AG, Bhat S, Si S, Yamanaka J, Mohanty PS.
    Heliyon; 2024 Mar 15; 10(5):e26244. PubMed ID: 38434308
    [Abstract] [Full Text] [Related]

  • 12. Microgel-encapsulated methylene blue for the treatment of breast cancer cells by photodynamic therapy.
    Khanal A, Bui MP, Seo SS.
    J Breast Cancer; 2014 Mar 15; 17(1):18-24. PubMed ID: 24744793
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  • 14. Engineering of responsive polymer based nano-reactors for facile mass transport and enhanced catalytic degradation of 4-nitrophenol.
    Begum R, Farooqi ZH, Butt Z, Wu Q, Wu W, Irfan A.
    J Environ Sci (China); 2018 Oct 15; 72():43-52. PubMed ID: 30244750
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  • 17. Reduction of nitroarenes catalyzed by microgel-stabilized silver nanoparticles.
    Begum R, Farooqi ZH, Aboo AH, Ahmed E, Sharif A, Xiao J.
    J Hazard Mater; 2019 Sep 05; 377():399-408. PubMed ID: 31176075
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  • 20. Preparation and characterization of microgels sensitive toward copper II ions.
    Muratalin M, Luckham PF.
    J Colloid Interface Sci; 2013 Apr 15; 396():1-8. PubMed ID: 23403115
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