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Functional Noncentrosymmetric Nanoparticle-Nanofiber Hybrids via Selective Fragmentation.
MacKenzie, Harvey K; Zhang, Yifan; Zheng, Weijia; Shaikh, Huda; MacFarlane, Liam R; Musgrave, Rebecca A; Manners, Ian.
Afiliación
  • MacKenzie HK; Department of Chemistry, University of Victoria, Victoria, BC V8W 3V6, Canada.
  • Zhang Y; Centre for Advanced Materials and Related Technology (CAMTEC), University of Victoria, 3800 Finnerty Road, Victoria, BC V8P 5C2, Canada.
  • Zheng W; Department of Chemistry, University of Victoria, Victoria, BC V8W 3V6, Canada.
  • Shaikh H; Key Laboratory of Photochemistry, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
  • MacFarlane LR; Key Laboratory of Green Catalysis of Higher Education Institutes of Sichuan, School of Chemistry and Environmental Engineering, Sichuan University of Science and Engineering, Zigong 643000, P. R. China.
  • Musgrave RA; Department of Chemistry, University of Victoria, Victoria, BC V8W 3V6, Canada.
  • Manners I; Department of Chemistry, University of Victoria, Victoria, BC V8W 3V6, Canada.
J Am Chem Soc ; 146(27): 18504-18512, 2024 Jul 10.
Article en En | MEDLINE | ID: mdl-38946087
ABSTRACT
Noncentrosymmetric nanostructures are an attractive synthetic target as they can exhibit complex interparticle interactions useful for numerous applications. However, generating uniform, colloidally stable, noncentrosymmetric nanoparticles with low aspect ratios is a significant challenge using solution self-assembly approaches. Herein, we outline the synthesis of noncentrosymmetric multiblock co-nanofibers by subsequent living crystallization-driven self-assembly of block co-polymers, spatially confined attachment of nanoparticles, and localized nanofiber fragmentation. Using this strategy, we have fabricated uniform diblock and triblock noncentrosymmetric π-conjugated nanofiber-nanoparticle hybrid structures. Additionally, in contrast to Brownian motion typical of centrosymmetric nanoparticles, we demonstrated that these noncentrosymmetric nanofibers undergo ballistic motion in the presence of H2O2 and thus could be employed as nanomotors in various applications, including drug delivery and environmental remediation.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: J Am Chem Soc Año: 2024 Tipo del documento: Article País de afiliación: Canadá

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: J Am Chem Soc Año: 2024 Tipo del documento: Article País de afiliación: Canadá