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Cell Sheet-Like Soft Nanoreactor Arrays.
Shi, Qianqian; Yong, Zijun; Uddin, Md Hemayet; Fu, Runfang; Sikdar, Debabrata; Yap, Lim Wei; Fan, Bo; Liu, Yiyi; Dong, Dashen; Cheng, Wenlong.
Afiliação
  • Shi Q; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
  • Yong Z; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
  • Uddin MH; Melbourne Center for Nanofabrication, Clayton, Victoria, 3168, Australia.
  • Fu R; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
  • Sikdar D; Department of Electronics and Electrical Engineering, Indian Institute of Technology Guwahati, Guwahati, 781039, India.
  • Yap LW; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
  • Fan B; School of Chemistry, Monash University, Clayton, Victoria, 3800, Australia.
  • Liu Y; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
  • Dong D; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
  • Cheng W; Department of Chemical & Biological Engineering, Faculty of Engineering, Monash University, Clayton, Victoria, 3800, Australia.
Adv Mater ; 34(5): e2105630, 2022 Feb.
Article em En | MEDLINE | ID: mdl-34773416
ABSTRACT
Tissues, which consist of groups of closely packed cell arrays, are essentially sheet-like biosynthesis plants. In tissues, individual cells are discrete microreactors working under highly viscous and confined environments. Herein, soft polystyrene-encased nanoframe (PEN) reactor arrays, as analogous nanoscale "sheet-like chemosynthesis plants", for the controlled synthesis of novel nanocrystals, are reported. Although the soft polystyrene (PS) is only 3 nm thick, it is elastic, robust, and permeable to aqueous solutes, while significantly slowing down their diffusion. PEN-associated palladium (Pd) crystallization follows a diffusion-controlled zero-order kinetics rather than a reaction-controlled first-order kinetics in bulk solution. Each individual PEN reactor has a volume in the zeptoliter range, which offers a unique confined environment, enabling a directional inward crystallization, in contrast to the conventional outward nucleation/growth that occurs in an unconfined bulk solution. This strategy makes it possible to generate a set of mono-, bi-, and trimetallic, and even semiconductor nanocrystals with tunable interior structures, which are difficult to achieve with normal systems based on bulk solutions.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Pontos Quânticos / Nanopartículas Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Pontos Quânticos / Nanopartículas Idioma: En Ano de publicação: 2022 Tipo de documento: Article