| Literature DB >> 32681039 |
Nobuhiko Hosono1,2, Shuto Mochizuki1,3, Yuki Hayashi1, Takashi Uemura4,5,6.
Abstract
Polymers with two-dimensional (2D) network topologies are currently gaining significant attention due to their unique properties that originate from their regulated conformations. However, in contrast to conventional 1D- and 3D-networked macromolecules, the synthesis of such 2D networks provides challenges forEntities:
Year: 2020 PMID: 32681039 PMCID: PMC7367882 DOI: 10.1038/s41467-020-17392-1
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Fig. 1Synthesis of polymer 2D monosheets using a pillared-layer MOF.
a–d Schematically depicting the fabrication of ultimately thin polymeric sheets by crosslinking polymerisation in a MOF with 2D nanospaces. a Pillared-layer MOF, 1. b 1⊃Monomer composite. c 1⊃Polymer composite. d Polymer-1 with a unimolecularly thick polymer networking architecture.
Fig. 2MOF structures.
a Crystal structure of 1. b The structure of the [Ni(Hbtc)] layer. Atoms: Ni (green), O (red), C (grey), and N (blue). H atoms are omitted for clarity. Disordered bipyridine moieties have been omitted for clarity in a. An MD simulation snapshot of 1⊃St c before and d after quenching the dynamics from 493 to 293 K over 1000 ps under NVT condition, where the St monomer units are confined within a single interstice of 1. The MD simulations reveal that the St monomers do not leap across [Ni(Hbtc)] layers into neighbouring interstices (Supplementary Fig. 1).
Fig. 3Synthesis of 1⊃PSt and PSt-1.
a XRPD patterns of 1, 1⊃St, 1⊃PSt, and isolated PSt-1. b The Tyndall effect observed by passing a laser beam through the chloroform dispersion of PSt-1. c Size distribution of PSt-1 measured by DLS in chloroform at 25 °C.
Fig. 4AFM images of PSt-1 deposited on HOPG or mica substrates.
a AFM topographic image and b height profile of PSt-1 deposited on an HOPG substrate. Scale bar: 500 nm. c A magnified AFM topographic image and d height profile of independent sheets of PSt-1 deposited on an HOPG substrate. Scale bar: 100 nm. e AFM topographic image and f height profile of PSt-1 deposited on a mica substrate. Scale bar: 500 nm. Each height profile follows the green line in the corresponding AFM image. All materials were spin-cast on the given substrate from a 0.1 µg mL–1 chloroform solution.
Fig. 5DMA data for PSt-1, PSt-L, and PSt-C.
Temperature sweeps of: a storage modulus (G′), b loss modulus (G″), and c loss factor (tan δ = G″/G′) for PSt-1 (red), PSt-L (blue), and PSt-C (green) at a frequency ω of 1 s−1.