Sub-One-Nanometer Nanomaterials Showing Polymer-Analogue Properties AITranslate
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Conventional inorganic materials are usually brittle and hard, which limits their application in some fields. Great efforts have been made to endow the inorganic materials with flexibility; however, there is hardly any effective method. Because of the sub-1-nm size, sub-1-nm nanomaterials show some unique properties compared with nanomaterials with larger sizes, such as the polymer-like property. Thus, sub-1-nm nanomaterials are found to be a good entry point to bridge inorganic materials and polymer materials. Rational assembly and processing of the functional sub-1-nm nanomaterials will bring great opportunities for the construction of micro- or nano-devices and applications of inorganic nanomaterials. In this Viewpoint, we briefly introduce the significance and research of the sub-1-nm nanomaterials and envision the future research direction and challenge.
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DOI:https://doi.org/10.1021/acsmaterialslett.0c00149
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Citation Information:
Conventional inorganic materials are usually brittle and hard, which limits their application in some fields. Great efforts have been made to endow the inorganic materials with flexibility; however, there is hardly any effective method. Because of the sub-1-nm size, sub-1-nm nanomaterials show some unique properties compared with nanomaterials with larger sizes, such as the polymer-like property. Thus, sub-1-nm nanomaterials are found to be a good entry point to bridge inorganic materials and polymer materials. Rational assembly and processing of the functional sub-1-nm nanomaterials will bring great opportunities for the construction of micro- or nano-devices and applications of inorganic nanomaterials. In this Viewpoint, we briefly introduce the significance and research of the sub-1-nm nanomaterials and envision the future research direction and challenge.
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| GB/T 7714-2015 | [1] Simin Zhang, Xun Wang. ACS Materials Letters, 2020(2). DOI:10.1021/acsmaterialslett.0c00149. |
| MLA | [1] Simin Zhang, and Xun Wang. ACS Materials Letters, no. 2, 2020, https://doi.org/10.1021/acsmaterialslett.0c00149. |
| APA | [1] Simin Zhang, & Xun Wang. (2020). ACS Materials Letters(2). https://doi.org/10.1021/acsmaterialslett.0c00149 |
| IEEE | [1] Simin Zhang and Xun Wang, ACS Materials Letters, no. 2, 2020, doi: 10.1021/acsmaterialslett.0c00149. |
