2021
DOI: 10.1007/s40242-021-1343-8
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Graphdiyne: from Preparation to Biomedical Applications

Abstract: Graphdiyne(GDY) is a kind of two-dimensional carbon nanomaterial with specific configurations of sp and sp 2 carbon atoms. The key progress in the preparation and application of GDY is bringing carbon materials to a brand-new level. Here, the various properties and structures of GDY are introduced, including the existing strategies for the preparation and modification of GDY. In particular, GDY has gradually emerged in the field of life sciences with i… Show more

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Cited by 9 publications
(7 citation statements)
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“…Thus, N-doped GDY and its derivatives with outstanding advantages have been extensively studied in the energy conversion and storage, biological application, and environmental protection. [57][58][59] Given the influence of structures on the properties of GDY, a great deal of works including post-heating method and top-down method have been devoted into the fabrication of N-doped GDY and its derivatives. The post-heating method refers to the synthetic process of Ndoped GDY by heating GDY under N sources, such as high-purity ammonia.…”
Section: Metal-free Based Gdymentioning
confidence: 99%
“…Thus, N-doped GDY and its derivatives with outstanding advantages have been extensively studied in the energy conversion and storage, biological application, and environmental protection. [57][58][59] Given the influence of structures on the properties of GDY, a great deal of works including post-heating method and top-down method have been devoted into the fabrication of N-doped GDY and its derivatives. The post-heating method refers to the synthetic process of Ndoped GDY by heating GDY under N sources, such as high-purity ammonia.…”
Section: Metal-free Based Gdymentioning
confidence: 99%
“…Graphdiyne has an effective broad-spectrum free radical scavenging ability and good chemical stability (Li et al, 2021).…”
Section: Hyaluronic Acid Hydrogelsmentioning
confidence: 99%
“…Dry chemistry is mainly used to prepare materials on various substrates via gas–liquid solid-phase deposition. High-quality GDY has been obtained by dry chemistry, but large-scale production is limited by the insufficient preparation efficiency of GDY, which is mainly due to the rotation of carbon–carbon single bonds and the limited surface area of the substrate [ 32 ]. Wet chemistry is mainly carried out in solution, such as growth of carbon materials directly on copper sheets, or the use of growth based on the liquid–liquid or gas–liquid interface.…”
Section: Synthesis Of Gdy Materialsmentioning
confidence: 99%
“…Although wet chemical methods have the characteristics of low cost and ease of industrialization, the reaction process is difficult to control because of its high reaction activity. Therefore, both wet and dry approaches have their merits and limitations [ 32 ]. In 2010, Li et al used copper foil as a reaction template for the crosscoupling of hexaethynylbenzene monomers and synthesized the first GDY film on this substrate with an area of 3.61 cm 2 and semiconducting properties [ 33 ].…”
Section: Synthesis Of Gdy Materialsmentioning
confidence: 99%