2020
DOI: 10.1039/c9qm00700h
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Recent progress in the syntheses and applications of multishelled hollow nanostructures

Abstract: This review summarizes the synthesis methods for fabricating multishelled hollow nanostructures and provides views for such intricate hollow architectures in several emerging application areas.

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Cited by 67 publications
(32 citation statements)
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“…Hollow multishelled structures (HoMSs) with highly tunable geometric (shell number, shell spacing, shell thickness, and porosity) and compositional parameters, have shown great promise in various fields, such as catalysis, battery, adsorption, drug delivery, supercapacitor, solar cells, sensors, photodetectors, and upconversion photoluminescence . Moreover, the intrinsic properties of HoMSs, such as adjustable hydrophilic and aerophobic surface and short charge transport path, make HoMSs promising catalyst for surface reactions (Scheme ).…”
Section: Methodsmentioning
confidence: 99%
“…Hollow multishelled structures (HoMSs) with highly tunable geometric (shell number, shell spacing, shell thickness, and porosity) and compositional parameters, have shown great promise in various fields, such as catalysis, battery, adsorption, drug delivery, supercapacitor, solar cells, sensors, photodetectors, and upconversion photoluminescence . Moreover, the intrinsic properties of HoMSs, such as adjustable hydrophilic and aerophobic surface and short charge transport path, make HoMSs promising catalyst for surface reactions (Scheme ).…”
Section: Methodsmentioning
confidence: 99%
“…Reducing the particle size to the nanometric range and optimizing the morphology of the perovskite electrocatalysts are conducive to obtaining a larger three‐phase reaction interface, increasing the number of exposed active sites and oxygen pathways, promoting the charge and mass transport and thus achieving excellent electrocatalytic activity. [ 74 ] Nanostructured perovskite has been designed and proved to be an effective way to improve the mass activity of electrocatalysts for perovskite. [ 75–77 ] In general, nanostructural perovskite can be prepared through wet‐chemical synthesis, deposition‐based approaches, electrospinning and template‐assisted synthesis, and detailed preparation methods of nanostructural perovskite are available elsewhere.…”
Section: Activation Strategies For Perovskite‐type Structurementioning
confidence: 99%
“…This unique hollow structures can not only reduce the energy loss during the light transportation, but also provide large effective surface areas for photocatalytic reactions. [59] More importantly, the thin shells constructed by the 0D subunits decrease the diffusion length of minority carriers, thus suppress the charge recombination. [60] However, due to the difficulties in the synthesis of WO 3 HoMSs, reports on their photocatalytic applications are still scarce.…”
Section: D Tungsten Oxidesmentioning
confidence: 99%