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Graphitic carbon nitride-based upconversion photocatalyst for hydrogen production and water purification

期刊

NANOFABRICATION
卷 7, 期 -, 页码 -

出版社

Eurasia Acad Publ Group (EAPG)
DOI: 10.37819/nanofab.007.189

关键词

Graphitic carbon nitride; NIR photocatalysis; Upconversion; H-2 production; Pollutant degradation

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Upconversion luminescence is a nonlinear optical method that can convert low energy photons into higher energy ones. Mixing upconversion nanomaterials with other photocatalysts can create near-infrared light-responsive photocatalytic systems. Combining graphitic carbon nitride with upconversion nanocrystals can enhance its light-harvesting property.
Upconversion luminescence (UCL) is mainly a nonlinear optical method that some engineered nanomaterials can attain and helps in the transformation of low energy phonons (near-infrared photons) into higher energy phonons (ultraviolet (UV) and visible light photons). Upconversion (UC) nanomaterials are a suitable candidate for preparing near-infrared (NIR) light-responsive photocatalytic systems by mixing with other photocatalysts. Many reports have been published on lanthanide-based UC materials (Ln(3+) ions as dopants) and carbon quantum dots (CQDs) carrying UC property with their use in photocatalytic removal of pollutants and energy production. Besides these UC nanomaterials. graphitic carbon nitride (g-C3N4) as a potential photocatalyst (metal-free and ecofriendly) has gained attention owing to its unique and amazing possessions. But some limitations and inadequate utilization of visible light restrict its photocatalytic applicability. Therefore, to enhance or widen its lightharvesting property towards the NIR region, the integration of upconversion nanocrystals (UC NCs) into g-C3N4 is considered an effective approach. Thus, the present review is focused on the amalgamation of g-C3N4 with UC nanomaterials for full solar spectrum absorption in H-2 production and pollutant degradation via NIR light absorption.

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