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Interfacial assembly and applications of functional mesoporous materials
Functional mesoporous materials have gained tremendous attention due to their distinctive
properties and potential applications. In recent decades, the self-assembly of micelles and …
properties and potential applications. In recent decades, the self-assembly of micelles and …
Mesoporous materials for energy conversion and storage devices
To meet the growing energy demands in a low-carbon economy, the development of new
materials that improve the efficiency of energy conversion and storage systems is essential …
materials that improve the efficiency of energy conversion and storage systems is essential …
Embedding CsPbBr3 perovskite quantum dots into mesoporous TiO2 beads as an S-scheme heterojunction for CO2 photoreduction
Z Dong, Z Zhang, Y Jiang, Y Chu, J Xu - Chemical Engineering Journal, 2022 - Elsevier
Heterojunction engineering, especially S-scheme heterojunction, has been recognized as a
promising way to explore photocatalysts with boosted charge separation and CO 2 …
promising way to explore photocatalysts with boosted charge separation and CO 2 …
From scalable solution fabrication of perovskite films towards commercialization of solar cells
Organic–inorganic halide perovskite solar cells (PSCs) have achieved amazing progress in
terms of power conversion efficiency (PCE), rising from 3.8% to over 23.3%. Owing to …
terms of power conversion efficiency (PCE), rising from 3.8% to over 23.3%. Owing to …
Conversion of invisible metal-organic frameworks to luminescent perovskite nanocrystals for confidential information encryption and decryption
Traditional smart fluorescent materials, which have been attracting increasing interest for
security protection, are usually visible under either ambient or UV light, making them …
security protection, are usually visible under either ambient or UV light, making them …
Slow hot‐carrier cooling in halide perovskites: prospects for hot‐carrier solar cells
Rapid hot‐carrier cooling is a major loss channel in solar cells. Thermodynamic calculations
reveal a 66% solar conversion efficiency for single junction cells (under 1 sun illumination) if …
reveal a 66% solar conversion efficiency for single junction cells (under 1 sun illumination) if …
Two‐dimensional metal oxide nanomaterials for next‐generation rechargeable batteries
The exponential increase in research focused on two‐dimensional (2D) metal oxides has
offered an unprecedented opportunity for their use in energy conversion and storage …
offered an unprecedented opportunity for their use in energy conversion and storage …
Dynamic Evolution of Atomically Dispersed Cu Species for CO2 Photoreduction to Solar Fuels
Probing the dynamic evolution of catalyst structure and chemical state under operating
conditions is highly important for investigating the reaction mechanism of catalysis more in …
conditions is highly important for investigating the reaction mechanism of catalysis more in …
Metal oxide charge transport layers for efficient and stable perovskite solar cells
Currently, the efficiency of perovskite solar cells (PSCs) is≈ 24%. For the fabrication of such
high efficiency PSCs, it is necessary to use both electron and hole transport layers to …
high efficiency PSCs, it is necessary to use both electron and hole transport layers to …
Nanomaterials for energy conversion and storage
Nanostructured materials are advantageous in offering huge surface to volume ratios,
favorable transport properties, altered physical properties, and confinement effects resulting …
favorable transport properties, altered physical properties, and confinement effects resulting …