Hybrid plasmonic nanomaterials for hydrogen generation and carbon dioxide reduction
The successful development of artificial photosynthesis requires finding new materials able
to efficiently harvest sunlight and catalyze hydrogen generation and carbon dioxide …
to efficiently harvest sunlight and catalyze hydrogen generation and carbon dioxide …
Rare-earth-containing perovskite nanomaterials: design, synthesis, properties and applications
Z Zeng, Y Xu, Z Zhang, Z Gao, M Luo, Z Yin… - Chemical Society …, 2020 - pubs.rsc.org
As star material, perovskites have been widely used in the fields of optics, photovoltaics,
electronics, magnetics, catalysis, sensing, etc. However, some inherent shortcomings, such …
electronics, magnetics, catalysis, sensing, etc. However, some inherent shortcomings, such …
Perovskite oxide based materials for energy and environment-oriented photocatalysis
The use of solar energy to catalyze the photo-driven processes has attracted tremendous
attention from the scientific community because of its great potential to address energy and …
attention from the scientific community because of its great potential to address energy and …
Recent progress of the transition metal-based catalysts in the catalytic biomass gasification: A mini-review
Biomass is regarded as an important renewable resource, which plays a critical role in the
development of sustainable energy systems. Biomass can be converted into energy or …
development of sustainable energy systems. Biomass can be converted into energy or …
Plasmonic hot electrons: Potential candidates for improved photocatalytic hydrogen production
M Ijaz - International Journal of Hydrogen Energy, 2023 - Elsevier
The photocatalytic water splitting is an emerging way of solar to hydrogen conversion due to
its cheap and clean nature. The plasmon excitations in metallic sub-wavelength …
its cheap and clean nature. The plasmon excitations in metallic sub-wavelength …
Facile Synthesis of Defect-Modified Thin-Layered and Porous gC3N4 with Synergetic Improvement for Photocatalytic H2 Production
Modulating and optimizing the diverse parameters of photocatalysts synergistically as well
as exerting these advantages fully in photocatalytic reactions are crucial for the sufficient …
as exerting these advantages fully in photocatalytic reactions are crucial for the sufficient …
High potential and robust ternary LaFeO3/CdS/carbon quantum dots nanocomposite for photocatalytic H2 evolution under sunlight illumination
S Manchala, A Gandamalla, NR Vempuluru… - Journal of Colloid and …, 2021 - Elsevier
Exploitation of the novel, robust, and advanced photocatalytic systems with high efficiency is
the present demand for clean, green, and sustainable energy production. Carbon quantum …
the present demand for clean, green, and sustainable energy production. Carbon quantum …
Recent advancement in LaFeO3-mediated systems towards photocatalytic and photoelectrocatalytic hydrogen evolution reaction: A comprehensive review
The present disrupted scenario of the world calls for urgent attention to the need for
renewable resources as an energy source for harnessing and feeding uninterrupted power …
renewable resources as an energy source for harnessing and feeding uninterrupted power …
Green synthesis of SrO bridged LaFeO3/g-C3N4 nanocomposites for CO2 conversion and bisphenol A degradation with new insights into mechanism
Very recently the green synthesis routes of nanomaterials have attracted massive attention
as it overcome the sustainability concerns of conventional synthesis approaches. With this …
as it overcome the sustainability concerns of conventional synthesis approaches. With this …
Heterostructured photocatalysts for water splitting and the interfacial charge transfer
Y Zheng, E Wang, J Zhou, Z Sun - ACS Materials Letters, 2024 - ACS Publications
Photocatalytic water splitting for hydrogen evolution has opened new possibilities for
addressing energy and environmental issues. Type-II, direct Z-Scheme, and Schottky …
addressing energy and environmental issues. Type-II, direct Z-Scheme, and Schottky …