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Efficient electrocatalytic and photoelectrochemical hydrogen generation using MoS2 and related compounds
Producing hydrogen fuel through environmentally friendly electrochemical and solar-driven
photoelectrochemical (PEC) water splitting is a very promising approach for providing …
photoelectrochemical (PEC) water splitting is a very promising approach for providing …
Silicon‐compatible photodetectors: trends to monolithically integrate photosensors with chip technology
W Yang, J Chen, Y Zhang, Y Zhang… - Advanced Functional …, 2019 - Wiley Online Library
Encouraged by the increasing requirements of intelligent equipment, silicon integrated
circuit–compatible photodetectors that support single‐chip photonic–electronic systems …
circuit–compatible photodetectors that support single‐chip photonic–electronic systems …
Monolayer MoS2 Heterojunction Solar Cells
We realized photovoltaic operation in large-scale MoS2 monolayers by the formation of a
type-II heterojunction with p-Si. The MoS2 monolayer introduces a built-in electric field near …
type-II heterojunction with p-Si. The MoS2 monolayer introduces a built-in electric field near …
Efficient hydrogen evolution catalysis using ternary pyrite-type cobalt phosphosulphide
The scalable and sustainable production of hydrogen fuel through water splitting demands
efficient and robust Earth-abundant catalysts for the hydrogen evolution reaction (HER) …
efficient and robust Earth-abundant catalysts for the hydrogen evolution reaction (HER) …
MXene‐contacted silicon solar cells with 11.5% efficiency
MXene, a new class of 2D materials, has gained significant attention owing to its attractive
electrical conductivity, tunable work function, and metallic nature for wide range of …
electrical conductivity, tunable work function, and metallic nature for wide range of …
Enabling silicon for solar-fuel production
After over 150 years of exploiting fossil fuels, nowadays humans are encountering two great
global problems: the increasingly serious environmental pollution and the expected …
global problems: the increasingly serious environmental pollution and the expected …
Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
One of the pioneering materials nowadays is graphene quantum dot (GQD), which
possesses outstanding electrical, thermal, and mechanical properties followed by less …
possesses outstanding electrical, thermal, and mechanical properties followed by less …
Surface passivation of GaN nanowires for enhanced photoelectrochemical water-splitting
Hydrogen production via photoelectrochemical water-splitting is a key source of clean and
sustainable energy. The use of one-dimensional nanostructures as photoelectrodes is …
sustainable energy. The use of one-dimensional nanostructures as photoelectrodes is …
Stable solar-driven oxidation of water by semiconducting photoanodes protected by transparent catalytic nickel oxide films
Reactively sputtered nickel oxide (NiOx) films provide transparent, antireflective, electrically
conductive, chemically stable coatings that also are highly active electrocatalysts for the …
conductive, chemically stable coatings that also are highly active electrocatalysts for the …
Efficiency enhancement of silicon heterojunction solar cells via photon management using graphene quantum dot as downconverters
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of
16.55% in n-type Si heterojunction solar cells. The efficiency enhancement is based on the …
16.55% in n-type Si heterojunction solar cells. The efficiency enhancement is based on the …