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A review of transition metal boride, carbide, pnictide, and chalcogenide water oxidation electrocatalysts
Transition metal borides, carbides, pnictides, and chalcogenides (X-ides) have emerged as
a class of materials for the oxygen evolution reaction (OER). Because of their high earth …
a class of materials for the oxygen evolution reaction (OER). Because of their high earth …
2D transition metal dichalcogenides: design, modulation, and challenges in electrocatalysis
Hydrogen has been deemed as an ideal substitute fuel to fossil energy because of its
renewability and the highest energy density among all chemical fuels. One of the most …
renewability and the highest energy density among all chemical fuels. One of the most …
Atomically reconstructed palladium metallene by intercalation-induced lattice expansion and amorphization for highly efficient electrocatalysis
As an emerging class of materials with distinctive physicochemical properties, metallenes
are deemed as efficient catalysts for energy-related electrocatalytic reactions. Engineering …
are deemed as efficient catalysts for energy-related electrocatalytic reactions. Engineering …
In-situ/operando Raman techniques for in-depth understanding on electrocatalysis
Recently, the electrocatalysis has attracted increasing attention for the sustainable
development of society, which has been applied for energy harvesting/storage and pollution …
development of society, which has been applied for energy harvesting/storage and pollution …
Phase‐Regulated Active Hydrogen Behavior on Molybdenum Disulfide for Electrochemical Nitrate‐to‐Ammonia Conversion
Electrochemical reduction of nitrate waste is promising for environmental remediation and
ammonia preparation. This process includes multiple hydrogenation steps, and thus the …
ammonia preparation. This process includes multiple hydrogenation steps, and thus the …
Single-atom engineering to ignite 2D transition metal dichalcogenide based catalysis: Fundamentals, progress, and beyond
Single-atom catalysis has been recognized as a pivotal milestone in the development
history of heterogeneous catalysis by virtue of its superior catalytic performance, ultrahigh …
history of heterogeneous catalysis by virtue of its superior catalytic performance, ultrahigh …
Nanoarchitectonics for transition‐metal‐sulfide‐based electrocatalysts for water splitting
Heterogenous electrocatalysts based on transition metal sulfides (TMS) are being actively
explored in renewable energy research because nanostructured forms support high intrinsic …
explored in renewable energy research because nanostructured forms support high intrinsic …
Amorphous catalysts and electrochemical water splitting: an untold story of harmony
In the near future, sustainable energy conversion and storage will largely depend on the
electrochemical splitting of water into hydrogen and oxygen. Perceiving this, countless …
electrochemical splitting of water into hydrogen and oxygen. Perceiving this, countless …
Crystal-phase engineering in heterogeneous catalysis
JW Zhao, HY Wang, L Feng, JZ Zhu, JX Liu… - Chemical …, 2023 - ACS Publications
The performance of a chemical reaction is critically dependent on the electronic and/or
geometric structures of a material in heterogeneous catalysis. Over the past century, the …
geometric structures of a material in heterogeneous catalysis. Over the past century, the …
In Situ/Operando Studies for Designing Next-Generation Electrocatalysts
It has been widely acknowledged that most electrocatalysts would undergo a structural
reconstruction during the water splitting as well as carbon dioxide (CO2) reduction reactions …
reconstruction during the water splitting as well as carbon dioxide (CO2) reduction reactions …