Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Realizing Electrochemical Energy Conversion and Storage with Borophene: Science, Engineering, Obstacles, and Future Opportunities

View through CrossRef
Abstract A novel 2D material that is a formidable opponent to graphene (Gr) is borophene, which stands as 2D boron sheets. This innovative material has gained interest in the energy sector due to its wide range of chemical properties, intricate structural geometries, possession of massless Dirac fermions, outstanding hardness, and high carrier mobility. Unlike Gr, which lacks a band gap, borophene exhibits a band gap, endowing it with distinct advantages. Although many advancements in borophene materials, including their synthesis, structural and electronic characterization, and applications, have been discussed in the literature, there is still a need for a quantitative and qualitative assessment from both the experimental and theoretical perspectives, as well as the learned lesson implication in real‐world applications of this material. This review highlights recent theoretical and experimental discoveries about borophene, focusing on key scientific findings, structural and electronic properties, and diverse applications, particularly in energy conversion processes and energy storage systems such as batteries and supercapacitors. Finally, the paper discusses current research challenges and future opportunities for large‐scale borophene synthesis and its potential uses.
Title: Realizing Electrochemical Energy Conversion and Storage with Borophene: Science, Engineering, Obstacles, and Future Opportunities
Description:
Abstract A novel 2D material that is a formidable opponent to graphene (Gr) is borophene, which stands as 2D boron sheets.
This innovative material has gained interest in the energy sector due to its wide range of chemical properties, intricate structural geometries, possession of massless Dirac fermions, outstanding hardness, and high carrier mobility.
Unlike Gr, which lacks a band gap, borophene exhibits a band gap, endowing it with distinct advantages.
Although many advancements in borophene materials, including their synthesis, structural and electronic characterization, and applications, have been discussed in the literature, there is still a need for a quantitative and qualitative assessment from both the experimental and theoretical perspectives, as well as the learned lesson implication in real‐world applications of this material.
This review highlights recent theoretical and experimental discoveries about borophene, focusing on key scientific findings, structural and electronic properties, and diverse applications, particularly in energy conversion processes and energy storage systems such as batteries and supercapacitors.
Finally, the paper discusses current research challenges and future opportunities for large‐scale borophene synthesis and its potential uses.

Related Results

Mechanical properties and deformation mechanisms of two-dimensional borophene under different loadings
Mechanical properties and deformation mechanisms of two-dimensional borophene under different loadings
Two-dimensional (2D) borophene has attracted widespread research interest in condensed matter physics and materials science because of its rich physical and chemical properties. Ho...
Nickel Phthalocyanine: Borophene P-N Junction-Based Thermoelectric Generator
Nickel Phthalocyanine: Borophene P-N Junction-Based Thermoelectric Generator
In this study, borophene and nickel phthalocyanine (NiPc): borophene nanocomposites were prepared using the sonication method. The NiPc: borophene nanocomposite was uniformly obtai...
Novel PANI:Borophene/Si Schottky device for the sensitive detection of illumination and NaCl salt solutions
Novel PANI:Borophene/Si Schottky device for the sensitive detection of illumination and NaCl salt solutions
AbstractMetal/semiconductor structures, particularly Schottky diodes, play a crucial role in semiconductor identification and the production of electronic devices, like solar cells...
Advances In Borophene: Synthesis, Tunable Properties, and Energy Storage Applications
Advances In Borophene: Synthesis, Tunable Properties, and Energy Storage Applications
Abstract Monolayer boron nanosheet, commonly known as borophene, has garnered significant attention in recent years due to its unique structural, electronic, mech...
Production Methods and Energy Applications of Borophene
Production Methods and Energy Applications of Borophene
Two dimensional materials have unique physical, chemical and electrical properties. Many theoretical studies on borophene revealed important possible properties, such as metallicit...
A computational investigation on the adsorption behavior of bromoacetone on B 36 borophene nanosheet
A computational investigation on the adsorption behavior of bromoacetone on B 36 borophene nanosheet
Abstract Density functional theory (DFT) methods are employed to investigate the capability of B36 borophene nanosheets as sensors for detecting the bromoacetone (BCT) mole...

Back to Top