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Recent progress in synthesis and properties of two-dimensional boron carbon nitride for application in energy storage devices
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Abstract
Two-dimensional (2D) Boron Carbon Nitride (BCN) has recently gained significant attention as a convoluted ternary system owing to its remarkable capability to exhibit a wide range of finely tunable physical, chemical, optical, and electrical properties. In this review, we discuss a variety of stable structure forms of BCN nanosheets. In addition, this review provides recent approaches for synthesizing BCN nanostructures, and properties of BCN derivatives. BCN is a promising material for sustainable energy and energy storage devices. Since BCN application is a challenge in the field of energy, we present potential applications of BCN in the field of energy including supercapacitors and batteries, wastewater treatment, electrochemical sensing, and gas adsorption.
Title: Recent progress in synthesis and properties of two-dimensional boron carbon nitride for application in energy storage devices
Description:
Abstract
Two-dimensional (2D) Boron Carbon Nitride (BCN) has recently gained significant attention as a convoluted ternary system owing to its remarkable capability to exhibit a wide range of finely tunable physical, chemical, optical, and electrical properties.
In this review, we discuss a variety of stable structure forms of BCN nanosheets.
In addition, this review provides recent approaches for synthesizing BCN nanostructures, and properties of BCN derivatives.
BCN is a promising material for sustainable energy and energy storage devices.
Since BCN application is a challenge in the field of energy, we present potential applications of BCN in the field of energy including supercapacitors and batteries, wastewater treatment, electrochemical sensing, and gas adsorption.
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