Borcarbid-Energiespeichermaterial
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With the booming development of high technology, the issue of energy consumption has become a growing concern [1].The limited storage of traditional fossil energy
What is boron carbon nitride (BCN)?
Boron Carbon Nitride (BCN): An Emerging Two-Dimensional Material for Rechargeable Batteries Boron carbon nitride (BCN) is a prominent ultrathin two-dimensional (2D) material that has received significant attention in the recent past.
What is boron carbide?
1. 2. Boron carbide. A new crystalline abrasive and wear-resisting product Trans. Am. Electrochem. Soc., 66 (1934), pp. 117 - 133 3. Boron carbide. Production, properties, application Techn. Rundschau, 14, 28, 33 (1965) Boron carbide.
Can graphene oxide-bio-based Char be used as electrode material for supercapacitors?
In this study, a new hybrid graphene oxide-bio-based char as electrode material for supercapacitors was developed. The electrode material was synthesized through a low-temperature HTC process, which is a more energy-efficient approach for transforming lignocellulosic wastes into carbonaceous materials.
Which boron carbide is used as a absorber for PWR?
As an absorber for PWR 'natural' boron carbide (19"8 % ~) is used; pellets are pressureless sintered, the density is ~ 70% dth. In France, the Compagnie Franco Belge de Fabrication de Combustibles (FBFC) produces 2000m of pellets per year, i.e. 190 kg, corresponding to one reactor core.
Are biomass-derived biochars a promising electrode material for high-performance supercapacitor applications?
Moreno, R. et al. Facile synthesis of sustainable biomass-derived porous biochars as promising electrode materials for high-performance supercapacitor applications. Nanomaterials 12 (5), 866 (2022). Li, Y. et al. Bark-based 3D porous carbon nanosheet with ultrahigh surface area for high performance supercapacitor electrode material. ACS Sustain.
What is a hybrid spruce-bark-graphene oxide compound (hysb)?
Consequently, a hybrid spruce-bark-graphene oxide compound (HySB) was obtained as electrode material for supercapacitors. When compared to a regularly used commercial electrode material, SLC1512P graphite (reference) with 150.3 µF cm −2 capacitance, the HySB has a substantially higher capacitive performance of 530.5 µF cm −2.