Carbon‐based metal‐free ORR electrocatalysts for fuel cells: past, present, and future

L Yang, J Shui, L Du, Y Shao, J Liu, L Dai… - Advanced …, 2019 - Wiley Online Library
Replacing precious platinum with earth‐abundant materials for the oxygen reduction
reaction (ORR) in fuel cells has been the objective worldwide for several decades. In the last …

Nitrogen-doped graphene nanomaterials for electrochemical catalysis/reactions: A review on chemical structures and stability

N Talukder, Y Wang, BB Nunna, ES Lee - Carbon, 2021 - Elsevier
The electronic structure of the carbon-based nanomaterials can be modulated by doping
heteroatoms into them. When nitrogen is doped into the graphene structure with different …

[HTML][HTML] Band gap formation of 2D materialin graphene: Future prospect and challenges

R Nandee, MA Chowdhury, A Shahid, N Hossain… - Results in …, 2022 - Elsevier
Graphene, a single particle thicker carbon layer with a hexagonal form, was successfully
confined, and the potential electrical impact was observed in 2004. Since a surge in study …

Advanced cathode electrocatalysts for fuel cells: Understanding, construction, and application of carbon-based and platinum-based nanomaterials

Z Kong, D Zhang, Y Lu, C Yang, S Du, W Li… - ACS Materials …, 2021 - ACS Publications
Proton-exchange-membrane fuel cells (PEMFCs) are one type of promising energy device
with clean and high efficiency characteristics. The sluggish kinetic characteristics of cathode …

Electronic and Transport Properties in Defective MoS2: Impact of Sulfur Vacancies

SM Gali, A Pershin, A Lherbier… - The Journal of …, 2020 - ACS Publications
Crystal impurities, such as atomic vacancies, are known to modulate the charge transport
characteristics of two-dimensional (2D) materials. Here, we apply a first-principles-enriched …

Straintronics in graphene: Extra large electronic band gap induced by tensile and shear strains

IY Sahalianov, TM Radchenko, VA Tatarenko… - Journal of Applied …, 2019 - pubs.aip.org
The possibility of inducing a sizeable energy gap in the electronic structure of a graphene
layer is still one of the biggest and most debated challenges in graphene electronics …

Remarkable thermopower property enhancement in two-dimensional SiC via B and N doping and magnetic field

R Chegel - Journal of Alloys and Compounds, 2023 - Elsevier
DFT-based tight binding theory calculations and the Kubo conductivity formula were used to
investigate the thermopower properties of 2D SiC with different impurity concentrations and …

Multi‐Scale Dispersion Engineering on Biomass‐Derived Materials for Ultra‐Wideband and Wide‐Angle Microwave Absorption

R Tan, Y Liu, W Li, J Zhou, P Chen, A Zavabeti… - Small …, 2024 - Wiley Online Library
Efficient electromagnetic waves (EMWs) absorbing materials play a vital role in the
electronic era. In traditional research on microwave absorbing (MA) materials, the …

[HTML][HTML] Functionalization of quasi-two-dimensional materials: chemical and strain-induced modifications

AG Solomenko, RM Balabai, TM Radchenko… - Prog. Phys …, 2022 - ufm.imp.kiev.ua
Among the family of currently known promising quasi-two-dimensional (2D) materials, the
authors of this survey concentrate on the problem of functionalization of the graphene-and …

N-and O-doped hollow carbons constructed by self-and extrinsic activation for the oxygen reduction reaction and flexible zinc–air Batteries

Q Xie, W Si, Y Shen, Z Wang, H Uyama - Nanoscale, 2021 - pubs.rsc.org
Zinc–air batteries (ZAB), especially those assembled on flexible substrates, have attracted
great research attention in electronics and wearable electronics. However, the air–cathode …