Reinforced steering Evolutionary Markov Chain for high-dimensional feature selection DOI Creative Commons
Atiq Ur Rehman, Samir Brahim Belhaouari, Amine Bermak

et al.

Swarm and Evolutionary Computation, Journal Year: 2024, Volume and Issue: 91, P. 101701 - 101701

Published: Aug. 10, 2024

The increasing accessibility of extensive datasets has amplified the importance extracting insights from high-dimensional data. However, task selecting relevant features in these spaces is made more difficult due to curse dimensionality. Although Evolutionary Algorithms (EAs) have shown promise literature for feature selection, creating EAs high dimensions still challenging. To address problem selection dimensions, a novel concept Reinforced Markov Chain proposed this paper. work following contributions and merits: (i) paradigms evolutionary computation, reinforcement learning, chain are incorporated into an integrational framework dimensional recursive manner. (ii) support global convergence algorithm manage its computational complexity, restricted group most effective agents maintained within population. (iii) dynamic process efficiently manages agent evolution communication, ensuring navigation through search space. (iv) Agents moving right way rewarded with increase their associated transition probability, while going wrong direction discouraged decrease probabilities; promotes establishment equilibrium state leads convergence. (v) size successful reduced recursively progressing different states further facilitate speed number features. (vi) performance comparison state-of-the-art methods shows significant improvement method over existing methods.

Language: Английский

Recent Advances in Carbon‐Based Electrodes for Energy Storage and Conversion DOI Creative Commons

Gopalakrishnan Kothandam,

Gurwinder Singh, Xinwei Guan

et al.

Advanced Science, Journal Year: 2023, Volume and Issue: 10(18)

Published: April 25, 2023

Carbon-based nanomaterials, including graphene, fullerenes, and carbon nanotubes, are attracting significant attention as promising materials for next-generation energy storage conversion applications. They possess unique physicochemical properties, such structural stability flexibility, high porosity, tunable features, which render them well suited in these hot research fields. Technological advances at atomic electronic levels crucial developing more efficient durable devices. This comprehensive review provides a state-of-the-art overview of advanced carbon-based nanomaterials various applications, focusing on supercapacitors, lithium sodium-ion batteries, hydrogen evolution reactions. Particular emphasis is placed the strategies employed to enhance performance through nonmetallic elemental doping N, B, S, P either individual or codoping, modifications creation defect sites, edge functionalization, inter-layer distance manipulation, aiming provide general guidelines designing devices by above approaches achieve optimal performance. Furthermore, this delves into challenges future prospects advancement electrodes conversion.

Language: Английский

Citations

162

A comprehensive review of the state-of-the-art of proton exchange membrane water electrolysis DOI Creative Commons
Nurettin Sezer, Sertaç Bayhan, Uğur Fesli

et al.

Materials Science for Energy Technologies, Journal Year: 2024, Volume and Issue: 8, P. 44 - 65

Published: July 26, 2024

Hydrogen has attracted growing research interest due to its exceptionally high energy per mass content and being a clean carrier, unlike the widely used hydrocarbon fuels. With possibility of long-term storage re-electrification, hydrogen promises promote effective utilization renewable sustainable resources. Clean can be produced through renewable-powered water electrolysis process. Although alkaline is currently mature commercially available technology for production, it several shortcomings that hinder integration with intermittent fluctuating sources. The proton exchange membrane (PEMWE) been developed offer voltage efficiencies at current densities. Besides, PEMWE cells are characterized by fast system response power, enabling operations broader partial power load ranges while consistently delivering high-purity low ohmic losses. Recently, much effort devoted improving efficiency, performance, durability, economy cells. activities in this context include investigations different cell component materials, protective coatings, material characterizations, as well synthesis analysis new electrocatalysts enhanced electrochemical activity stability minimized use noble metals. Further, many modeling studies have reported analyze performance considering electrochemistry, overvoltage, thermodynamics. Thus, imperative review compile recent covering multiple aspects one literature present advancements limitations field. This article offers comprehensive state-of-the-art It compiles on each discusses how characteristics these components affect overall performance. In addition, various catalyst materials reviewed. thermodynamics electrochemistry electrolytic splitting described, inherent overvoltage elucidated. modeling, aimed analyzing cells, compiled. Overall, provides components, electrocatalysts, but pursuit seamless transition energy.

Language: Английский

Citations

24

Investigating the electrochemical performance of MnSe-supported SrZrO3 perovskite oxide nanocomposite as an electrode material for supercapacitor DOI
Abdul Waheed Rabbani, Tauseef Munawar, Mohammed Mujahid Alam

et al.

Ceramics International, Journal Year: 2024, Volume and Issue: 50(13), P. 22884 - 22896

Published: April 2, 2024

Language: Английский

Citations

19

Enhanced charge carriers separation/transportation via S-scheme ZnCeS–ZnWO heterostructure nanocomposite for photodegradation of synthetic dyes under sunlight DOI
Tauseef Munawar,

Saman Fatima,

Khalid Mujasam Batoo

et al.

Materials Chemistry and Physics, Journal Year: 2024, Volume and Issue: 314, P. 128938 - 128938

Published: Jan. 11, 2024

Language: Английский

Citations

17

Sunlight-activated Mo-doped La2CuO4/rGO perovskite oxide nanocomposite for photocatalytic treatment of diverse dyes pollutant DOI
Tauseef Munawar, Faisal Mukhtar, Khalid Mujasam Batoo

et al.

Materials Science and Engineering B, Journal Year: 2024, Volume and Issue: 304, P. 117355 - 117355

Published: April 1, 2024

Language: Английский

Citations

17

Integrating Sn4+ ions to spinel nickel manganite (NiMn2O4) by sol–gel approach to enhance its electrochemical and photocatalytic properties DOI
John Abel Martin Mark, Senthilkumar Nallusamy,

C. Nandagopal

et al.

Journal of Sol-Gel Science and Technology, Journal Year: 2025, Volume and Issue: unknown

Published: March 7, 2025

Language: Английский

Citations

2

Rational design and electrochemical validation of reduced graphene oxide (rGO) supported CeO2-Nd2O3/rGO ternary nanocomposite as an efficient material for supercapacitor electrodes DOI
Tauseef Munawar,

Sonia Sardar,

Muhammad Shahid Nadeem

et al.

Journal of Applied Electrochemistry, Journal Year: 2023, Volume and Issue: 53(9), P. 1853 - 1868

Published: April 10, 2023

Language: Английский

Citations

27

A Review on the Use of Metal Oxide-Based Nanocomposites for the Remediation of Organics-Contaminated Water via Photocatalysis: Fundamentals, Bibliometric Study and Recent Advances DOI Creative Commons
Evando S. Araújo,

Michel F. G. Pereira,

Georgenes M. G. da Silva

et al.

Toxics, Journal Year: 2023, Volume and Issue: 11(8), P. 658 - 658

Published: Aug. 1, 2023

The improper disposal of toxic and carcinogenic organic substances resulting from the manufacture dyes, drugs pesticides can contaminate aquatic environments potable water resources cause serious damage to animal human health ecosystem. In this sense, heterogeneous photocatalysis stand out as one effective cost-effective depollution technique. use metal oxide nanocomposites (MON), mixture two or more oxides between these other functional semiconductor materials, have gained increasing attention researchers industrial developers a potential alternative produce efficient environmentally friendly photocatalysts for remediation contamination by compounds. Thus, work presents an updated review main advances in nanocomposites-based decontamination polluted substances. A bibliometric analysis allowed show evolution importance research topic literature over last decade. results study also showed that hierarchical nanostructures oxides, well conducting polymers carbon currently materials synthesis MON, with better performance degradation pharmaceuticals pesticides.

Language: Английский

Citations

23

Facile synthesis of NiMn 2 O 4 /ZnMn 2 O 4 heterostructure nanocomposite for visible-light-driven degradation of methylene blue dye DOI Creative Commons
Khaled Fahmi Fawy, Muhammad Faheem Ashiq, F. F. Alharbi

et al.

Journal of Taibah University for Science, Journal Year: 2024, Volume and Issue: 18(1)

Published: Feb. 1, 2024

Nowadays, waste discharge and contaminants in drinking water have emerged as a significant global problem. Therefore, it is necessary to remove these pollutants from the photocatalysis best technique for this purpose. The co-precipitation was employed produce NiMn2O4 ZnMn2O4 photocatalyst containing NiMn2O4/ZnMn2O4 heterostructure nanocomposite. Various analytical techniques been ascribed examine physical, morphological optical features of fabricated catalysts. XRD diffraction peak patterns were utilized confirm presence cubic NiMn2O4, tetragonal phases In photodegradation tests, nanocomposite catalyst outperformed individual After 60 minutes visible light exposure, eliminated methylene blue (MB) dye, attaining substantially higher degradation rates than pure (66%) (77%). highly effective against dye with efficiency 92%.

Language: Английский

Citations

12

Nanostructural engineered titanium dioxide by rare earth metals dual doping for electrochemical supercapacitor applications DOI
Tauseef Munawar, Sumaira Manzoor, Karam Jabbour

et al.

Journal of the Korean Ceramic Society, Journal Year: 2024, Volume and Issue: 61(4), P. 545 - 557

Published: April 17, 2024

Language: Английский

Citations

11