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An Intelligent Approach in Design Optimzation Based on Determining Constraints Compatibility
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作者 Chen Yong Li Bailin(School of Mechanical Engineering),Southwest Jiaotong University, Chengdu 610031, China 《Journal of Modern Transportation》 1994年第2期95-103,共9页
Based on monotonicity analysis and computer symbolic manipulating technique,a procedure for determining constraints compatibility in design optimization hasbeen proposed in this paper. By using the proposed method rel... Based on monotonicity analysis and computer symbolic manipulating technique,a procedure for determining constraints compatibility in design optimization hasbeen proposed in this paper. By using the proposed method relationshipsbetween constrains can be determined and the optimization is greatly simplifid.The method is code with intelligent production systems. 展开更多
关键词 design optimization monotonicity analysis constraints compatibility intelligent optimization symbolic manipulating technique
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Recent Progress and New Horizons in Emerging Novel MXene-Based Materials for Energy Storage Applications for Current Environmental Remediation and Energy Crises
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作者 Karim Khan Ayesha Khan Tareen +7 位作者 Muhammad Iqbal Ye Zhang Asif Mahmood Nasir mahmood Zhe Shi Chunyang Ma J.R.Rosin Han Zhang 《Electrochemical Energy Reviews》 CSCD 2024年第1期700-786,共87页
Unsustainable fossil fuel energy usage and its environmental impacts are the most significant scientific challenges in the scientific community.Two-dimensional(2D)materials have received a lot of attention recently be... Unsustainable fossil fuel energy usage and its environmental impacts are the most significant scientific challenges in the scientific community.Two-dimensional(2D)materials have received a lot of attention recently because of their great potential for application in addressing some of society’s most enduring issues with renewable energy.Transition metal-based nitrides,carbides,or carbonitrides,known as“MXenes”,are a relatively new and large family of 2D materials.Since the discovery of the first MXene,Ti_(3)C_(2) in 2011 has become one of the fastest-expanding families of 2D materials with unique physiochemical features.MXene surface terminations with hydroxyl,oxygen,fluorine,etc.,are invariably present in the so far reported materials,imparting hydrophilicity to their surfaces.The current finding of multi-transition metal-layered MXenes with controlled surface termination capacity opens the door to fabricating unique structures for producing renewable energy.MXene NMs-based flexible chemistry allows them to be tuned for energy-producing/storage,electromagnetic interference shielding,gas/biosensors,water distillation,nanocomposite reinforcement,lubrication,and photo/electro/chemical catalysis.This review will first discuss the advancement of MXenes synthesis methods,their properties/stability,and renewable energy applications.Secondly,we will highlight the constraints and challenges that impede the scientific community from synthesizing functional MXene with controlled composition and properties.We will further reveal the high-tech implementations for renewable energy storage applications along with future challenges and their solutions. 展开更多
关键词 Recent development in synthesis Structures Properties of MXenes nanomaterials Propose approaches of diverse MXene-based nanoplatforms MXenes for renewable energy applications optimization strategies and mechanisms to enhance MXenes compatibility Current challenges and probable progress for MXenes in renewable energy applications
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