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Molecular Understanding of Charge Storage in MoS_(2)Supercapacitors with Ionic Liquids
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作者 zhun liang Chang Zhao +4 位作者 Wei Zhao Yuan Zhang Pattarachai Srimuk Volker Presser Guang Feng 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2021年第4期631-637,共7页
Owing to high electrical conductivity and ability to reversibly host a variety of inserted ions,2D metallic molybdenum disulfide(1 T-MoS_(2))has demonstrated promising energy storage performance when used as a superca... Owing to high electrical conductivity and ability to reversibly host a variety of inserted ions,2D metallic molybdenum disulfide(1 T-MoS_(2))has demonstrated promising energy storage performance when used as a supercapacitor electrode.However,its charge storage mechanism is still not fully understood,in particular,how the interlayer spacing of 1 T-MoS_(2)would affect its capacitive performance.In this work,molecular dynamics simulations of 1 T-MoS_(2)with interlayer spacing ranging from 0.615 to 1.615 nm have been performed to investigate the resulting charge storage capacity in ionic liquids.Simulations reveal a camel-like capacitance-potential relation,and MoS_(2)with an interlayer spacing of 1.115 nm has the highest volumetric and gravimetric capacitance of118 F cm^(-3)and 42 F g^(-1),respectively.Although ions in MoS_(2)with an interlayer spacing of 1.115 nm diffuse much faster than with interlayer spacings of 1.365 and 1.615 nm,the MoS_(2)with larger interlayer spacing has a much faster-charging process.Our analyses reveal that the ion number density and its charging speed,as well as ion motion paths,have significant impacts on the charging response.This work helps to understand how the interlayer spacing affects the interlayer ion structures and the capacitive performance of MoS_(2),which is important for revealing the charge storage mechanism and designing MoS_(2)supercapacitor. 展开更多
关键词 charge storage mechanism ionic liquids molecular dynamics simulation molybdenum disulfide SUPERCAPACITORS
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FGHxx系列合金疲劳损伤行为表征、评价与展望 被引量:1
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作者 王习术 刘安 +3 位作者 许巍 张悦 梁准 何玉怀 《固体力学学报》 CAS CSCD 北大核心 2022年第4期369-385,共17页
FGHxx系列合金是我国近年来成功开发的损伤容限型粉末高温合金,由FGH95到FGH99系列组成.通过合金化及优化后续的热处理工艺参数,以较低的成本有效地提高FGHxx高温合金服役温度下的强度、断裂韧性、疲劳裂纹扩展阻力.论文通过对比现有文... FGHxx系列合金是我国近年来成功开发的损伤容限型粉末高温合金,由FGH95到FGH99系列组成.通过合金化及优化后续的热处理工艺参数,以较低的成本有效地提高FGHxx高温合金服役温度下的强度、断裂韧性、疲劳裂纹扩展阻力.论文通过对比现有文献的研究结果,对FGHxx系列合金的微结构特征,SEM原位测试方法,疲劳小裂纹的萌生和扩展行为,疲劳裂纹扩展速率和门槛值、高温疲劳寿命分散性,疲劳寿命预测模型,损伤容限设计准则进行了分析与讨论.在此基础上,重点关注了典型的FGH96合金.利用原位扫描电镜观察技术,观察了其疲劳小裂纹萌生与扩展行为,结果显示:在室温和400℃下,FGH96合金的低周疲劳小裂纹初期萌生和扩展优先发生在晶界上,当小裂纹扩展长度大于2-3倍平均晶粒尺寸后发生混合断裂模式,强化相的化学元素组成和弥散位置会影响晶界强度进而影响断裂机制;分析了断口形貌,发现微结构差异尤其是孔洞和夹杂是FGH96合金寿命分散性强的主要原因;利用DFR(细节疲劳寿命)方法预测了FGH96合金的具有Weibull分布特征的寿命特征值;建立了考虑温度和缺口系数的FGH96合金的3维疲劳损伤容限(3D K-T)图.最后探讨了该领域急需解决的问题和未来可能的研究方向. 展开更多
关键词 粉末冶金 微结构 疲劳断裂特征 疲劳裂纹萌生 寿命预测模型 损伤容限
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