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The potassium storage performance of carbon nanosheets derived from heavy oils
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作者 ZHAO Qing-shan LIU Qin-lian +6 位作者 LI Yi-wen JI Tian YAO Yu-yue ZHAO Yi-kun DENG Wei HU Han WU Ming-bo 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第5期1003-1014,共12页
As by-products of petroleum refining,heavy oils are characterized by a high carbon content,low cost and great variability,making them competitive precursors for the anodes of potassium ion batteries(PIBs).However,the ... As by-products of petroleum refining,heavy oils are characterized by a high carbon content,low cost and great variability,making them competitive precursors for the anodes of potassium ion batteries(PIBs).However,the relationship between heavy oil composition and potassium storage performance remains unclear.Using heavy oils containing distinct chemical groups as the carbon source,namely fluid catalytic cracking slurry(FCCS),petroleum asphalt(PA)and deoiled asphalt(DOA),three carbon nanosheets(CNS)were prepared through a molten salt method,and used as the anodes for PIBs.The composition of the heavy oil determines the lamellar thicknesses,sp3-C/sp2-C ratio and defect concentration,thereby affecting the potassium storage performance.The high content of aromatic hydrocarbons and moderate amount of heavy component moieties in FCCS produce carbon nanosheets(CNS-FCCS)that have a smaller layer thickness,larger interlayer spacing(0.372 nm),and increased number of folds than in CNS derived from the other three precursors.These features give it faster charge/ion transfer,more potassium storage sites and better reaction kinetics.CNS-FCCS has a remarkable K^(+)storage capacity(248.7 mAh g^(-1) after 100 cycles at 0.1 A g^(-1)),long cycle lifespan(190.8 mAh g^(-1) after 800 cycles at 1.0 A g^(-1))and excellent rate capability,ranking it among the best materials for this application.This work sheds light on the influence of heavy oil composition on carbon structure and electrochemical performance,and provides guidance for the design and development of advanced heavy oil-derived carbon electrodes for PIBs. 展开更多
关键词 Heavy oils Carbon nanosheets Molten salt method Four-component composition Potassium-ion batteries
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B/Sm共掺杂羟基磷灰石的制备及发光性能 被引量:1
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作者 乔荫颇 李明阳 +5 位作者 王答成 沈鹏 周沁 李新宇 陈璞 姬甜 《陕西科技大学学报》 CAS 2018年第4期115-119,共5页
采用化学沉淀法,制备得到具有发光性能的B/Sm共掺杂羟基磷灰石粉体.通过X射线衍射(XRD)、傅里叶红外(FT-IR)、荧光光谱(PL)等研究了不同的钐掺杂量和不同硼掺杂量对羟基磷灰石晶体结构及荧光性能的影响.XRD分析结果表明,掺杂B、Sm后未... 采用化学沉淀法,制备得到具有发光性能的B/Sm共掺杂羟基磷灰石粉体.通过X射线衍射(XRD)、傅里叶红外(FT-IR)、荧光光谱(PL)等研究了不同的钐掺杂量和不同硼掺杂量对羟基磷灰石晶体结构及荧光性能的影响.XRD分析结果表明,掺杂B、Sm后未产生其他杂相.荧光分析表明,在B掺量一定时,随Sm掺杂量的增多,荧光强度呈先升高后降低的变化趋势,在Sm浓度约为0.5mol%时荧光强度达到最高;固定Sm掺杂量,共掺杂样品发光强度随B掺杂量出现相似变化.在B的掺量达到5mol%以后,B/Sm共掺杂样品的荧光强度开始降低.此外,共掺杂样品荧光寿命也受到掺杂影响,呈现相应的变化. 展开更多
关键词 羟基磷灰石 硼、钐共掺杂 发光性能 荧光寿命
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