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Leakage Proof,Flame-Retardant,and Electromagnetic Shield Wood Morphology Genetic Composite Phase Change Materials for Solar Thermal Energy Harvesting 被引量:2
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作者 Yuhui Chen Yang Meng +7 位作者 Jiangyu Zhang Yuhui Xie Hua Guo Mukun He Xuetao Shi Yi Mei Xinxin Sheng Delong Xie 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第10期99-120,共22页
Phase change materials(PCMs)offer a promising solution to address the challenges posed by intermittency and fluctuations in solar thermal utilization.However,for organic solid-liquid PCMs,issues such as leakage,low th... Phase change materials(PCMs)offer a promising solution to address the challenges posed by intermittency and fluctuations in solar thermal utilization.However,for organic solid-liquid PCMs,issues such as leakage,low thermal conductivity,lack of efficient solar-thermal media,and flamma-bility have constrained their broad applications.Herein,we present an innova-tive class of versatile composite phase change materials(CPCMs)developed through a facile and environmentally friendly synthesis approach,leveraging the inherent anisotropy and unidirectional porosity of wood aerogel(nanowood)to support polyethylene glycol(PEG).The wood modification process involves the incorporation of phytic acid(PA)and MXene hybrid structure through an evaporation-induced assembly method,which could impart non-leaking PEG filling while concurrently facilitating thermal conduction,light absorption,and flame-retardant.Consequently,the as-prepared wood-based CPCMs showcase enhanced thermal conductivity(0.82 W m^(-1)K^(-1),about 4.6 times than PEG)as well as high latent heat of 135.5 kJ kg^(-1)(91.5%encapsula-tion)with thermal durability and stability throughout at least 200 heating and cooling cycles,featuring dramatic solar-thermal conversion efficiency up to 98.58%.In addition,with the synergistic effect of phytic acid and MXene,the flame-retardant performance of the CPCMs has been significantly enhanced,showing a self-extinguishing behavior.Moreover,the excellent electromagnetic shielding of 44.45 dB was endowed to the CPCMs,relieving contemporary health hazards associated with electromagnetic waves.Overall,we capitalize on the exquisite wood cell structure with unidirectional transport inherent in the development of multifunctional CPCMs,showcasing the operational principle through a proof-of-concept prototype system. 展开更多
关键词 Wood PCMs MXene Solar thermal storage and conversion flame-retardant Electromagnetic shielding
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Flame-retardant ammonium polyphosphate/MXene decorated carbon foam materials as polysulfide traps for fire-safe and stable lithium-sulfur batteries
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作者 Yang Li Yong-Cheng Zhu +5 位作者 Sowjanya Vallem Man Li Seunghyun Song Tao Chen Long-Cheng Tang Joonho Bae 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期313-323,I0008,共12页
Lithium-sulfur(Li-S)batteries are one of the most promising modern-day energy supply systems because of their high theoretical energy density and low cost.However,the development of high-energy density Li-S batteries ... Lithium-sulfur(Li-S)batteries are one of the most promising modern-day energy supply systems because of their high theoretical energy density and low cost.However,the development of high-energy density Li-S batteries with high loading of flammable sulfur faces the challenges of electrochemical performance degradation owing to the shuttle effect and safety issues related to fire or explosion accidents.In this work,we report a three-dimensional(3D)conductive nitrogen-doped carbon foam supported electrostatic self-assembled MXene-ammonium polyphosphate(NCF-MXene-APP)layer as a heat-resistant,thermally-insulated,flame-retardant,and freestanding host for Li-S batteries with a facile and costeffective synthesis method.Consequently,through the use of NCF-MXene-APP hosts that strongly anchor polysulfides,the Li-S batteries demonstrate outstanding electrochemical properties,including a high initial discharge capacity of 1191.6 mA h g^(-1),excellent rate capacity of 755.0 mA h g^(-1)at 1 C,and long-term cycling stability with an extremely low-capacity decay rate of 0.12%per cycle at 2 C.More importantly,these batteries can continue to operate reliably under high temperature or flame attack conditions.Thus,this study provides valuable insights into the design of safe high-performance Li-S batteries. 展开更多
关键词 flame-retardant MXene Ammonium polyphosphate Safety Lithium-sulfur battery
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3D flame-retardant skeleton reinforced polymer electrolyte for solid-state dendrite-free lithium metal batteries 被引量:3
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作者 Xiaojiao Zheng Jiawei Wu +2 位作者 Jing Chen Xiaodong Wang Zhenglong Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第8期174-181,I0006,共9页
For solid polymer electrolytes(SPEs),improving their mechanical and electrochemical properties is the key to obtaining batteries with higher safety and higher energy density.Herein,a novel synergistic strategy propose... For solid polymer electrolytes(SPEs),improving their mechanical and electrochemical properties is the key to obtaining batteries with higher safety and higher energy density.Herein,a novel synergistic strategy proposed is preparing a 3D flame-retardant skeleton(3DPA)and adding nano-multifunctional fillers(Li-ILs@ZIF-8).In addition to providing mechanical support for the polyethylene oxide(PEO)matrix,3DPA also has further contributed to the system’s flame retardancy and further improved the safety.Simultaneously,the electrochemical performance is fully guaranteed by rigid Li-ILs@ZIF-8,which provides fast migration channels forLi^(+),reduces the crystallinity of PEO and effectively inhibits lithium dendrites.The limiting oxygen index of the optimal sample(PL3Z/PA)is as high as 20.5%,and the ionic conductivity reaches 2.89×10^(-4) and 0.91×10^(-3) S cm^(-1) at 25 and 55°C,respectively.The assembled Li|PL3Z/PA|Li battery can be cycled stably for more than 1000 h at a current density of 0.1 m A cm^(-2) without short circuit being pierced by lithium dendrites.The specific capacity of the LFP|PL3Z/PA|Li battery was 160.5 m Ah g^(-1) under a current density of 0.5 C,and the capacity retention rate was 90.0%after 300 cycles. 展开更多
关键词 Solid polymer electrolytes Polyethylene oxide 3D flame-retardant skeleton Multifunctional fillers Synergistic effect
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Flame-retardant oligomeric electrolyte additive for self-extinguishing and highly-stable lithium-ion batteries:Beyond small molecules
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作者 Yi-Zhou Quan Qing-Song Liu +4 位作者 Mei-Chen Liu Guo-Rui Zhu Gang Wu Xiu-Li Wang Yu-Zhong Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第9期374-384,共11页
Preparing both safe and high-performance lithium-ion batteries(LIBs) based on commonly used commercial electrolytes is highly desirable,yet challenging.To overcome the poor compatibility of conventional small-molecula... Preparing both safe and high-performance lithium-ion batteries(LIBs) based on commonly used commercial electrolytes is highly desirable,yet challenging.To overcome the poor compatibility of conventional small-molecular flame-retardants as electrolyte additives for safe LIBs with graphite anodes,in this study,we propose and design a novel low-cost flame-retardant oligomer that achieves an accurate and complete reconciliation of fire safety and electrochemical performance in LIBs.Owing to the integration of phosphonate units and polyethylene glycol(PEG) chains,this oligomer,which is a phosphonatecontaining PEG-based oligomer(PPO),not only endows commercial electrolytes with excellent flame retardancy but also helps stabilize the electrodes and Li-ion migration.Specifically,adding 15 wt% of PPO can reduce 70% of the self-extinguishing time and 54% of total heat release for commercial electrolytes.Moreover,LiFePO_(4)/lithium and graphite/lithium cells as well as LiFePO_(4)/graphite pouch full cells exhibit good long-term cycling stability. 展开更多
关键词 flame-retardant oligomer Safety Compatibility Graphite anodes Lithium-ion batteries
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A new flame-retardant polymer electrolyte with enhanced Li-ion conductivity for safe lithium-sulfur batteries 被引量:1
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作者 Hongping Li Yixi Kuai +3 位作者 Jun Yang Shin-ichi Hirano Yanna Nuli Jiulin Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第2期616-622,共7页
Flame-retardant polymer electrolytes(FRSPEs)are attractive due to their potential for fundamentally settling the safety issues of liquid electrolytes.However,the current FRSPEs have introduced large quantity of flame-... Flame-retardant polymer electrolytes(FRSPEs)are attractive due to their potential for fundamentally settling the safety issues of liquid electrolytes.However,the current FRSPEs have introduced large quantity of flame-retardant composition which cannot conduct lithium ions,thus decreasing the Li-ion conductivity.Here,we synthesize a novel liquid monomer 2-((bis((2-oxo-1,3-dioxolan-4-yl)methoxy)phosphoryl)oxy)ethyl acrylate(BDPA)for preparing FRSPE by in-situ polymerization,in which PBDPA polymer can not only conduct lithium ions,but also prevent burning.The prepared FRSPE demonstrated outstanding flame-retardant property,favorable lithium-ion conductivity of 5.65×10^(-4) S cm^(-1) at ambient temperature,and a wide electrochemical window up to 4.5 V.Moreover,the Li/in-situ FRSPE/S@pPAN cell exhibited favorable electrochemical performances.We believe that this work provides an effective strategy for establishing high-performance fireproof quasi-solid-state battery system. 展开更多
关键词 Polymer electrolyte flame-retardance Lithium-ion conductivity Lithium-sulfur battery
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Enhanced High-Temperature Cycling Stability of Garnet-Based All Solid-State Lithium Battery Using a Multi-Functional Catholyte Buffer Layer 被引量:1
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作者 Leqi Zhao Yijun Zhong +2 位作者 Chencheng Cao Tony Tang Zongping Shao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第7期59-73,共15页
The pursuit of safer and high-performance lithium-ion batteries(LIBs)has triggered extensive research activities on solid-state batteries,while challenges related to the unstable electrode-electrolyte interface hinder... The pursuit of safer and high-performance lithium-ion batteries(LIBs)has triggered extensive research activities on solid-state batteries,while challenges related to the unstable electrode-electrolyte interface hinder their practical implementation.Polymer has been used extensively to improve the cathode-electrolyte interface in garnet-based all-solid-state LIBs(ASSLBs),while it introduces new concerns about thermal stability.In this study,we propose the incorporation of a multi-functional flame-retardant triphenyl phos-phate additive into poly(ethylene oxide),acting as a thin buffer layer between LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)(NCM811)cathode and garnet electro-lyte.Through electrochemical stability tests,cycling performance evaluations,interfacial thermal stability analysis and flammability tests,improved thermal stability(capacity retention of 98.5%after 100 cycles at 60℃,and 89.6%after 50 cycles at 80℃)and safety characteristics(safe and stable cycling up to 100℃)are demonstrated.Based on various materials characterizations,the mechanism for the improved thermal stability of the interface is proposed.The results highlight the potential of multi-functional flame-retardant additives to address the challenges associated with the electrode-electrolyte interface in ASSLBs at high temperature.Efficient thermal modification in ASSLBs operating at elevated temperatures is also essential for enabling large-scale energy storage with safety being the primary concern. 展开更多
关键词 Solid-state battery Cathode electrolyte interlayer flame-retardant additive Cycling stability Interfacial stability
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气相色谱-质谱联用法测定塑料产品中的溴系阻燃剂 被引量:3
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作者 田玉平 吴建军 +1 位作者 王东辉 查月珍 《分析测试学报》 CAS CSCD 北大核心 2007年第z1期342-343,共2页
Brominated flame-retardant,such as deca-BDE,TBBP-A,TBBP-A-bis is one kind of the additives of plastic product for flame retardation.European has published a direction to restrict the used amount of brominated flame-re... Brominated flame-retardant,such as deca-BDE,TBBP-A,TBBP-A-bis is one kind of the additives of plastic product for flame retardation.European has published a direction to restrict the used amount of brominated flame-retardant,because of their toxicity.The present work reports a GC-MS method for the determination of the brominated retardants.The method meets the requirements of the direction 2002/95/EC,and has been applied to the real sample analysis. 展开更多
关键词 Brominqted flame-retardant Plastic products GC-MS
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玻璃纤维增强HIPS制备阻燃建筑模板材料研究 被引量:4
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作者 陈尔凡 白宇 +2 位作者 马驰 吴波 裴群 《化工新型材料》 CAS CSCD 北大核心 2016年第4期196-198,共3页
制备了阻燃型短玻纤增强高抗冲聚苯乙烯(HIPS)复合材料,研究了经KH-570(γ-甲基丙烯酰氧丙基三甲氧基硅烷)偶联剂处理的玻纤用量对复合材料拉伸性能、冲击性能、弯曲性能、热性能及加工性能的影响,以及溴系阻燃剂十溴二苯乙烷(DBDPE)和... 制备了阻燃型短玻纤增强高抗冲聚苯乙烯(HIPS)复合材料,研究了经KH-570(γ-甲基丙烯酰氧丙基三甲氧基硅烷)偶联剂处理的玻纤用量对复合材料拉伸性能、冲击性能、弯曲性能、热性能及加工性能的影响,以及溴系阻燃剂十溴二苯乙烷(DBDPE)和三氧化二锑的协同阻燃作用。最后用扫描电镜观察复合材料的微观形态。结果表明,红外光谱表征证明了KH-570有效地与玻纤表面结合;玻纤可显著地提高HIPS力学性能,玻纤用量30%时,综合性能最优,并使HIPS维卡软化点提高到107℃以上;DBDPE并用三氧化二锑协同阻燃,可使HIPS的氧指数由17.8%提高到24.8%;KH-570偶联剂能有效地改善其界面,其破坏为混合破坏。 展开更多
关键词 高抗冲聚苯乙烯 玻璃纤维 复合材料 建筑模板 力学性能 阻燃
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锆-铝-钛鞣黄牛鞋面革的制备及性能表征(Ⅲ)——化学分析与阻燃性能表征 被引量:5
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作者 王康建 黄秦 +3 位作者 但卫华 何青 李峰 但年华 《中国皮革》 CAS 北大核心 2014年第13期22-26,共5页
以铬鞣革为参照物,对所制得的锆-铝-钛鞣黄牛鞋面革进行了其组分如皮革的水分及其挥发物含量、二氯甲烷萃取物含量、硫酸盐总灰分、硫酸盐不溶物灰分、水溶物含量、含氮量、"皮质含量、pH、硫酸盐含量、氯化物含量等进行了检测和... 以铬鞣革为参照物,对所制得的锆-铝-钛鞣黄牛鞋面革进行了其组分如皮革的水分及其挥发物含量、二氯甲烷萃取物含量、硫酸盐总灰分、硫酸盐不溶物灰分、水溶物含量、含氮量、"皮质含量、pH、硫酸盐含量、氯化物含量等进行了检测和分析此外还通过研究发现:锆-铝-钛鞣革的阻燃性能较好,即使不添加任何阻燃剂,其阻燃效果也比较好,适用于阻燃性皮革的制作。 展开更多
关键词 锆-铝-钛配合鞣剂 黄牛鞋面革 化学分析 阻燃性能
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Ni Flower/MXene-Melamine Foam Derived 3D Magnetic/Conductive Networks for Ultra-Efficient Microwave Absorption and Infrared Stealth 被引量:26
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作者 Haoran Cheng Yamin Pan +5 位作者 Xin Wang Chuntai Liu Changyu Shen Dirk W.Schubert Zhanhu Guo Xianhu Liu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第4期142-157,共16页
The development of multifunctional and efficient electromagnetic wave absorbing materials is a challenging research hotspot.Here,the magnetized Ni flower/MXene hybrids are successfully assembled on the surface of mela... The development of multifunctional and efficient electromagnetic wave absorbing materials is a challenging research hotspot.Here,the magnetized Ni flower/MXene hybrids are successfully assembled on the surface of melamine foam(MF)through electrostatic self-assembly and dip-coating adsorption process,realizing the integration of microwave absorption,infrared stealth,and flame retardant.Remarkably,the Ni/MXene-MF achieves a minimum reflection loss(RLmin)of−62.7 dB with a corresponding effective absorption bandwidth(EAB)of 6.24 GHz at 2 mm and an EAB of 6.88 GHz at 1.8 mm.Strong electromagnetic wave absorption is attributed to the three-dimensional magnetic/conductive networks,which provided excellent impedance matching,dielectric loss,magnetic loss,interface polarization,and multiple attenuations.In addition,the Ni/MXene-MF endows low density,excellent heat insulation,infrared stealth,and flame-retardant functions.This work provided a new development strategy for the design of multifunctional and efficient electromagnetic wave absorbing materials. 展开更多
关键词 Ni-MXene/Melamine foam Microwave absorption Heat insulation Infrared stealth flame-retardant
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Three-in-one fire-retardant poly(phosphate)-based fast ion-conductor for all-solid-state lithium batteries 被引量:3
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作者 Jiaying Xie Sibo Qiao +5 位作者 Yuyang Wang Jiefei Sui Lixia Bao He Zhou Tianshi Li Jiliang Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第5期324-334,I0008,共12页
The development of flame retardant or nonflammable electrolytes is the key to improve the safety of lithium batteries,owing to inflammable organic solvents and polymer matrix in common liquid and polymer electrolytes ... The development of flame retardant or nonflammable electrolytes is the key to improve the safety of lithium batteries,owing to inflammable organic solvents and polymer matrix in common liquid and polymer electrolytes regarded as the main cause of battery fire.Herein,a series of solid-state polyphosphate oligomers(SPPO)as a three-in-one electrolyte that integrated the roles of lithium salt,dissociation matrix,and flame retardant were synthesized.The well-designed SPPO electrolytes showed an optimal ionic conductivity of 5.5×10^(-4)S cm-1at 30℃,an acceptable electrochemical window up to 4.0 V vs.Li/Li+,and lithium ion transference number of 0.547.Stable Li-ion stripping/plating behavior for 500 h of charge-discharge cycles without internal short-circuit in a Li|SPPO|Li cell was confirmed,together with outstanding interface compatibility between the SPPO electrolyte and lithium foil.The optimal Li|SPPO|LiFePO4cell presented good reversible discharge capacity of 149.4 mA h g-1at 0.1 C and Coulombic efficiency of 96.4%after 120 cycles.More importantly,the prepared SPPO cannot be ignited by the lighter fire and show a limited-oxygen-index value as high as 35.5%,indicating splendid nonflammable nature.The SPPO could be a promising candidate as a three-in-one solid-state electrolyte for the improved safety of rechargeable lithium batteries. 展开更多
关键词 Three-in-one Poly(phosphate) Organic fast ion-conductor Solid-state polymer electrolyte flame-retardant Secondary lithium batteries
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