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Fluorinated poly(p-triphenylene isatin)anion exchange membranes based on hydrophilic hydroxyl side chain modulation for fuel cells
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作者 Yiman Gu Yanchao Zhang +4 位作者 Zhanyu Li Yijia Lei Baozeng Sun Xiaoyu Yu Zhe Wang 《Journal of Energy Chemistry》 2025年第1期702-709,共8页
The development of alkaline fuel cells is moving forward at an accelerated pace,and the application of ether-free bonded polymers to anion exchange membranes(AEMs)has been widely investigated.However,the question of ... The development of alkaline fuel cells is moving forward at an accelerated pace,and the application of ether-free bonded polymers to anion exchange membranes(AEMs)has been widely investigated.However,the question of the“trade-off”between AEM ionic conductivity and dimensional stability remains difficult.The strategy of inducing microphase separation to improve the performance of AEM has attracted much attention recently,but the design of optimal molecular structures is still being explored.Here,this work introduced different ratios of 3-bromo-1,1,1-trifluoroacetone(x=40,50,and 60)into the main chain of poly(p-terphenylene isatin).Because fluorinated groups have excellent hydrophobicity,hydrophilic hydroxyl-containing side chains are introduced to jointly adjust the formation of phase separation structure.The results show that PTI-PTF_(50)-NOH AEM with the appropriate fluorinated group ratio has the best ionic conductivity and alkali stability under the combined effect of both.It has an ionic conductivity of 133.83 mS cm^(-1)at 80°C.In addition,the OH-conductivity remains at 89%of the initial value at 80°C and 3 M KOH for 1056 h of immersion.The cell polarization curve based on PTI-PTF_(50)-NOH shows a power density of 734.76 mW cm^(-2)at a current density of 1807.7 mA cm^(-2). 展开更多
关键词 Anion exchange membranes poly(p-terphenylene isatin) Hydrophilic-hydrophobic phase separation Fluorinated group
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Flexible and Robust Functionalized Boron Nitride/Poly(p‑Phenylene Benzobisoxazole)Nanocomposite Paper with High Thermal Conductivity and Outstanding Electrical Insulation 被引量:1
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作者 Lin Tang Kunpeng Ruan +3 位作者 Xi Liu Yusheng Tang Yali Zhang Junwei Gu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第2期423-437,共15页
With the rapid development of 5G information technology,thermal conductivity/dissipation problems of highly integrated electronic devices and electrical equipment are becoming prominent.In this work,“high-temperature... With the rapid development of 5G information technology,thermal conductivity/dissipation problems of highly integrated electronic devices and electrical equipment are becoming prominent.In this work,“high-temperature solid-phase&diazonium salt decomposition”method is carried out to prepare benzidine-functionalized boron nitride(m-BN).Subsequently,m-BN/poly(pphenylene benzobisoxazole)nanofiber(PNF)nanocomposite paper with nacremimetic layered structures is prepared via sol–gel film transformation approach.The obtained m-BN/PNF nanocomposite paper with 50 wt%m-BN presents excellent thermal conductivity,incredible electrical insulation,outstanding mechanical properties and thermal stability,due to the construction of extensive hydrogen bonds andπ–πinteractions between m-BN and PNF,and stable nacre-mimetic layered structures.Itsλ∥andλ_(⊥)are 9.68 and 0.84 W m^(-1)K^(-1),and the volume resistivity and breakdown strength are as high as 2.3×10^(15)Ωcm and 324.2 kV mm^(-1),respectively.Besides,it also presents extremely high tensile strength of 193.6 MPa and thermal decomposition temperature of 640°C,showing a broad application prospect in high-end thermal management fields such as electronic devices and electrical equipment. 展开更多
关键词 poly(p-phenylene-2 6-benzobisoxazole)nanofiber Boron nitride Thermal conductivity Electrical insulation
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Stable Cycling of All-Solid-State Lithium Batteries Enabled by Cyano-Molecular Diamond Improved Polymer Electrolytes 被引量:1
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作者 Yang Dai Mengbing Zhuang +5 位作者 Yi-Xiao Deng Yuan Liao Jian Gu Tinglu Song Hao Yan Jin-Cheng Zheng 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第10期561-575,共15页
The interfacial instability of the poly(ethylene oxide)(PEO)-based electrolytes impedes the long-term cycling and further application of all-solid-state lithium metal batter-ies.In this work,we have shown an effective... The interfacial instability of the poly(ethylene oxide)(PEO)-based electrolytes impedes the long-term cycling and further application of all-solid-state lithium metal batter-ies.In this work,we have shown an effective additive 1-adaman-tanecarbonitrile,which con-tributes to the excellent per-formance of the poly(ethylene oxide)-based electrolytes.Owing to the strong interaction of the 1-Adamantanecarboni-trile to the polymer matrix and anions,the coordination of the Li^(+)-EO is weakened,and the binding effect of anions is strengthened,thereby improving the Li^(+)conductivity and the electrochemical stability.The diamond building block on the surface of the lithium anode can sup-press the growth of lithium dendrites.Importantly,the 1-Adamantanecarbonitrile also regulates the formation of LiF in the solid electrolyte interface and cathode electrolyte interface,which contributes to the interfacial stability(especially at high voltages)and protects the electrodes,enabling all-solid-state batteries to cycle at high voltages for long periods of time.Therefore,the Li/Li symmetric cell undergoes long-term lithium plating/stripping for more than 2000 h.1-Adamantanecarbonitrile-poly(ethylene oxide)-based LFP/Li and 4.3 V Ni_(0.8)Mn_(0.1)Co_(0.1)O_(2)/Li all-solid-state batteries achieved stable cycles for 1000 times,with capacity retention rates reaching 85%and 80%,respectively. 展开更多
关键词 1-Adamantanecarbonitrile(ADCN) poly(ethylene oxide) All-solid-state batteries Interfacial stability High voltage
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Dual-salt poly(tetrahydrofuran) electrolyte enables quasi-solid-state lithium metal batteries to operate at -30 ℃
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作者 Zhiyong Li Zhuo Li +1 位作者 Rui Yu Xin Guo 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第9期456-463,共8页
The stable operation of solid-state lithium metal batteries at low temperatures is plagued by severe restrictions from inferior electrolyte-electrode interface compatibility and increased energy barrier for Li^(+)migr... The stable operation of solid-state lithium metal batteries at low temperatures is plagued by severe restrictions from inferior electrolyte-electrode interface compatibility and increased energy barrier for Li^(+)migration.Herein,we prepare a dual-salt poly(tetrahydrofuran)-based electrolyte consisting of lithium hexafluorophosphate and lithium difluoro(oxalato)borate(LiDFOB).The Li-salt anions(DFOB−)not only accelerate the ring-opening polymerization of tetrahydrofuran,but also promote the formation of highly ion-conductive and sustainable interphases on Li metal anodes without sacrificing the Li^(+)conductivity of electrolytes,which is favorable for Li^(+)transport kinetics at low temperatures.Applications of this polymer electrolyte in Li||LiFePO_(4)cells show 82.3%capacity retention over 1000 cycles at 30℃and endow stable discharge capacity at−30℃.Remarkably,the Li||LiFePO4 cells retain 52%of their room-temperature capacity at−20℃and 0.1 C.This rational design of dual-salt polymer-based electrolytes may provide a new perspective for the stable operation of quasi-solid-state batteries at low temperatures. 展开更多
关键词 poly(tetrahydrofuran) Dual-salt electrolyte Solidel ectrolyte interphase Low-temperature operation Quasi-solid-state battery
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Efficient and selective upcycling of waste polylactic acid into acetate using nickel selenide
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作者 Bing Lan Yinfang Chen +4 位作者 Nantian Xiao Na Liu Chao Juan Chuan Xia Fan Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期575-584,I0012,共11页
The conversion of waste polylactic acid(PLA)plastics into high-value-added chemicals through electrochemical methods is a promising and sustainable approach.However,developing efficient and highly selective catalysts ... The conversion of waste polylactic acid(PLA)plastics into high-value-added chemicals through electrochemical methods is a promising and sustainable approach.However,developing efficient and highly selective catalysts for lactic acid oxidation reaction(LAOR)and understanding the reaction process are challenging.Here,we report the electrooxidation of waste PLA to acetate at a high current density of 100 mA cm-2 with high Faraday efficiency(~95%)and excellent stability(>100 h)over a nickel selenide nanosheet catalyst.In addition,a total Faraday efficiency of up to 190%was achieved for carboxylic acids,including acetic acid and formic acid,by coupling with the cathodic CO_(2) reduction reaction.In situ experimental results and theoretical simulations revealed that the catalytic activity center of LAOR was dynamically formed NiOOH species,and the surface-adsorbed SeO_(x) species accelerated the formation of Ni~(3+)species,thus promoting catalytic activity.The mechanism of lactic acid electrooxidation was further elucidated.Lactic acid was dehydrogenated to produce pyruvate first and then formed CH_3CO due to preferential C-C bond cleavage,resulting in the presence of acetate.This work demonstrated a sustainable method for recycling waste PLA and CO_(2) into high-value-added products. 展开更多
关键词 Waste plastic upcycling poly(lactic acid) Lactic acid electro-oxidation Acetic acid
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TOPCon太阳电池背面叠层poly工艺的优化及其对电性能的影响
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作者 凡金星 刘绍洋 高纪凡 《太阳能》 2024年第4期73-79,共7页
通过增加TOPCon太阳电池poly层中的磷掺杂浓度可以增强poly层与硅基底之间的钝化效果并提高poly层与金属电极间的接触能力,但过高的掺杂浓度会导致磷原子扩散到硅基底,破坏氧化层与硅基底之间的界面钝化效果。为了解决这一问题,提出在p... 通过增加TOPCon太阳电池poly层中的磷掺杂浓度可以增强poly层与硅基底之间的钝化效果并提高poly层与金属电极间的接触能力,但过高的掺杂浓度会导致磷原子扩散到硅基底,破坏氧化层与硅基底之间的界面钝化效果。为了解决这一问题,提出在poly层中间增加一层薄的氧化层作为阻挡层(即叠层poly工艺,下文简称为“叠层工艺”)的方案,将原本单一的poly-Si磷掺杂进行双层分布,底层poly-Si轻掺杂,表层poly-Si重掺杂;对常规工艺和叠层工艺制备TOPCon的太阳电池进行对比试验后,进一步优化叠层工艺,调整中间氧化层厚度,并研究不同中间氧化层厚度的叠层工艺对TOPCon太阳电池电性能的影响。实验结果表明:1)叠层工艺可以提高TOPCon太阳电池的电性能;2)当中间氧化层厚度提升至1.5 nm时,太阳电池的光电转换效率达到最高值(25.66%)。但中间氧化层的厚度是一个需要精确控制的工艺参数,需找到最佳的厚度平衡点,以提高太阳电池性能。 展开更多
关键词 TOPCon太阳电池 poly 磷掺杂浓度 钝化效果
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Anion competition for Li^(+)solvated coordination environments in poly(1,3 dioxolane)electrolyte to enable high-voltage lithium metal solid-state batteries
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作者 Qiujun Wang Yanqiang Ma +6 位作者 Xiaomeng Jia Di Zhang Zhaojin Li Huilan Sun Qujiang Sun Bo Wang Li-Zhen Fan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第9期633-641,共9页
Gel-based polymer electrolytes are limited by the polarity of the residual solvent,which restricts the coupling-breaking behaviour during Li^(+)conduction,resulting in the Li^(+)transport kinetics being greatly affect... Gel-based polymer electrolytes are limited by the polarity of the residual solvent,which restricts the coupling-breaking behaviour during Li^(+)conduction,resulting in the Li^(+)transport kinetics being greatly affected.Here,we designed anion competitive gel polymer electrolyte(ACPE)by introducing lithium difluoro(oxalato)borate(LiDFOB)anion into the 1,3-dioxolane(DOL)in situ polymerisation system.ACPE enhances the ionic dipole interaction between Li^(+)and the solvent molecules and synergizes with Li^(+)across the solvation site of the polymer ethylene oxide(EO)unit,combination that greatly improves the Li^(+)transport efficiency.As a result,ACPE exhibits 1.12 mS cm^(−1)ionic conductivity and 0.75 Li^(+)transfer number at room temperature.Additionally,this intra-polymer solvation sheath allows preferential desolvation of DFOB−,which contributes to the formation of kinetically stable anion-derived interphase and effectively mitigates side reactions.Our results demonstrate that the assembled Li||NCM622 solid-state battery exhibits lifespan of over 300 cycles with average Coulombic efficiency of 98.8%and capacity retention of 80.3%.This study introduces a novel approach for ion migration and interface design,paving the way for high-safety and high-energy-density batteries. 展开更多
关键词 Li-metal batteries poly(1 3-dioxolane) In situ polymerization Solid-state polymer electrolytes Anion competition
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Synergistic coupling among Mg_(2)B_(2)O_(5),polycarbonate and N,Ndimethylformamide enhances the electrochemical performance of PVDF-HFP-based solid electrolyte
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作者 Yutong Jing Qiang Lv +8 位作者 Yujia Chen Bo Wang Bochen Wu Cheng Li Shengbo Yang Zhipeng He Dianlong Wang Huakun Liu Shixue Dou 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第7期158-168,共11页
Polymer solid electrolytes(SPEs)based on the[solvate-Li+]complex structure have promising prospects in lithium metal batteries(LMBs)due to their unique ion transport mechanism.However,the solvation structure may compr... Polymer solid electrolytes(SPEs)based on the[solvate-Li+]complex structure have promising prospects in lithium metal batteries(LMBs)due to their unique ion transport mechanism.However,the solvation structure may compromise the mechanical performance and safety,hindering practical application of SPEs.In this work,a composite solid electrolyte(CSE)is designed through the organic-inorganic syner-gistic interaction among N,N-dimethylformamide(DMF),polycarbonate(PC),and Mg_(2)B_(2)O_(5) in poly(vinylidene fluoride-co-hexafluoropropylene)(PVDF-HFP).Flame-retardant Mg_(2)B_(2)O_(5) nanowires provide non-flammability to the prepared CSEs,and the addition of PC improves the dispersion of Mg_(2)B_(2)O_(5) nanowires.Simultaneously,the organic-inorganic synergistic action of PC plasticizer and Mg_(2)B_(2)O_(5) nanowires pro-motes the dissociation degree of LiTFSI and reduces the crystallinity of PVDF-HFP,enabling rapid Li ion transport.Additionally,Raman spectroscopy and DFT calculations confirm the coordination between Mg atoms in Mg_(2)B_(2)O_(5) and N atoms in DMF,which exhibits Lewis base-like behavior attacking adjacent C-F and C-H bonds in PVDF-HFP while inducing dehydrofluorination of PVDF-HFP.Based on the syner-gistic coupling of Mg_(2)B_(2)O_(5),PC,and DMF in the PVDF-HFP matrix,the prepared CSE exhibits superior ion conductivity(9.78×10^(-4) s cm^(-1)).The assembled Li symmetric cells cycle stably for 3900 h at a current density of 0.1 mA cm^(-2) without short circuit.The LFP||Li cells assembled with PDL-Mg_(2)B_(2)O_(5)/PC CSEs show excellent rate capability and cycling performance,with a capacity retention of 83.3%after 1000 cycles at 0.5 C.This work provides a novel approach for the practical application of organic-inorganic Synergistic CSEs in LMBs. 展开更多
关键词 Composite solid electrolytes Safe Li metal batteries Synergistic coupling effect poly(vinylidene fluoride-co-hexafluoropro pylene)
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A comparative study for petroleum removal capacities of the bacterial consortia entrapped in sodium alginate,sodium alginate/poly(vinyl alcohol),and bushnell haas agar
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作者 Sezen Bilen Ozyurek 《Petroleum Science》 SCIE EI CAS CSCD 2024年第1期705-715,共11页
The purpose of this study was to identify and compare the degradation efficiencies of free and entrapped bacterial consortia(Staphylococcus capitis CP053957.1 and Achromobacter marplatensis MT078618.1)to different pol... The purpose of this study was to identify and compare the degradation efficiencies of free and entrapped bacterial consortia(Staphylococcus capitis CP053957.1 and Achromobacter marplatensis MT078618.1)to different polymers such as Sodium Alginate(SA),Sodium Alginate/Poly(Vinyl Alcohol)(SA/PVA),and Bushnell Haas Agar(BHA).In addition to SA and SA/PVA,which are cost-effective,non-toxic and have different functional groups,BHA,which is frequently encountered in laboratory-scale studies but has not been used as an entrapment material until now.Based on these,the polymers with different surface morphologies and chemical compositions were analyzed by SEM and FT-IR.While the petroleum removal efficiency was higher with the entrapped bacterial consortia than with the free one,BHA-entrapped bacterial consortium enhanced the petroleum removal more than SA and SA/PVA.Accordingly,the degradation rate of bacterial consortia entrapped with BHA was 2.039 day^(-1),SA/PVA was 1.560,SA was 0.993,the half-life period of BHA-entrapped bacterial consortia is quite low(t_(1/2)=0.339)compared with SA(t_(1/2)=0.444)and SA/PVA(t_(1/2)=0.697).The effects of the four main factors such as:amount of BHA(0.5,1,1.5,2,2.5,3 g),disc size(4,5,6,7,8 mm),inoculum concentration(1,2.5,5,7.5,10 mL),and incubation period on petroleum removal were also investigated.The maximum petroleum removal(94.5%)was obtained at≥2.5 mL of bacterial consortium entrapped in 2 g BHA with a 7 mm disc size at 168 h and the results were also confirmed by statistical analysis.Although a decrease was observed during the reuse of bacterial consortium entrapped in BHA,the petroleum removal was still above 50%at 10th cycle.Based on GC-MS analysis,the removal capacity of BHA-entrapped consortium was over 90%for short-chain n-alkanes and 80%for medium-chain n-alkanes.Overall,the obtained data are expected to provide a potential guideline in cleaning up the large-scale oil pollution in the future.Since there has been no similar study investigating petroleum removal with the bacterial consortia entrapped with BHA,this novel entrapment material can potentially be used in the treatment of petroleum pollution in advanced remediation studies. 展开更多
关键词 Entrapment of bacterial consortia PETROLEUM RemovalBushnell Haas agar Sodium alginate Sodium alginate/poly(vinyl alcohol)
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High-performance and robust high-temperature polymer electrolyte membranes with moderate microphase separation by implementation of terphenyl-based polymers
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作者 Jinyuan Li Congrong Yang +3 位作者 Haojiang Lin Jicai Huang Suli Wang Gongquan Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第5期572-578,共7页
Acid loss and plasticization of phosphoric acid(PA)-doped high-temperature polymer electrolyte membranes(HT-PEMs)are critical limitations to their practical application in fuel cells.To overcome these barriers,poly(te... Acid loss and plasticization of phosphoric acid(PA)-doped high-temperature polymer electrolyte membranes(HT-PEMs)are critical limitations to their practical application in fuel cells.To overcome these barriers,poly(terphenyl piperidinium)s constructed from the m-and p-isomers of terphenyl were synthesized to regulate the microstructure of the membrane.Highly rigid p-terphenyl units prompt the formation of moderate PA aggregates,where the ion-pair interaction between piperidinium and biphosphate is reinforced,leading to a reduction in the plasticizing effect.As a result,there are trade-offs between the proton conductivity,mechanical strength,and PA retention of the membranes with varied m/p-isomer ratios.The designed PA-doped PTP-20m membrane exhibits superior ionic conductivity,good mechanical strength,and excellent PA retention over a wide range of temperature(80–160°C)as well as satisfactory resistance to harsh accelerated aging tests.As a result,the membrane presents a desirable combination of performance(1.462 W cm^(-2) under the H_(2)/O_(2)condition,which is 1.5 times higher than that of PBI-based membrane)and durability(300 h at 160°C and 0.2 A cm^(-2))in the fuel cell.The results of this study provide new insights that will guide molecular design from the perspective of microstructure to improve the performance and robustness of HT-PEMs. 展开更多
关键词 Fuel cell High-temperature polymer electrolyte membranes Microphase separation poly(terphenyl piperidinium)s Phosphoric acid
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基于Poly MAX的膜盘型柔性传动轴模态仿真与试验分析
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作者 董庆 高鼎明 范依澄 《西安航空学院学报》 2024年第3期23-30,共8页
飞机发动机通常采用飞机附件机匣和发动机附件机匣分置结构,使用柔性传动轴连接。柔性传动轴模态设计是设计的重要环节,通过仿真分析获取柔性传动轴模态并进行试验迭代模型,可加速其设计过程。采用有限元法对膜盘型柔性传动轴进行仿真建... 飞机发动机通常采用飞机附件机匣和发动机附件机匣分置结构,使用柔性传动轴连接。柔性传动轴模态设计是设计的重要环节,通过仿真分析获取柔性传动轴模态并进行试验迭代模型,可加速其设计过程。采用有限元法对膜盘型柔性传动轴进行仿真建模,计算固支条件下的固有频率与振型。采用移动力锤法对其进行模态实验,基于模态参数识别理论,利用Poly Max方法对柔性传动轴的传递函数进行模态参数估计与识别,以避免传统模态识别中高阻尼结构产生的测量误差。结果表明,试验识别的柔性传动轴一阶和二阶固有频率与振型和仿真计算结果相差约2%。考虑到膜盘的加工公差,仿真结果与试验结果吻合良好,所得结果可为后续膜盘型柔性传动轴的设计提供借鉴和参考。 展开更多
关键词 柔性传动轴 膜盘 模态试验 poly Max方法
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Novel sandwich structured glass fiber Cloth/Poly(ethylene oxide)-MXene composite electrolyte
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作者 Yu-Qin Mao Guang-He Dong +3 位作者 Wei-Bin Zhu Yuan-Qing Li Pei Huang Shao-Yun Fu 《Nano Materials Science》 EI CAS CSCD 2024年第1期60-67,共8页
Recently,poly(ethylene oxide)(PEO)-based solid polymer electrolytes have been attracting great attention,and efforts are currently underway to develop PEO-based composite electrolytes for next generation high performa... Recently,poly(ethylene oxide)(PEO)-based solid polymer electrolytes have been attracting great attention,and efforts are currently underway to develop PEO-based composite electrolytes for next generation high performance all-solid-state lithium metal batteries.In this article,a novel sandwich structured solid-state PEO composite electrolyte is developed for high performance all-solid-state lithium metal batteries.The PEO-based composite electrolyte is fabricated by hot-pressing PEO,LiTFSI and Ti_(3)C_(2)T_(x) MXene nanosheets into glass fiber cloth(GFC).The as-prepared GFC@PEO-MXene electrolyte shows high mechanical properties,good electrochemical stability,and high lithium-ion migration number,which indicates an obvious synergistic effect from the microscale GFC and the nanoscale MXene.Such as,the GFC@PEO-1 wt%MXene electrolyte shows a high tensile strength of 43.43 MPa and an impressive Young's modulus of 496 MPa,which are increased by 1205%and 6048%over those of PEO.Meanwhile,the ionic conductivity of GFC@PEO-1 wt%MXene at 60℃ reaches 5.01×10^(-2) S m^(-1),which is increased by around 200%compared with that of GFC@PEO electrolyte.In addition,the Li/Li symmetric battery based on GFC@PEO-1 wt%MXene electrolyte shows an excellent cycling stability over 800 h(0.3 mA cm^(-2),0.3 mAh cm^(-2)),which is obviously longer than that based on PEO and GFC@PEO electrolytes due to the better compatibility of GFC@PEO-1 wt%MXene electrolyte with Li anode.Furthermore,the solid-state Li/LiFePO_(4) battery with GFC@PEO-1 wt%MXene as electrolyte demonstrates a high capacity of 110.2–166.1 mAh g^(-1) in a wide temperature range of 25–60C,and an excellent capacity retention rate.The developed sandwich structured GFC@PEO-1 wt%MXene electrolyte with the excellent overall performance is promising for next generation high performance all-solid-state lithium metal batteries. 展开更多
关键词 Solid polymer electrolyte Ti_(3)C_(2)T_(x)MXene poly(ethylene oxide) Glass fiber cloth All-solid-state Li metal Battery
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ε-聚赖氨酸对苹果灰霉病菌的抑菌机制
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作者 窦勇 董静 +3 位作者 陈成 胡佩红 刘芯池 孔令伟 《食品工业科技》 北大核心 2025年第3期196-203,共8页
为研究ε-聚赖氨酸(ε-PL)对苹果灰霉病菌Botrytis cinerea的抑制效果及其机制。用不同浓度的ε-PL处理B.cinerea,研究其对B.cinerea的菌落直径、孢子萌发、菌丝生长及对苹果灰霉病防治效果的影响,同时考察B.cinerea细胞通透性、抗氧化... 为研究ε-聚赖氨酸(ε-PL)对苹果灰霉病菌Botrytis cinerea的抑制效果及其机制。用不同浓度的ε-PL处理B.cinerea,研究其对B.cinerea的菌落直径、孢子萌发、菌丝生长及对苹果灰霉病防治效果的影响,同时考察B.cinerea细胞通透性、抗氧化酶活性、细胞可溶性蛋白与核酸的泄漏、丙二醛含量及活性氧的变化规律。结果表明:ε-PL对B.cinerea的最小抑菌浓度为400 mg/L,该浓度的ε-PL能有效控制苹果灰霉病;100 mg/L以上的ε-PL能显著抑制B.cinerea孢子萌发和菌丝生长(P<0.05),破坏孢子膜结构,增大孢子细胞的通透性,造成可溶性蛋白与核酸发生泄漏,使孢子形态呈现萎缩干瘪、甚至溶解现象;此外,100 mg/L以上的ε-PL能显著降低B.cinerea的超氧化物歧化酶、多酚氧化酶和过氧化氢酶的活性,升高丙二醛含量(P<0.05)。综上,ε-PL能通过破坏B.cinerea孢子细胞膜结构、增大细胞通透性、抑制抗氧化酶活性、促进活性氧的积累,进而增大孢子膜的脂质过氧化程度,损伤孢子结构,最终抑制苹果灰霉病菌的生长。此项研究可为ε-PL在苹果采后病害防治中的应用打下基础,具有较高的应用价值。 展开更多
关键词 Ε-聚赖氨酸 抑菌机制 苹果灰霉病 细胞泄漏 抗氧化酶
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三氧化钨/聚(3,4-乙烯二氧噻吩)核壳纳米线阵列薄膜的制备与电致变色性能
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作者 陈传胜 李熙瑞 张青 《化学研究与应用》 北大核心 2025年第2期401-409,共9页
本文采用溶剂热和电沉积相结合的方法制备了三氧化钨/聚(3,4-乙烯二氧噻吩)(WO_(3)/PEDOT)核壳纳米线阵列薄膜,对实验样品进行表面结构表征、电化学性能测试和电致变色性能测试。测试显示WO_(3)/PEDOT纳米线阵列直径约为15-55 nm。透射... 本文采用溶剂热和电沉积相结合的方法制备了三氧化钨/聚(3,4-乙烯二氧噻吩)(WO_(3)/PEDOT)核壳纳米线阵列薄膜,对实验样品进行表面结构表征、电化学性能测试和电致变色性能测试。测试显示WO_(3)/PEDOT纳米线阵列直径约为15-55 nm。透射电子显微镜表征结果证实WO_(3)/PEDOT纳米线阵列薄膜为核壳结构,X射线衍射花样和拉曼光谱证明核壳结构为六方相的WO_(3)核与非晶PEDOT薄壳层所组成。循环伏安曲线显示WO_(3)/PEDOT纳米线的电化学反应为扩散控制过程。WO_(3)/PEDOT纳米线在波长为633 nm处获得了对比度为78.2%、着色时间为4.6 s、褪色时间为2.0 s以及着色效率为78.6 cm^(2)/C的优异特性,由于核与壳层结构之间的协同作用,使得复合结构的变色响应速度和循环稳定性获得了显著的提升,在智能显示、节能窗等领域具有潜在的应用前景。 展开更多
关键词 三氧化钨 聚(3 4-乙烯二氧噻吩) 核壳纳米结构 溶剂热 电致变色
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不同拓扑结构聚(丁二酸丁二醇-对苯二甲酸丁二醇)酯的性能
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作者 殷杰 韩翎 +3 位作者 王珅 贾雪飞 张龙贵 祝桂香 《石油化工》 北大核心 2025年第1期29-34,共6页
通过溶液流延的方式制备了不同拓扑结构带支链的聚(丁二酸丁二醇-对苯二甲酸丁二醇)酯(PBST-Kx)薄膜,利用^(1)H NMR、GPC、TG、DSC、XRD、流变测试等方法对PBST-Kx的结构及性能进行了研究。实验结果表明,支化剂的引入不会影响PBST-Kx分... 通过溶液流延的方式制备了不同拓扑结构带支链的聚(丁二酸丁二醇-对苯二甲酸丁二醇)酯(PBST-Kx)薄膜,利用^(1)H NMR、GPC、TG、DSC、XRD、流变测试等方法对PBST-Kx的结构及性能进行了研究。实验结果表明,支化剂的引入不会影响PBST-Kx分子链的化学组成、热稳定性和结晶性能,但随支化剂官能度的增加,PBST-Kx的支链数增加,Mn呈减小的趋势,分子量分布变宽。支化结构的引入增加了PBST-Kx的熔体黏度,使其具有更高的弹性和更长的松弛时间,且随着支化度的增加而增大。随支化度的增加,PBST-Kx薄膜的拉伸强度和断裂伸长率降低。 展开更多
关键词 拓扑结构 聚(丁二酸丁二醇-对苯二甲酸丁二醇)酯 支化剂 熔体强度
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数字教育时代的公民数字素养培养
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作者 胡剑光 梁传杰 李媛 《高教发展与评估》 北大核心 2025年第2期119-128,I0007,共11页
信息技术迅猛发展使得公民数字素养成为衡量社会整体信息化水平的重要指标。当前,公民数字素养培养面临教育强国建设新需要、数字经济发展新需求和数字社会新挑战等新形势,呈现出认知能力从单一化的理性认知转向多元化的理性认知、情感... 信息技术迅猛发展使得公民数字素养成为衡量社会整体信息化水平的重要指标。当前,公民数字素养培养面临教育强国建设新需要、数字经济发展新需求和数字社会新挑战等新形势,呈现出认知能力从单一化的理性认知转向多元化的理性认知、情感认知与社会认知兼顾,专业技能从单维度的数字技能转向多维度的信息处理、信息安全与信息批判能力,价值取向从单一经济人转向全面社会人的演化发展逻辑。基于公民数字素养培养实践上存在目标定位不清、内容框架分类不准、方式路径不明确、政策缺乏协同等问题,需要在树立公民数字素养培养新理念、分类把握未成年人和成年人培养新路径等方面综合施策。 展开更多
关键词 公民数字素养 教育信息化 数字经济 数字技能 数字政策 公民素养
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聚酯降膜增黏反应过程模拟
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作者 陈世昌 曹峻华 陈文兴 《纺织学报》 北大核心 2025年第1期16-24,共9页
为促进对降膜熔融缩聚制备高分子量聚对苯二甲酸乙二醇酯(PET)增黏反应过程的理论认识,指导降膜反应器的设计与缩聚工艺优化,建立了降膜反应器串联五釜的连续聚合过程数学模型,以与工业生产数据匹配的五釜流程模拟结果为降膜反应釜入口... 为促进对降膜熔融缩聚制备高分子量聚对苯二甲酸乙二醇酯(PET)增黏反应过程的理论认识,指导降膜反应器的设计与缩聚工艺优化,建立了降膜反应器串联五釜的连续聚合过程数学模型,以与工业生产数据匹配的五釜流程模拟结果为降膜反应釜入口物料参数,考察了PET分子量与端基量等品质指标随降膜增黏反应进程的变化,讨论了降膜反应器内温度和压力对聚合产物分子量与端基量的影响规律。结果表明:随着增黏反应的进行,可顺利得到特性黏度为1.0 dL/g以上、端羧基量为16 mmol/kg的产品;所建立的降膜反应器模型能够对增黏效果进行灵敏分析,高温低压有利于提升增黏反应效率,但过低的压力导致高黏熔体变得难处理和转移,且会增加设备成本和提高工艺精确控制的难度,温度过高则会显著增加副产物的生成;对降膜反应器选择压力为0.1 kPa左右、温度区间为285~290℃进行工艺参数调优,采用优化后的连续生产工艺流程最终反应器出口PET的分子量在39000 g/mol左右;模拟结果与工业生产值吻合,可运用于分析降膜增黏反应技术应用实践。 展开更多
关键词 聚酯 液相增黏 反应器 缩聚 过程模拟 缩聚工艺
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基于P3HT的有机薄膜晶体管环境稳定性提升
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作者 李强 丁莉峰 +4 位作者 李磊磊 李禹文 李鑫旺 马佳楠 桑胜波 《半导体技术》 CAS 北大核心 2025年第1期23-31,共9页
电子设备领域对高稳定性有机薄膜晶体管(OTFT)的需求日益增长。为了解决有机材料在环境因素作用下影响晶体管稳定性的问题,制备了一种新型OTFT,并同时采用两种方法来提高其环境稳定性:对晶体管进行表面钝化处理,利用钝化层的高化学稳定... 电子设备领域对高稳定性有机薄膜晶体管(OTFT)的需求日益增长。为了解决有机材料在环境因素作用下影响晶体管稳定性的问题,制备了一种新型OTFT,并同时采用两种方法来提高其环境稳定性:对晶体管进行表面钝化处理,利用钝化层的高化学稳定性隔绝空气中的氧分子和水分子;利用聚(3-己基噻)(P3HT)共混聚甲基丙烯酸甲酯(PMMA)有源层获得高抗氧化性和抗水解能力。测试结果表明,经过60d后器件载流子迁移率仅降低到原始值的87.91%,电流开关比降低到原来的81.90%,说明本文提出的环境稳定性提升方法优于其他方法。 展开更多
关键词 聚(3-己基噻吩)(P3HT) 有机薄膜晶体管(OTFT) 稳定性提升 表面钝化 有源层共混
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聚多巴胺银纳米粒增强型水凝胶的制备及其抑菌性能
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作者 薛海燕 周妍 +4 位作者 贺宝元 马军 魏怡 连严慧 侯帅鹏 《陕西科技大学学报》 北大核心 2025年第2期92-99,109,共9页
为进一步缩短醛氨型水凝胶的成胶时间,提高其抑菌性能,本研究以葡聚糖基水凝胶(OQ)为基体,引入经过不同修饰的聚多巴胺纳米颗粒,采用“一锅法”制备了纳米粒增强型水凝胶.通过扫描电子显微镜(SEM)、纳米粒度及Zeta电位仪和流变仪对绿色... 为进一步缩短醛氨型水凝胶的成胶时间,提高其抑菌性能,本研究以葡聚糖基水凝胶(OQ)为基体,引入经过不同修饰的聚多巴胺纳米颗粒,采用“一锅法”制备了纳米粒增强型水凝胶.通过扫描电子显微镜(SEM)、纳米粒度及Zeta电位仪和流变仪对绿色合成的纳米颗粒及纳米粒增强型水凝胶进行了表征.此外,还评估了该水凝胶的凝胶时间、溶胀率、流变性能和抗菌功效.结果表明,所制备的水凝胶具有立体的三维网络结构和均一的孔径分布,当引入0.4%的载姜黄素聚多巴胺银纳米粒时,(OCPA2)凝胶时间最短(1±1 min),且在流变测定中储能模量较高,为4 272.092 Pa,约为OQ(1 038.57 Pa)水凝胶的3倍,弹性性能较好.SEM图像显示,OCPA2孔隙率较高,显示出更加均匀的形态.抑菌研究表明,水凝胶与细菌共培养后,金黄色葡萄球菌的存活率为0.002 07%,大肠杆菌的存活率为0.001 24%,有望作为一种抑制伤口感染,防止伤口干结的创面修复敷料. 展开更多
关键词 聚多巴胺银纳米粒 醛氨型水凝胶 成胶时间 力学性能 抗菌性能
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RDX/POLY(BAMO-AMMO)基发射药的热分解与燃烧性能 被引量:3
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作者 张阔 刘毅 +4 位作者 卿辉 罗亚军 张翠娥 彭兴洲 张江波 《火炸药学报》 EI CAS CSCD 北大核心 2014年第1期82-85,90,共5页
采用差示扫描量热法(DSC)、热重法(TG-DTG)和密闭爆发器试验研究了RDX/POLY(BAMO-AMMO)基发射药在常压下的热分解与燃烧性能。结果表明,POLY(BAMO-AMMO)热分解反应过程可分为具有不同热效应的前后两个阶段:第一阶段为热效应突出的叠氮... 采用差示扫描量热法(DSC)、热重法(TG-DTG)和密闭爆发器试验研究了RDX/POLY(BAMO-AMMO)基发射药在常压下的热分解与燃烧性能。结果表明,POLY(BAMO-AMMO)热分解反应过程可分为具有不同热效应的前后两个阶段:第一阶段为热效应突出的叠氮基团分解;第二阶段为热效应微弱的残余碳分子骨架热分解。RDX/POLY(BAMO-AMMO)基发射药的热分解过程表现为明显的RDX热分解属性,具有吸热和放热两个主要过程。RDX/POLY(BAMO-AMMO)基发射药的燃速压力指数大于1,且随RDX含量的增加而减小,燃速由RDX决定,并随其含量的增加而提高。 展开更多
关键词 物理化学 发射药 RDX poly(BAMO-AMMO) 密闭爆发器 DSC TG-DTG
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