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一种新型Ni-Fe基高温合金的微观组织演化与蠕变行为
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作者 徐堃 操光辉 +3 位作者 严靖博 张鹏 刘鹏 袁勇 《上海金属》 CAS 2024年第4期40-46,52,共8页
采用扫描电子显微镜、透射电子显微镜、电子背散射衍射技术,研究了GH4070P合金在725℃/180 MPa和725℃/150 MPa条件下的蠕变行为,分析了合金在不同条件下蠕变后的微观组织和晶体学特征,揭示了合金蠕变过程中析出相的演变规律及断裂机制... 采用扫描电子显微镜、透射电子显微镜、电子背散射衍射技术,研究了GH4070P合金在725℃/180 MPa和725℃/150 MPa条件下的蠕变行为,分析了合金在不同条件下蠕变后的微观组织和晶体学特征,揭示了合金蠕变过程中析出相的演变规律及断裂机制。结果表明:在725℃/180 MPa和725℃/150 MPa蠕变条件下,位错通过Orowan机制绕过γ′析出相;725℃/150 MPa蠕变合金由于γ′相的粗化产生位错塞积。蠕变期间,合金晶界应力集中较为明显,产生了蠕变孔洞和微裂纹,最终导致沿晶断裂。 展开更多
关键词 ni-fe 基合金 γ′相 蠕变 微观组织
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二元金属Ni-Fe磷化物制备和电催化性能研究
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作者 李银成 林介本 +1 位作者 苏宝玺 申文 《云南民族大学学报(自然科学版)》 CAS 2024年第3期320-324,共5页
使用硫酸镍、硝酸亚铁、次亚磷酸钠和柠檬酸钠在泡沫镍为载体的基底上,采用电沉积方法制备出Ni-Fe磷化物电催化剂,通过SEM测试表征催化剂的结构及形貌,使用EDS能谱仪对样品表面的元素分布,并通过电化学测试催化剂的析氧和析氢及催化活... 使用硫酸镍、硝酸亚铁、次亚磷酸钠和柠檬酸钠在泡沫镍为载体的基底上,采用电沉积方法制备出Ni-Fe磷化物电催化剂,通过SEM测试表征催化剂的结构及形貌,使用EDS能谱仪对样品表面的元素分布,并通过电化学测试催化剂的析氧和析氢及催化活性等参数.结果表明:在10 mA/cm^(2)电流密度下,Ni-Fe磷化物过电位为232 mV,在-10 mA/cm^(2)电流密度下过电位为162 mV;Ni-Fe磷化物的催化活性面积(Cdl)为30.7 mF/cm^(2),相较于Ni磷化物和Fe磷化物的过电位及活性催化面积均有所提升. 展开更多
关键词 催化剂 过电位 电化学活性 ni-fe磷化物
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一种新型Ni-Fe基高温合金的冷变形及再结晶退火工艺研究
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作者 浦益龙 李亚峰 王植栋 《中国设备工程》 2024年第18期70-74,共5页
本文研究了一种新型Ni-Fe基高温合金在不同冷变形量下冷轧和退火处理对其组织演变和性能的影响。结果表明,在相同退火条件下,冷变形量为10%时,合金未发生显著的静态再结晶,仅表现出回复过程;冷变形量为30%和50%时,均发生了静态再结晶,... 本文研究了一种新型Ni-Fe基高温合金在不同冷变形量下冷轧和退火处理对其组织演变和性能的影响。结果表明,在相同退火条件下,冷变形量为10%时,合金未发生显著的静态再结晶,仅表现出回复过程;冷变形量为30%和50%时,均发生了静态再结晶,生成了新的等轴晶粒,说明再结晶的临界变形量大于10%。合金的晶粒尺寸随退火温度和保温时间的增加而增大,但退火温度的影响显著大于保温时间的影响。不同变形量下再结晶退火后的合金硬度与平均晶粒尺寸均符合Hall-Petch关系式。通过显微组织和力学性能分析,确定冷变形量30%为最佳变形量,匹配的最佳热处理制度为1050℃、保温30min。研究结果为优化Ni-Fe基高温合金的加工工艺提供了理论依据和参考。 展开更多
关键词 ni-fe基高温合金 冷变形 再结晶退火 硬度 HALL-PETCH关系
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沉积电压对Ni-Fe-Sn镀层组织结构及析氢性能的影响
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作者 袁绍武 吴艺辉 +3 位作者 王宇鑫 张原 孙泽生 何震 《江苏科技大学学报(自然科学版)》 CAS 北大核心 2023年第4期20-24,共5页
氢能是一种清洁高效的可再生能源,通过电解水技术低成本、高效率地制备氢气,是当前国际科研的热点之一.发展高性能、低成本、高活性的析氢催化剂是电解水技术目前面临的主要挑战.文中采用恒电位电沉积法在泡沫镍表面合成了菜花状结构的N... 氢能是一种清洁高效的可再生能源,通过电解水技术低成本、高效率地制备氢气,是当前国际科研的热点之一.发展高性能、低成本、高活性的析氢催化剂是电解水技术目前面临的主要挑战.文中采用恒电位电沉积法在泡沫镍表面合成了菜花状结构的Ni-Fe-Sn镀层.研究了不同沉积电位对镀层的物相、形貌及析氢性能的影响规律.结果表明:随着沉积电位的减少,Ni-Fe-Sn镀层表面逐渐生成了菜花状结构,镀层中Sn含量逐渐增加,而Fe含量则逐渐减少.当沉积电位为-0.9 V时,Ni-Fe-Sn镀层获得最佳的析氢性能,其在10 mA·cm^(-2)电流密度时的析氢过电位仅为62 mV.同时,该镀层表现出良好的电化学稳定性.Ni-Fe-Sn镀层优良的析氢性能归因于菜花状结构提供了较大的电化学活性面积,能够提供更多的反应活性位点;同时适量的Sn和Fe含量减小电荷转移电阻,加快电荷转移速率,增强了镀层的析氢性能. 展开更多
关键词 ni-fe-Sn镀层 析氢反应 电沉积 碱性电解液
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Ni-Fe共掺LiMn_(2)O_(4)正极材料的合成及电化学性能研究
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作者 王紫林 刘红雷 +4 位作者 郭昱娇 吉颖 向明武 刘晓芳 郭俊明 《现代化工》 CAS CSCD 北大核心 2023年第8期126-132,共7页
采用固相燃烧法快速合成了LiNi_(0.08)Fe_(x)Mn_(1.92-x)O_(4)(x≤0.08)正极材料,并探究了正极材料样品的结构、形貌、电化学性能及动力学性能。结果表明,Ni-Fe共掺没有改变LiMn_(2)O_(4)的立方尖晶石结构,促进了其晶体发育和{111}、{1... 采用固相燃烧法快速合成了LiNi_(0.08)Fe_(x)Mn_(1.92-x)O_(4)(x≤0.08)正极材料,并探究了正极材料样品的结构、形貌、电化学性能及动力学性能。结果表明,Ni-Fe共掺没有改变LiMn_(2)O_(4)的立方尖晶石结构,促进了其晶体发育和{111}、{110}、{100}晶面的择优生长,部分颗粒形成了以高暴露{111}晶面为主和少量{110}、{100}晶面的截断八面体形貌。LiNi_(0.08)Fe_(0.05)Mn_(1.87)O_(4)样品在较低倍率(≤5 C)时,其倍率性能和长循环寿命得到显著提高,在25℃下,1 C的首次放电比容量为106.1 mAh/g, 1 000次循环后容量保持率为82.0%;5 C的首次放电比容量为100.1 mAh/g, 2 000次循环后容量保持率为72.8%。LiNi_(0.08)Fe_(0.05)Mn_(1.87)O_(4)材料的锂离子扩散系数和表观活化能分别为1.75×10^(-15)cm^(2)/s和26.52 kJ/mol,表明其有较好的Li+迁移动力学性能。 展开更多
关键词 LiMn_(2)O_(4) ni-fe共掺杂 截断八面体 固相燃烧法 JAHN-TELLER畸变 Mn溶解 正极材料
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Significantly Improved High-Temperature Energy Storage Performance of BOPP Films by Coating Nanoscale Inorganic Layer 被引量:2
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作者 Tiandong Zhang Hainan Yu +5 位作者 Young Hoon Jung Changhai Zhang Yu Feng Qingguo Chen Keon Jae Lee Qingguo Chi 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期30-38,共9页
Biaxially oriented polypropylene(BOPP)is one of the most commonly used commercial capacitor films,but its upper operating temperature is below 105℃due to the sharply increased electrical conduction loss at high tempe... Biaxially oriented polypropylene(BOPP)is one of the most commonly used commercial capacitor films,but its upper operating temperature is below 105℃due to the sharply increased electrical conduction loss at high temperature.In this study,growing an inorganic nanoscale coating layer onto the BOPP film's surface is proposed to suppress electrical conduction loss at high temperature,as well as increase its upper operating temperature.Four kinds of inorganic coating layers that have different energy band structure and dielectric property are grown onto the both surface of BOPP films,respectively.The effect of inorganic coating layer on the high-temperature energy storage performance has been systematically investigated.The favorable coating layer materials and appropriate thickness enable the BOPP films to have a significant improvement in high-temperature energy storage performance.Specifically,when the aluminum nitride(AIN)acts as a coating layer,the AIN-BOPP-AIN sandwich-structured films possess a discharged energy density of 1.5 J cm^(-3)with an efficiency of 90%at 125℃,accompanying an outstandingly cyclic property.Both the discharged energy density and operation temperature are significantly enhanced,indicating that this efficient and facile method provides an important reference to improve the high-temperature energy storage performance of polymer-based dielectric films. 展开更多
关键词 coating layer energy storage interfacial barrier polymer films
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Deep eutectic solvent-induced synthesis of Ni-Fe catalyst with excellent mass activity and stability for water oxidation
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作者 Ruichang Xue Mengwei Guo +1 位作者 Zhuoming Wei Qibo Zhang 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第3期852-863,共12页
Ni-Fe bimetallic electrodes are currently recognized as a kind of benchmark transition metal-based oxygen evolution reaction(OER)electrocatalysts.Facile synthesis of Ni-Fe bimetallic electrode materials with excellent... Ni-Fe bimetallic electrodes are currently recognized as a kind of benchmark transition metal-based oxygen evolution reaction(OER)electrocatalysts.Facile synthesis of Ni-Fe bimetallic electrode materials with excellent catalytic activity and satisfied stability by a simple and low-cost route is still a big challenge.Herein,well-defined Ni-Fe nanoparticles in-situ developed on a planar Fe substrate(Ni-Fe NPs/Fe)is fabricated via a facile one-step galvanic replacement reaction(GRR)carried out in an Ethaline-based deep eutectic solvent(DES).The prepared Ni-Fe NPs/Fe exhibits outstanding OER performance,which needs an overpotential of only 319 mV to drive a current density of 10 mA cm^(-2),with a small Tafel slope of 41.2 mV dec^(-1) in 1.0 mol L^(-1) KOH,high mass activity(up to 319.78 A g^(-1) at an overpotential of 300 mV)and robust durability for 200 h.Impressively,the Ni-Fe bimetallic oxygen-evolution electrode obtained from the Ethaline-based DES is catalytically more active and durable than that of its counterpart derived from the 4.2 mol L^(-1) NaCl aqueous solution.The reason for this is mainly related to the different morphology and surface state of the Ni-Fe catalysts obtained from these different solvent environments,particularly for the differences in phy-chemical properties,active species formed and deposition kinetics,offered by the Ethaline-based DES. 展开更多
关键词 ni-fe catalysts Galvanic replacement reaction Deep eutectic solvent Oxygen evolution reaction
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Flexible, Transparent and Conductive Metal Mesh Films with Ultra‑High FoM for Stretchable Heating and Electromagnetic Interference Shielding 被引量:1
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作者 Zibo Chen Shaodian Yang +9 位作者 Junhua Huang Yifan Gu Weibo Huang Shaoyong Liu Zhiqiang Lin Zhiping Zeng Yougen Hu Zimin Chen Boru Yang Xuchun Gui 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第5期201-213,共13页
Despite the growing demand for transparent conductive films in smart and wearable electronics for electromagnetic interference(EMI)shielding,achieving a flexible EMI shielding film,while maintaining a high transmittan... Despite the growing demand for transparent conductive films in smart and wearable electronics for electromagnetic interference(EMI)shielding,achieving a flexible EMI shielding film,while maintaining a high transmittance remains a significant challenge.Herein,a flexible,transparent,and conductive copper(Cu)metal mesh film for EMI shielding is fabricated by self-forming crackle template method and electroplating technique.The Cu mesh film shows an ultra-low sheet resistance(0.18Ω□^(-1)),high transmittance(85.8%@550 nm),and ultra-high figure of merit(>13,000).It also has satisfactory stretchability and mechanical stability,with a resistance increases of only 1.3%after 1,000 bending cycles.As a stretchable heater(ε>30%),the saturation temperature of the film can reach over 110°C within 60 s at 1.00 V applied voltage.Moreover,the metal mesh film exhibits outstanding average EMI shielding effectiveness of 40.4 dB in the X-band at the thickness of 2.5μm.As a demonstration,it is used as a transparent window for shielding the wireless communication electromagnetic waves.Therefore,the flexible and transparent conductive Cu mesh film proposed in this work provides a promising candidate for the next-generation EMI shielding applications. 展开更多
关键词 Metal mesh Transparent conductive film Stretchable heater Electromagnetic interference shielding
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OptoGPT: A foundation model for inverse design in optical multilayer thin film structures 被引量:1
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作者 Taigao Ma Haozhu Wang L.Jay Guo 《Opto-Electronic Advances》 SCIE EI CAS CSCD 2024年第7期4-16,共13页
Optical multilayer thin film structures have been widely used in numerous photonic applications.However,existing inverse design methods have many drawbacks because they either fail to quickly adapt to different design... Optical multilayer thin film structures have been widely used in numerous photonic applications.However,existing inverse design methods have many drawbacks because they either fail to quickly adapt to different design targets,or are difficult to suit for different types of structures,e.g.,designing for different materials at each layer.These methods also cannot accommodate versatile design situations under different angles and polarizations.In addition,how to benefit practical fabrications and manufacturing has not been extensively considered yet.In this work,we introduce OptoGPT(Opto Generative Pretrained Transformer),a decoder-only transformer,to solve all these drawbacks and issues simultaneously. 展开更多
关键词 multilayer thin film structure inverse design foundation models deep learning structural color
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Numerical and experimental study on the falling film flow characteristics with the effect of co-current gas flow in hydrogen liquefaction process 被引量:1
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作者 Chong-Zheng Sun Yu-Xing Li +2 位作者 Hui Han Xiao-Yi Geng Xiao Lu 《Petroleum Science》 SCIE EI CAS CSCD 2024年第2期1369-1384,共16页
Liquid hydrogen storage and transportation is an effective method for large-scale transportation and utilization of hydrogen energy. Revealing the flow mechanism of cryogenic working fluid is the key to optimize heat ... Liquid hydrogen storage and transportation is an effective method for large-scale transportation and utilization of hydrogen energy. Revealing the flow mechanism of cryogenic working fluid is the key to optimize heat exchanger structure and hydrogen liquefaction process(LH2). The methods of cryogenic visualization experiment, theoretical analysis and numerical simulation are conducted to study the falling film flow characteristics with the effect of co-current gas flow in LH2spiral wound heat exchanger.The results show that the flow rate of mixed refrigerant has a great influence on liquid film spreading process, falling film flow pattern and heat transfer performance. The liquid film of LH2mixed refrigerant with column flow pattern can not uniformly and completely cover the tube wall surface. As liquid flow rate increases, the falling film flow pattern evolves into sheet-column flow and sheet flow, and liquid film completely covers the surface of tube wall. With the increase of shear effect of gas-phase mixed refrigerant in the same direction, the liquid film gradually becomes unstable, and the flow pattern eventually evolves into a mist flow. 展开更多
关键词 Hydrogen liquefaction Spiral wound heat exchanger Flow pattern transition Falling film flow
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Highly Flexible Graphene-Film-Based Rectenna for Wireless Energy Harvesting 被引量:1
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作者 Jingwei Zhang Yuchao Wang +2 位作者 Rongguo Song Zongkui Kou Daping He 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期320-325,共6页
Herein,we report the design,fabrication,and performance of two wireless energy harvesting devices based on highly flexible graphene macroscopic films(FGMFs).We first demonstrate that benefiting from the high conductiv... Herein,we report the design,fabrication,and performance of two wireless energy harvesting devices based on highly flexible graphene macroscopic films(FGMFs).We first demonstrate that benefiting from the high conductivity of up to 1×10^(6)S m^(-1)and good resistive stability of FGMFs even under extensive bending,the FGMFs-based rectifying circuit(GRC)exhibits good flexibility and RF-to-DC efficiency of 53%at 2.1 GHz.Moreover,we further expand the application of FGMFs to a flexible wideband monopole rectenna and a 2.45 GHz wearable rectenna for harvesting wireless energy.The wideband rectenna at various bending conditions produces a maximum conversion efficiency of 52%,46%,and 44%at the 5th Generation(5G)2.1 GHz,Industrial Long-Term Evolution(LTE)2.3 GHz,and Scientific Medical(ISM)2.45 GHz,respectively.A 2.45 GHz GRC is optimized and integrated with an AMC-backed wearable antenna.The proposed 2.45 GHz wearable rectenna shows a maximum conversion efficiency of 55.7%.All the results indicate that the highly flexible graphene-film-based rectennas have great potential as a wireless power supplier for smart Internet of Things(loT)applications. 展开更多
关键词 flexible rectennas highly flexible graphene-based films wireless energy harvesting
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Effects of Thickness and Anisotropic Strain on Polarization Switching Properties of Sub-10nm Epitaxial Hf_(0.5)Zr_(0.5)O_(2)Thin Films
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作者 Kuan Liu Kai Liu +5 位作者 Xingchang Zhang Jie Fang Feng Jin Wenbin Wu Chao Ma Lingfei Wang 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第11期221-232,共12页
Doped HfO_(2)-based ferroelectric(FE)films are emerging as leading contenders for next-generation FE nonvolatile memories due to their excellent compatibility with complementary metal oxide semiconductor processes and... Doped HfO_(2)-based ferroelectric(FE)films are emerging as leading contenders for next-generation FE nonvolatile memories due to their excellent compatibility with complementary metal oxide semiconductor processes and robust ferroelectricity at nanoscale dimensions.Despite the considerable attention paid to the FE properties of HfO_(2)-based films in recent years,enhancing their polarization switching speed remains a critical research challenge.We demonstrate the strong ferroelectricity of sub-10nm Hf_(0.5)Zr_(0.5)O_(2)(HZO)thin films and show that the polarization switching speed of these thin films can be significantly affected by HZO thickness and anisotropically strained La_(0.67)Sr_(0.33)MO_(3)-buffered layer.Our observations indicate that the HZO thin film thickness and anisotropically strained La_(0.67)Sr_(0.33)MO_(3)layer influence the nucleation of reverse domains by altering the phase composition of the HZO thin film,thereby reducing the polarization switching time.Although the increase in HZO thickness and anisotropic compressive strain hinder the formation of the FE phase,they can enable faster switching.Our findings suggest that FE HZO ultrathin films with polar orthorhombic structures have broad application prospects in microelectronic devices.These insights into novel methods for increasing polarization switching speed are poised to advance the development of high-performance FE devices. 展开更多
关键词 FERROELECTRIC ANISOTROPIC film
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Centimeter-Scale Above-Room-Temperature Ferromagnetic Fe_(3)GaTe_(2)Thin Films by Molecular Beam Epitaxy
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作者 Taikun Wang Yongkang Xu +12 位作者 Yu Liu Xingze Dai Pengfei Yan Jin Wang Shuanghai Wang Yafeng Deng Kun He Caitao Li Ziang Wang Wenqin Zou Rongji Wen Yufeng Hao Liang He 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第10期119-122,共4页
Fe_(3)GaTe_(2),as a layered ferromagnetic material,has a Curie temperature(T_(c))higher than room temperature,making it the key material in next-generation spintronic devices.To be used in practical devices,large-size... Fe_(3)GaTe_(2),as a layered ferromagnetic material,has a Curie temperature(T_(c))higher than room temperature,making it the key material in next-generation spintronic devices.To be used in practical devices,large-sized high-quality Fe_(3)GaTe_(2)thin films need to be prepared.Here,the centimeter-scale thin film samples with high crystal quality and above-room-temperature ferromagnetism with strong perpendicular magnetic anisotropy were prepared by molecular beam epitaxy technology.Furthermore,the Tc of the samples raises as the film thickness increases,and reaches 367K when the film thickness is 60 nm.This study provides material foundations for the new generation of van der Waals spintronic devices and paves the way for the commercial application of Fe_(3)GaTe_(2). 展开更多
关键词 EPITAXY film magnetic
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网状Ni-Fe合金电催化剂的制备及析氧性能研究
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作者 陈小军 陈钰洁 +5 位作者 吴佳芮 薛怡 杨林峰 罗锋 朱未冽 朱晓东 《成都大学学报(自然科学版)》 2023年第2期202-206,共5页
采用电沉积的方法制备出了一种网状结构的Ni-Fe二元合金纳米电催化剂,研究了其表面调控机制和析氧反应性能.通过组分调控发现,Ni_(8)Fe_(2)具有极高的析氧反应活性;对Ni_(8)Fe_(2)的电化学活性进行了研究,当电流密度为10 mA/cm^(2)时,... 采用电沉积的方法制备出了一种网状结构的Ni-Fe二元合金纳米电催化剂,研究了其表面调控机制和析氧反应性能.通过组分调控发现,Ni_(8)Fe_(2)具有极高的析氧反应活性;对Ni_(8)Fe_(2)的电化学活性进行了研究,当电流密度为10 mA/cm^(2)时,析氧反应的过电位为270 mV,塔菲尔斜率为77 mV/dec,电化学活性表面积高达11.13 cm^(2),表明其活性高;在1.52 V(vs.RHE)电压下,经过36000 s长时间运行依然很稳定,其电流密度还保持在12 mA/cm^(2),表明其稳定性好. 展开更多
关键词 析氧反应 电解水 电沉积 电催化剂 ni-fe合金
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Ultrathin Limit on the Anisotropic Superconductivity of Single-Layered Cuprate Films
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作者 冉峰 陈潘 +5 位作者 李丁艺 熊沛雨 樊子鑫 凌浩铭 梁艳 张坚地 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第2期94-101,共8页
Exploring dimensionality effects on cuprates is important for understanding the nature of high-temperature superconductivity.By atomically layer-by-layer growth with oxide molecular beam epitaxy,we demonstrate that La... Exploring dimensionality effects on cuprates is important for understanding the nature of high-temperature superconductivity.By atomically layer-by-layer growth with oxide molecular beam epitaxy,we demonstrate that La_(2−x)Sr_(x)CuO_(4)(x=0.15)thin films remain superconducting down to 2 unit cells of thickness but quickly reach the maximum superconducting transition temperature at and above 4 unit cells.By fitting the critical magnetic field(μ0H_(c2)),we show that the anisotropy of the film’s superconductivity increases with decreasing film thickness,indicating that the superconductivity of the film gradually evolves from weak three-to two-dimensional character.These results are helpful to gain more insight into the nature of high-temperature superconductivity with dimensionality. 展开更多
关键词 dimensionality film evolve
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Effect of drying methods on perovskite films and solar cells
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作者 Ling Liu Chuantian Zuo +3 位作者 Guang-Xing Liang Hua Dong Jingjing Chang Liming Ding 《Journal of Semiconductors》 EI CAS CSCD 2024年第1期1-5,共5页
The high efficiency,solution processibility,and flexibility of perovskite solar cells make them promising candidates for the photovoltaic industry[1−8].The deposition method is one of the most critical factors that af... The high efficiency,solution processibility,and flexibility of perovskite solar cells make them promising candidates for the photovoltaic industry[1−8].The deposition method is one of the most critical factors that affect the performance of perovskite films.Various deposition methods have been developed to make perovskite films,including spin-coating,slotdie coating. 展开更多
关键词 PEROVSKITE filmS CRITICAL
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Mechanical and magnetocaloric adjustable properties of Fe3O4/PET deformed nanoparticle film
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作者 范凤国 段林彤 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第3期589-595,共7页
The flexibility of nanoparticle films is a topic of rapidly growing interest in both scientific and engineering researches due to their numerous potential applications in a broad range of wearable electronics and biom... The flexibility of nanoparticle films is a topic of rapidly growing interest in both scientific and engineering researches due to their numerous potential applications in a broad range of wearable electronics and biomedical devices.This article presents the elucidation of the properties of nanoparticle films.Here,a flexible film is fabricated based on polyethylene terephthalate(PET)and magnetic iron oxide at the nanoscale using layer-by-layer technology.The 2D thin flexible film material can be bent at different angles from 0°to 360°.With an increase in elastic deformation angles,the magnetocaloric effect of the film gradually increases in the alternating magnetic field.The test results from a vibrating sample magnetometer and a low-frequency impedance analyzer demonstrate that the film has a good magnetic response and anisotropy.The magnetocaloric effect and magnetic induction effect are controlled by deformation,providing a new idea for the application of elastic films.It combines the flexibility of the nanoparticle PET substrate and,in the future,it may be used for skin adhesion for administration and magnetic stimulation control. 展开更多
关键词 nanoparticle film deformation magnetic properties flexible substrates
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Preparation of a zeolite-palladium composite membrane for hydrogen separation:Influence of zeolite film on membrane stability
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作者 Hongmei Wu Xinyu Liu Yu Guo 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第8期44-52,共9页
With the development of hydrogen energy,palladium-based membranes have been widely used in hydrogen separation and purification.However,the poor chemical stability of palladium composite membranes limits their commerc... With the development of hydrogen energy,palladium-based membranes have been widely used in hydrogen separation and purification.However,the poor chemical stability of palladium composite membranes limits their commercial applications.In this study,a zeolite-palladium composite membrane with a sandwich-like structure was obtained by using a TS-1 zeolite film grown on the surface of palladium membrane.The membrane microstructure was characterized by SEM and EDX.The effects of the TS-1 film on the hydrogen permeability and stability of palladium composite membrane were investigated in details.Benefited from the protection of the TS-1 zeolite film,the stability of palladium composite membrane was enhanced.The results indicate that the TS-1-Pd composite membrane was stable after eight cycles of the temperature exchange cycles between 773 K and 623 K.Especially,the loss of hydrogen permeance for TS-1-Pd composite membrane was much smaller than that of the pure palladium membrane when the membrane was tested in the presence of C3H6atmosphere.It indicated that the TS-1-Pd composite membrane had better chemical stability in comparison with pure palladium membrane,owing to its sandwich-like structure.This work provides an efficient way for the deposition of zeolite film on palladium membrane to enhance the membrane stability. 展开更多
关键词 Palladium membrane Zeolite film Hydrogen separation STABILITY
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Three-dimensionally oriented organization of hexagonal MIL-96 microplates toward superior film microstructure
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作者 Sixing Chen Xinmiao Jin +3 位作者 Yuyang Wu Taotao Ji Fei Wang Yi Liu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第8期69-73,共5页
Preferential orientation control of metal—organic framework(MOF)films is advantageous for maximizing pore uniformity and minimizing grain-boundary defects.Nonetheless,the preparation of MOF films with both in-plane a... Preferential orientation control of metal—organic framework(MOF)films is advantageous for maximizing pore uniformity and minimizing grain-boundary defects.Nonetheless,the preparation of MOF films with both in-plane and out-of-plane orientations remains a grand challenge.In this study,we reported the preparation of three-dimensionally oriented MIL-96 layers through combining morphology control of MIL-96 seeds with addition of polyvinylpyrrolidone surfactants and arachidonic acids.The three-dimensionally oriented MIL-96 film was readily obtained through in-plane epitaxial growth.It is anticipated that the aforementioned protocol can be effective for obtaining diverse MOF films with a three-dimensionally oriented organization. 展开更多
关键词 Metaleorganic framework film Orientation Epitaxial growth Morphological control
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Using Electrodeposition of Carboxylated Chitosan for Green Preparation of Copper Nanoclusters and Nanocomposite Films
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作者 ZHANG Xiaoli LI Tingxue +4 位作者 WANG Qinghua YANG Yan ZHANG Chenyu LIU Yaning WANG Yifeng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第6期1348-1357,共10页
On the basis of coordinated electrodeposition of carboxylated chitosan(CCS),we presented a green method to prepare Cu NCs and Cu NCs/CCS nanocomposite films.The method shows a range of benefits,such as the convenient ... On the basis of coordinated electrodeposition of carboxylated chitosan(CCS),we presented a green method to prepare Cu NCs and Cu NCs/CCS nanocomposite films.The method shows a range of benefits,such as the convenient and eco-friendly process,mild conditions,and simple post-treatment.The experimental results reveal that a homogeneous deposited film(Cu NCs/CCS nanocomposite film)is generated on the Cu plate(the anode)after electrodeposition,which exhibits an obvious red florescence.The results from TEM observation suggest there are nanoparticles(with the average particle size of 2.3 nm)in the deposited film.Spectral analysis results both demonstrate the existence of Cu NCs in the deposited film.Moreover,the Cu NCs/CCS film modified electrode is directly created through electrodeposition of CCS,which enables promising application in the electrochemical sensing.By means of fluorescence properties of Cu NCs,the Cu NCs/CCS film also owns the potential in fluorescence detection.Therefore,this work builds a novel method for the green synthesis of Cu NCs,meanwhile it offers a convenient and new electrodeposition strategy to prepare polysaccharide-based Cu NCs nanocomposites for uses in functional nanocomposites and bioelectronic devices. 展开更多
关键词 nanocomposite films copper nanoclusters ELECTRODEPOSITION carboxylated chitosan POLYSACCHARIDES
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