首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 203 毫秒
1.
Ta2O5薄膜作为电容元件材料的替代品已在微电子等领域中显示出广阔的应用前景[1].脉冲激光沉积(PLD)法制备Ta2O5薄膜以其显著的优点引起了广泛重视[2,3].而对激光烧蚀的物理化学过程的认识是完善这一方法的重要前提.我们曾采用时间分辨与角分辨飞行四极质谱[4]和发光光谱技术[5]较系统地研究了激光烧蚀Ta2O5产生的羽状物的组成和特征,并认为在O2气氛中沉积Ta2O5薄膜可以改善甚至避免形成缺氧的薄膜.但由于上述实验方法上的限制,未能详细考察激光烧蚀Ta2O5生成的离子产物在O2气氛中发生的氧化反应.为了研究激光烧蚀产物离子…  相似文献   

2.
光致变色WO3/4,4'-BPPOBp超晶格薄膜的制备   总被引:6,自引:0,他引:6  
具有光致变色和电致变色特性的三氧化钨薄膜因其巨大的应用前景而倍受人们关注[1-4].其制备方法一般为物理沉积方法和化学沉积方法等.其中化学方法包括喷射裂解法[5],化学气相沉积法[6,7],电化学沉积法[8]和溶胶凝胶法[9]等.利用超分子化学自组装技术构建用有机组分调控的光致变色纳米超晶格薄膜材料,是研制光致变色功能薄膜材料的新方法.本文采用溶液中相反电荷聚电解质超分子自组装的方法(PEs法)[10],制备了WO3/4,4′BPPOBp超晶格薄膜.采用紫外可见吸收光谱和小角X射线衍射谱对薄膜的结构和分子的排列方式进行了研究.1 实验…  相似文献   

3.
液相放电法合成氮化碳晶体   总被引:4,自引:0,他引:4  
自从 Cohen等 [1,2 ] 预言了一种碳氮化合物 ( β- C3N4 )可能具有比金刚石还高的硬度和其它优异的力学、电学和光学性能以来 ,人们竟相采用各种技术手段 (如化学气相沉积、磁控溅射、离子束沉积和激光刻蚀等 )尝试合成这种新材料 [3,4 ] .但是 ,大多数合成的氮化碳材料为非晶或者是少量的晶体包埋在非晶的碳和 CNx 材料中 ,尚未制得可以精确地研究其晶体结构的足够大的单晶 .1 999年 ,Fu等 [5] 将液相电沉积技术应用于氮化碳材料的合成 ,从乙腈中沉积了氮含量为 2 5 %的氮化碳薄膜 .目前电化学沉积法制备的氮化碳薄膜多为非晶膜 [6~ 9]…  相似文献   

4.
0引言铜铟硒(CIS)具有合适的带隙、高光吸收系数、适当的电荷密度和迁移率,是一种用于薄膜太阳能电池的备受关注的吸收材料[1]。目前CuInSe2薄膜已采用多种方法进行制备,如金属前驱体硒化法[2]、共沉积法[3]、溅射法[4]、电沉积法[5]和化学气相沉积法[6]等。这些方法都有各自的  相似文献   

5.
郑杰允  汪锐  李泓 《物理化学学报》2014,30(10):1855-1860
采用固相烧结法制备了纯相Li2MnO3正极材料及靶材,采用脉冲激光沉积(PLD)法在氧气气氛、不同温度下沉积了Li2MnO3薄膜.通过X射线衍射(XRD)和拉曼(Raman)光谱表征了薄膜的晶体结构,采用扫描电镜(SEM)观察薄膜形貌及厚度,利用电化学手段测试了Li2MnO3薄膜作为锂离子电池正极材料性能.结果表明,PLD方法制备的纯相Li2MnO3薄膜随着沉积温度升高薄膜结晶性变好.25℃沉积的薄膜难以可逆充放电,400℃沉积的薄膜具有较高的电化学活性和循环稳定性.相对于粉末材料,400与600℃制备的Li2MnO3薄膜电极平均放电电位随着循环次数的衰减速率明显低于相应的粉体材料.  相似文献   

6.
电化学沉积是半导体薄膜制备的一种简便方法,常用于Ⅱ-族化合物半导体薄膜的制备.通过电沉积条件的适当改变可成功地在导电衬底上制备半导体纳晶薄膜[1].CdSe薄膜作为一种透光性好、导电性好的半导体材料,可进行光学性能和光电性能方面的研究,而半导体纳晶多孔电极的光电化学特性与体材料之间有很大不同.本文采用电化学沉积法制备了CdSe纳晶薄膜并研究了其性能,通过扫描隧道显微镜(STM)形貌分形分析进一步研究其沉积机理.  相似文献   

7.
万云海  袁国亮  夏晖 《电化学》2012,(3):279-285
高能量密度、功率密度和高温度稳定性的全固态薄膜锂离子电池是微电子器件的理想电源.开发新型的大比容量正极薄膜材料是解决问题的关键之一.与LiCoO2正极相比,层状结构的LiNi0.5Mn0.5O2有更高的可逆比容量和结构稳定性.本文应用脉冲激光沉积法制备LiNi0.5Mn0.5O2沉积薄膜,研究了衬底材料、温度对薄膜的微观结构、表面形貌及组分的影响.由LiNi0.5Mn0.5O2电极组装半电池,研究了薄膜的电化学性能与晶体结构、表面形貌及组分间的关系,表征了LiNi0.5Mn0.5O2沉积薄膜于不同充电截止电压的循环稳定性及倍率性能,并讨论了LiNi0.5Mn0.5O2薄膜的结构特点.  相似文献   

8.
β-NiOOH的制备及充放电性能   总被引:14,自引:0,他引:14  
夏熙  潘仁 《应用化学》2001,18(1):76-0
电池正负极材料有充放电态之分 ,如 Mn O2 、Zn处于充电态 ,Ni(OH) 2 、MH、Li Co O2 、L i Ni O2等处于放电态 ,将起始荷电态不同的电极组装成电池 ,必然存在充放电态不匹配的问题 ,给电池化成带来困难 [1,2 ] .如 Zn/Ni电池正极改用充电态Ni OOH为原材料 ,则负极就可用充电态 Zn为原材料 ,很显然 Zn作为负极材料优于 Zn O,这就引发了将 Ni(OH) 2 氧化为 Ni OOH的研究 .本文采用改进的化学氧化法由β- Ni(OH ) 2 制备β-Ni OOH粉体 [3,4 ] ,对纯样及其与 Mn O2 混合的掺杂样的充放循环性能和反应机理进行了研究 .所用试剂…  相似文献   

9.
0引言众所周知,钛及其合金具有优良的机械力学性能,但其生物活性不足。因此,在金属基体上涂敷一层生物活性涂层,结合金属与生物活性材料的各自优势,已成为世界各国学者研究最为活跃的生物复合材料体系之一。该体系可用于临床医学,作为人体硬组织等的修复替换材料。目前,已开发出多种在金属基体上制备生物活性涂层的工艺和方法。如:等离子沉积法[1]、离子束溅射法[2]、激光熔覆法[3]、溶胶鄄凝胶法[4]、电化学沉积与水热处理合成法[5]、电泳沉积[6]、电结晶[7]等多种方法。但现有涂层材料尚存在一些问题:(1)由于替换材料的高硬度而导致其周围硬组织坏死[8];(2)由于疲劳磨损或热膨胀不匹配引起涂层脱落[9];(3)由于异质相导致生物活性降解[10]。因此,研究新的制备工艺,开发新的生物复合材料体系就显得十分重要。考虑到Al2O3具有优异的抗磨损、耐腐蚀等性能,以及较好的生物相容性,常作为临床选用的人造硬组织承载材料[11],故在本研究工作中,我们首次采用阳极氧化与水热处理复合工艺研制酸式磷酸钙/Al2O3鄄Ti生物复合材料体系。该体系不同于由日本Ishizawa等研制的HAp/TiO2鄄Ti复合体系[12]。主要体现在两...  相似文献   

10.
脉冲激光沉积LiMn2O4薄膜的研究   总被引:5,自引:0,他引:5  
在氧气氛下采用355nm脉冲激光烧蚀制备了LiMn2O4薄膜,并用四极质谱和发光光谱技术考察了脉冲激光烧蚀过程及环境氧气对薄膜沉积过程的影响.质谱测定结果表明,355nm激光烧蚀LiMn2O4的产物主要有Li+、Mn+等离子和O2、O、LiO2、LiMnO、MnO及锂原子的多聚体等中性产物.不同氧气压下测定的发光光谱表明烧蚀原子在环境氧气氛中存在氧化过程.用循环伏安法和X射线衍射法对薄膜进行了表征.  相似文献   

11.
脉冲激光沉积LiFePO4阴极薄膜材料及其电化学性能   总被引:5,自引:0,他引:5  
采用脉冲激光沉积结合高温退火的方法在不锈钢基片上制备了LiFePO4薄膜电极. XRD谱图显示, 经650 ℃退火制得的是具有橄榄石结构的LiFePO4薄膜. 充放电测试表明, LiFePO4薄膜具有3.45/3.40 V的充放电平台, 与LiFePO4粉体材料相当. 首次放电容量约为27 mAh•g-1, 充放电循环100次后容量衰减51%.  相似文献   

12.
To improve the electrochemical performances of Si thin film anodes for lithium rechargeable batteries, fullerene thin films are prepared by plasma-assisted evaporation methods to be used as coating materials. Analyses via Raman and X-ray photoelectron spectroscopy indicate that amorphous polymeric films originated from fullerene are formed on the surface of the silicon thin film. The electrochemical performance of these fullerene-coated silicon thin film as an anode material for rechargeable lithium batteries has been investigated by cyclic voltammetry, charge/discharge tests, and electrochemical impedance spectroscopy. The fullerene-coated Si thin films demonstrated a high specific capacity of above 3,000 mAh g−1 as well as good capacity retention for 40 cycles. In comparison with bare silicon anodes, the fullerene-coated silicon thin film showed superior and stable cycle performance which can be attributed to the fullerene coating layer which enhances the Li-ion kinetic property at the electrode/electrolyte interface.  相似文献   

13.

Nickel-metal hydride (Ni-MH) batteries were widely used due to their various advantages, but its further application and development have been seriously hindered by the low electrochemical discharge capacity of conventional hydrogen storage alloy electrode. The hydrogenated amorphous silicon (a-Si:H) thin film electrode for Ni-MH battery has been proven to have a dramatic electrochemical capacity. We prepared a-Si:H thin films by a two-step process of rf-sputtering followed by hydrogenation, and investigated the effect of hydrogenation on the structure and electrochemical properties of which as an anode. The maximum discharge capacity of a-Si:H thin film electrode after hydrogenation increases from initial 180 mAh·g−1to 1827 mAh·g−1, which is over tenfold that of as-deposited hydrogen-less a-Si thin film electrode. Then, the preliminary relationships between hydrogen content and electrochemical performance of a-Si:H thin film electrode were analyzed, and several negative factors of electrochemical performance for a-Si:H thin film electrode were proposed.

  相似文献   

14.
新型锂离子电池三维结构泡沫NiO电极的制备及电化学性能   总被引:3,自引:2,他引:1  
通过固相氧化方法,以三维结构泡沫镍为基体和金属镍源,制备了三维结构泡沫氧化镍负极。XRD和SEM结果表明,经500℃氧化处理,泡沫镍基体上形成了NiO微米级的致密活性氧化层。通过充放电测试和循环伏安测试研究了电极的电化学性能,结果表明,三维结构泡沫氧化镍在放电电位区间0.05~3.2VvsLi/Li+,0.2C倍率下充放电,初始容量损失为20%,且经40次循环后,质量比容量为950mAh·g-1,三维泡沫氧化镍电极具有优异的循环容量保持性能。三维泡沫氧化镍具有的大的活性表面积,降低了界面反应的极化,从而提高了NiO电极的倍率放电性能。  相似文献   

15.
Nanocrystalline nickel–molybdenum (Ni–Mo) alloy thin films were electrochemically synthesized in acidic and alkaline aqueous solutions. Transmission electron microscope bright-field images and electron diffraction patterns of the electrodeposits made it obvious that pure Ni consists of a submicron crystalline phase with the grain diameter of several hundred nanometers, while Ni–20 %Mo alloy was composed of a nanocrystalline phase with the grain diameter of a few nanometers. It was estimated that the nanocrystalline phase of electrodeposited Ni–Mo alloy thin films was introduced by the formation of supersaturated Ni–Mo solid solution phase with Mo content in the deposit more than 20 %. Submicron crystalline pure Ni thin films were hardly magnetized in perpendicular direction to the film plane while the nanocrystalline Ni–20 %Mo alloy thin films were isotropically magnetized. It was suggested that the isotropical magnetization behavior was caused by decreasing the demagnetizing field and the magneto crystalline anisotropy with a decrease in the magnetic moment and the average crystal grain size. Coercive force of a submicron crystalline pure Ni thin film electrodeposited from an acidic aqueous solution was ca. 100 Oe while that of a nanocrystalline Ni–20 %Mo alloy thin film electrodeposited from an alkaline aqueous solution was only 1~2 Oe. Soft magnetic properties of Ni–Mo alloy thin films electrodeposited from an alkaline aqueous solution were better than that from an acidic aqueous solution and it was improved with an increase in Mo content in the deposit. It was estimated that the electrodeposited Ni–Mo alloy catalysts could be easily recovered with magnetic field less than 1 kOe.  相似文献   

16.
A novel design of a sodium‐ion cell is proposed based on the use of nanocrystalline thin films composed of transition metal oxides. X‐ray diffraction, Raman spectroscopy and electron microscopy were helpful techniques to unveil the microstructural properties of the pristine nanostructured electrodes. Thus, Raman spectroscopy revealed the presence of amorphous NiO, α‐Fe2O3 (hematite) and γ‐Fe2O3 (maghemite). Also, this technique allowed the calculation of an average particle size of 23.4 Å in the amorphous carbon phase in situ generated on the positive electrode. The full sodium‐ion cell performed with a reversible capacity of 100 mA h g?1 at C/2 with an output voltage of about 1.8 V, corresponding to a specific energy density of about 180 W h kg?1. These promising electrochemical performances allow these transition metal thin films obtained by electrochemical deposition to be envisaged as serious competitors for future negative electrodes in sodium‐ion batteries.  相似文献   

17.
The excitonic relaxation dynamics of perovskite adsorbed on mesoporous thin films of Al2O3 and NiO upon excitation at 450 nm were investigated with femtosecond optical gating of photoluminescence (PL) via up‐conversion. The temporal profiles of emission observed in spectral region 670–810 nm were described satisfactorily with a composite consecutive kinetic model and three transient components representing one hot and two cold excitonic relaxations. All observed relaxation dynamics depend on the emission wavelength, showing a systematic time–amplitude correlation for all three components. When the NiO film was employed, we observed an extent of relaxation proceeding through the non‐emissive surface state larger than through the direct electronic relaxation channel, which quenches the PL intensity more effectively than on the Al2O3 film. We conclude that perovskite is an effective hole carrier in a p‐type electrode for NiO‐based perovskite solar cells showing great performance.  相似文献   

18.
PbS electrode with high catalytic activity to Sn 2? reduction certificated by the measurements of electrochemical impedance spectroscopy and cyclic voltammetry was prepared by a simple method. The high catalytic activity makes it be a low-cost alternative counter electrode to platinum (Pt) to be used in quantum dots-sensitized solar cells (QDSSCs) based on polysulfide electrolyte. The photovoltaic performance enhancement of the quantum dots (QDs)-sensitized semiconductor thin films due to the PbS counter electrode was evaluated by fabricating QDSSCs based on CdSe QDs-sensitized ZnO (SnO2) thin film. CdSe QDs-sensitized ZnO thin film has the lower internal total series resistance and electron transmission time, the higher electron lifetime and electron collection efficiency than the CdSe QDs-sensitized SnO2 thin film. Replacing the Pt counter electrode with the PbS counter electrode leads to more improvement on the short circuit photocurrent density for QDSSC based on the ZnO thin film than the SnO2 thin film. Therefore, the process to limit the photovoltaic performance of CdSe QDs-sensitized solar cell and the possible way to improve the photovoltaic performance were analyzed.  相似文献   

19.
Al–B–NiO thin films were prepared using the sol–gel process and deposited on Indium tin oxide (ITO)-coated glass substrates via the dip-coating technique for the purpose of developing high performance electrochromic materials. The influence of the anneal on the structural and electrochromic properties of Al–B–NiO films is reported. Thermogravimetry (TG) and differential thermal analysis (DTA), cyclic voltammetry measurements (CV), UV spectrophotometer, atomic force microscopy (AFM) and X-ray diffraction (XRD) have been used to investigate the structural and electrochromic properties. The thickness of the films was determined by spectrophotometric analysis in 350–1,000 nm wavelength. Results showed that the Al–B–NiO thin films treated at high temperature have both the excellent electrochromic properties and good reversibility. The transmittance change (ΔT) of the film treated at 500 °C reaches still ~50% at the wavelength of 550 nm. The microstructure and the surface morphology were considered to play an important role in the electrochromic properties with different temperatures.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号