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61.
氟化物熔体中电解共沉积硼化钛的阴极过程   总被引:6,自引:0,他引:6  
采用循环伏安法首次研究了LiF-NaF-K2TiF6-KBF4熔盐体系中钛离子和硼离子在铂、钼电极上电化学还原及电合成硼化钛的阴极过程机理。对恒电位电解的沉积物进行了X射线衍射分析。结果表明,当体系中硼钛摩尔比B/Ti大于2时,钛与硼可在同一电位下实现电解共沉积并反应生成硼化钛。  相似文献   
62.
The microstructure and mechanical properties of Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe high strength titanium alloy sheets prepared by unidirectional cold rolling and two-step cross cold rolling were investigated. Results showed that the β phase grains were refined significantly by cold rolling followed by solution treatment for a short time.Compared to unidirectional cold rolling, the short time solution treatment after two-step cross rolling could significantly reduce the non-uniformity of the microstructure of the alloy sheets. After aging treatment at 550 ℃,the anisotropy of the mechanical properties still existed in the unidirectional rolled sheets, and the tensile strength was highest along the rolling direction. After solution and aging treatment, the anisotropy of the mechanical properties of the two-step cross rolling process sheet was not obvious than unidirectional cold rolling,and alloy had good strength and plasticity matching.  相似文献   
63.
研究以邻二氮菲(Phen)和二安替比林甲烷(DAM)为显色剂同时测定硅石中的铁和钛,在pH值为0.99~1.26的酸性条件下,Phen和DAM可分别与铁和钛生成稳定的有色络合物.分别在波长510 nm和390 nm测其吸光度,用双波长计算法,同时测定试液中的铁和钛.铁量在0~100μg/(50 mL),钛量在0~150μg/(50 mL),符合比耳定律.铁和钛的加标回收率分别为99.8%~101.3%和98.8%~101.6%.  相似文献   
64.
氧化铁黄又称羟基铁,简称铁黄,化学式为α-FeOOH,具有良好的耐光性、耐大气性和耐碱性。较其他黄色颜料的遮盖力高,着色力也强。广泛地用于橡胶制品、油漆、塑料、油墨、药片糖衣等的着色,也是人造大理石、水磨石地面、铺路砖、墙面粉饰等的着色剂[1]。四川省自贡市金红石厂以3  相似文献   
65.
介孔TiO2材料由于具有特殊的性能展示了广阔的潜在应用前景,近年来备受关注。对纯介孔TiO2的合成现状和介孔TiO2的改性方法进行了综述,着重介绍了通过引入金属杂质的改性方法及其应用。  相似文献   
66.
The effective reflective anode remains a highly desirable component for the fabrication of reliable top-emitting organic light-emitting diodes (TE-OLEDs) which have the potential to be integrated with complementary metal-oxide-semiconductor (CMOS) circuits for microdisplays. This work demonstrates a novel laminated anode consisting of a Cr/Al/Cr multilayer stack. Furthermore, we implement an ultra-thin titanium nitride (TiN) layer as a protective layer on the top of the Cr/Al/Cr composite anode, which creates a considerably reflective surface in the visible range, and meanwhile improves the chemical stability of the electrode against the atmosphere or alkali environment. Based on [2-(2-pyridinyl-N)phenyl-C](acetylacetonate)iridium(III) as green emitter and Mg/Ag as transparent cathode, our TE-OLED using the TiN-coated anode achieves the maximum current efficiency of 71.2 cd/A and the maximum power efficiency of 66.7 lm/W, which are 81% and 90% higher than those of the reference device without TiN, respectively. The good device performance shows that the Cr/Al/Cr/TiN could function as a promising reflective anode for the high-resolution microdisplays on CMOS circuits.  相似文献   
67.
In this work, we present a systematic study on the influence of Cu2+ ion concentration in the impregnation solution on the morphology, structure, optical, semiconducting, and photoelectrochemical properties of anodic CuOx-TiO2 materials. Studied materials were prepared by immersion in solutions with different concentrations of (CH3COO)2Cu and subjected to air-annealing at 400 °C, 500 °C, or 600 °C for 2 h. The complex characterization of all studied samples was performed using scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), X-ray diffraction (XRD), reflectance measurements, Mott–Schottky analyses, and photocurrent measurements. It was found that band gap engineering based on coupling CuO with TiO2 (Eg~3.3 eV) is an effective strategy to increase the absorption in visible light due to band gap narrowing (CuOx-TiO2 materials had Eg~2.4 eV). Although the photoactivity of CuO-TiO2 materials decreased in the UV range due to the deposition of CuO on the TiO2 surface, in the Vis range increased up to 600 nm at the same time.  相似文献   
68.
Agriculture is the backbone of every developing country. Among various crops, wheat (Triticum aestivum L.) belongs to the family Poaceae and is the most important staple food crop of various countries. Different biotic (viruses, bacteria and fungi) and abiotic stresses (water logging, drought and salinity) adversely affect the qualitative and quantitative attributes of wheat. Among these stresses, salinity stress is a very important limiting factor affecting the morphological, physiological, biochemical attributes and grain yield of wheat. This research work was carried out to evaluate the influence of phytosynthesized TiO2 NPs on the germination, physiochemical, and yield attributes of wheat varieties in response to salinity. TiO2 NPs were synthesized using TiO2 salt and a Buddleja asiatica plant extract as a reducing and capping agent. Various concentrations of TiO2 nanoparticles (20, 40, 60 and 80 mg/L) and salt solutions (NaCl) (100 and 150 mM) were used. A total of 20 mg/L and 40 mg/L improve germination attributes, osmotic and water potential, carotenoid, total phenolic, and flavonoid content, soluble sugar and proteins, proline and amino acid content, superoxide dismutase activity, and reduce malondialdhehyde (MDA) content at both levels of salinity. These two concentrations also improved the yield attributes of wheat varieties at both salinity levels. The best results were observed at 40 mg/L of TiO2 NPs at both salinity levels. However, the highest concentrations (60 and 80 mg/L) of TiO2 NPs showed negative effects on germination, physiochemical and yield characteristics and causes stress in both wheat varieties under control irrigation conditions and salinity stress. Therefore, in conclusion, the findings of this research are that the foliar application of TiO2 NPs can help to improve tolerance against salinity stress in plants.  相似文献   
69.
通过对钛合金经皮植入式假肢的的骨内固定植入体表面进行生物陶瓷改性,以研究经改性过的植入体与其宿主骨整合的能力.采用羟基磷灰石喷涂和微弧氧化两种生物陶瓷改性工艺,对骨内固定植入体进行改性处理,将改性过的植入体植入山羊后腿胫骨,术后8周取标本行组织学观察,见两种生物陶瓷改性的植入体均可与宿主骨形成严密整合.计算宿主骨组织与植入体整合率,发现经生物陶瓷表面改性的植入体与宿主骨组织整合率显著高于未经生物改性的对照组植入体(p<0.01),而羟基磷灰石喷涂组和微弧氧化组与宿主骨整合率的差别无统计学意义(p>0.05),说明羟基磷灰石和微弧氧化两种陶瓷层都具有很强的诱导骨生成能力,经其表面改性的骨内固定植入体能与宿主骨形成紧密整合.  相似文献   
70.
利用有机元素分析仪,对氮掺杂二氧化钛中氮元素的含量进行了测定,评定了其测量不确定度。分析了测定过程中的不确定度的来源,并对不确定度的各个分量进行了评定,给出了测定结果的合成不确定度和扩展不确定度。结果表明:不确定度可表示为(1.21±0.16)%,k=2,其中校准曲线对不确定度的影响最大。  相似文献   
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