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1.
建立了一种碘化法提金液中碘及碘离子的连续测定方法,调节溶液酸度,用硫代硫酸钠滴定溶液中碘,在滴定完碘的溶液中,以曙红为指示剂,以硝酸银定量滴定溶液中的碘离子,扣除碘生成的碘离子即可得到溶液中的碘离子。采用定量模拟碘化法提金液验证方法的有效性,同时进行加标回收及精密度实验,加标回收率为98.1%~103%,相对标准偏差(RSD,n=10)在0.19%~0.67%,方法精密度好,可满足碘化提金液中碘及碘离子的分析测定。  相似文献   

2.
纳米级TiO2粉体的制备研究——Ⅱ.絮凝剂及其浓度的影响   总被引:9,自引:0,他引:9  
采用溶胶-凝胶-超临界流体干燥(SCFD)法制备纳米级TiO2超细粉,详细考察了不同絮凝剂及其浓度对TiO2织构和结构性质的影响。结果表明,利用强碱溶液作为絮凝剂,浓度为5 mol·L-1是制备大孔高比表面TiO2超细粉较为适宜的条件。  相似文献   

3.
以钛酸丁酯为前驱体, 碘溶胶为碘源, 在室温下采用水解沉淀法制备了单质碘和纳米TiO2复合的双介孔结构光催化剂(M-I2-TiO2). 采用X射线衍射(XRD)、透射电子显微镜(TEM)、比表面分析(BET)、紫外-可见(UV-Vis)漫反射光谱和傅里叶变换-红外光谱(FT-IR)对M-I2-TiO2进行了表征. 以次甲基蓝(MB)溶液为模拟废水, 对M-I2-TiO2的光催化性能进行了评价, 研究了不同热处理温度对光催化活性的影响. 结果表明, M-I2-TiO2在可见光区有显著的吸收, 300 ℃热处理得到的样品比表面积高达227.6 m2/g, 600 ℃热处理所得样品的比表面积仍高达111.8 m2/g, 而400 ℃热处理所得样品具有最好的光催化降解性能. 双介孔结构纳米TiO2/I2复合材料的光催化降解性能显著高于相同方法制备的纯TiO2和Degussa P-25商业产品. 催化剂经6次重复使用其光催化活性基本保持不变.  相似文献   

4.
钙钛矿前驱体溶液的稳定性是一个长期被忽视的问题,其对器件效率、稳定性和一致性至关重要.在甲胺甲脒复合钙钛矿体系中,溶液的不稳定性主要是由碘化甲胺的去质子化及其衍生的转亚胺基副反应造成的.在本文中,我们系统研究了不同的酸添加剂对去质子化和转亚胺基反应平衡的影响规律,发现不易于升华的硼酸具有更好的稳定效果.硼酸作为一种路易...  相似文献   

5.
以水热法并进一步焙烧合成脊椎状NiCo2O4纳米棒,通过透射电子显微镜(TEM)、X射线衍射仪(XRD)、X射线光电子能谱仪(XPS)和热重分析仪(TG)等来表征其结构形态及热稳定性.采用线性扫描法(LSV)、循环伏安(CV)研究所制备催化剂的在玻碳和旋转圆盘电极上的电催化活性:在0.1 mol·L-1 KOH溶液中的电催化析氧反应(OER)和电催化氧还原反应(ORR).研究结果表明,所制备的脊椎状NiCo2O4纳米棒有大量的不饱和态,200℃焙烧制备的脊椎状NiCo2O4纳米棒析氧过电位最小可达309 mV,Tafel斜率145.6 mV/dec,其氧还原极限电流密度在1600 rmp可达到5.095 mA·cm-2,电子转移数在3.2~3.8之间,接近四电子转移机理,其优良电化学性能可能是由于暴露了更多的边缘缺陷的缘故.  相似文献   

6.
采用水热重结晶法对低温液相法制备的Ba0.9Ca0.1TiO3(B0.9C0.1T)浆料进行220 ℃, 3 h的水热处理, 成功制备了四方相B0.9C0.1T纳米粉体. 并对水热重结晶和未水热处理的两种粉体进行了TEM, XRD, Raman, FT-IR, TG和介电性能的表征. 研究表明, 经水热重结晶后的B0.9C0.1T粉体体系发生从顺电立方相向铁电四方相的转变, 羟基缺陷以及CO32-杂质显著减少, 粉体形貌由外边缘毛躁的球形转变为四边形. 并发现羟基缺陷的减少是影响体系相转变的关键因素.  相似文献   

7.
采用水热重结晶法对低温液相法制备的Ba0.9Ca0.1TiO3(B0.9C0.1T)浆料进行220 ℃, 3 h的水热处理, 成功制备了四方相B0.9C0.1T纳米粉体. 并对水热重结晶和未水热处理的两种粉体进行了TEM, XRD, Raman, FT-IR, TG和介电性能的表征. 研究表明, 经水热重结晶后的B0.9C0.1T粉体体系发生从顺电立方相向铁电四方相的转变, 羟基缺陷以及CO32-杂质显著减少, 粉体形貌由外边缘毛躁的球形转变为四边形. 并发现羟基缺陷的减少是影响体系相转变的关键因素.  相似文献   

8.
采用涂覆法制备了CoAl2O4/蜂窝陶瓷催化剂。利用X射线衍射、N2吸附-脱附和透射电镜等方法对所制备的催化剂进行了表征,并分析了其催化臭氧化降解对苯二酚的效能。结果表明,CoAl2O4/蜂窝陶瓷的晶相属于典型的尖晶石结构,具有较大的比表面积、孔容和孔径,分别达到77 m2·g-1、0.001 7 cm3·g-1和3.9 nm。CoAl2O4/蜂窝陶瓷催化臭氧化对苯二酚的去除率高达81.2%,COD去除率可达47.7%。在叔丁醇存在的条件下,对苯二酚的去除率显著下降,说明CoAl2O4/蜂窝陶瓷催化臭氧化遵循羟基自由基机理。  相似文献   

9.
以氨水作为沉淀剂,采用正、反向共沉淀法制备Pr2Zr2O7纳米粒子。利用XRD、SEM、TEM、TG-DTA等测试手段表征了样品物相及形貌;研究其制备过程中合成动力学和晶粒生长动力学,采用Doyle-Ozawa法和Kissinger法分别计算正、反向沉淀粒子在主要反应阶段的表观活化能。结果表明:反向沉淀的滴定速率为2mL·min-1、母盐溶液初始浓度0.05mol·L-1、反应体系温度273K、pH值11、煅烧温度为1173K,保温2h的条件下获得的样品形貌近球形、无团聚现象、一次粒径约60nm。Pr2Zr2O7前驱体的分解过程分为3个阶段,正、反向粒子各阶段平均表观活化能分别为:71.2、197.8、183.2kJ·mol-1和45.37、84.34、152.16kJ·mol-1;晶粒生长活化能分别为19.02和11.95kJ·mol-1,后者比前者的晶粒生长活化能降低了7.07kJ·mol-1;反向共沉淀制备工艺优于正向共沉淀法。  相似文献   

10.
采用高温固相法制备了Ce、Sm共掺Lu3Al5O12荧光粉。通过X射线衍射分析、荧光光谱分析研究了样品的结构、发光特性,并通过理论计算研究了能量传递效率、能量传递的临界距离以及能量传递方式。X射线衍射分析表明所制备的荧光粉具有单一的石榴石结构;荧光光谱分析表明,在464 nm蓝光激发下,Sm3+的引入可增加Lu3Al5O12:Ce,Sm发射光谱中红光成分,并且随着Sm3+浓度的增加,Ce3+发光强度逐渐减弱。计算出Ce3+、Sm3+之间的能量传递效率高达77.42%,确定了Ce3+、Sm3+之间的能量传递机制为偶极-偶极相互作用。  相似文献   

11.
The multiple quantum wells (QWs) distribution in low-dimensional perovskite films hinders charge transport due to the fundamental difficulty of controlling crystal growth from precursor solutions, yielding poorly homogeneous low-dimensional perovskite solar cells (PSCs), especially in upscaling fabrication. Here, efficient low-dimensional PSCs are realized by modulating the colloidal assembly behavior in the precursor solution to induce intermediate structures. In combination with in situ liquid time-of-flight secondary ion mass spectrometry, the assembly behavior of organic cations involved lead iodide-dominated colloidal soft framework is visualized by investigating the precursor species differences under hydrogen bonding interactions. Subsequently, solid-state reactions emerge and the formamidine (FA)-based perovskite films exhibit significantly suppressed multiple QWs distribution. Encouragingly, the FA device (n=9, by meniscus-assisted coating) achieves a power conversion efficiency (PCE) of 20.28 % for a size of 0.04 cm2 and a PCE of 15.35 % for a mini-module of 16.94 cm2 with superior stability.  相似文献   

12.
Rapid capture of 129I with high volatility and toxicity in the environment has attracted much attention. Herein we reported a firstly synthesized nonporous material: pyridine N-oxides (NTPO and ATPO) as iodine adsorbent. Both of NTPO and ATPO exhibit remarkable performance on the adsorption of iodine in aqueous solution, vapor state and organic solvents. Upon the capture of iodine, pyridine N-oxides were transformed to binary cocrystals combined with the pyridine N-oxides and iodine which is driven by halogen bond between iodine and oxygen atoms. Moreover, pyridine N-oxides shows high chemical, thermal and moisture stability.  相似文献   

13.
A method for the simultaneous determination of inorganic and organic lead compounds in air is described, together with some results from its application at different sampling sites. Air-borne particulate lead is collected on a cellulose filter. Organic lead vapours are trapped in an iodine monochloride solution, placed behind the filter. A fraction of the cellulose filter is subjected to low-temperature ashing, after which the lead content in the residue is measured by electrothermal atomic-absorption spectrometry. The organolead material absorbed in the iodine monochloride solution, is determined by solvent extraction and electrothermal atomic-absorption spectrometry. For a 6-h sampling period, detection limits of the order of 10 ng m-3 for inorganic and 8 ng m-3 for organic lead materials may be obtained.  相似文献   

14.
The effect of cyclodextrins (CDs) on water solubility of iodine was investigated. Modified CDs greatly enhanced the solubility of iodine. On the contrary, enhancement by natural CDs was rather moderate whereby the solubility was only doubled at the highest β-CD concentration examined. Desorption experiment of iodine from solution was carried out with addition of various CDs to study the effect of CDs on iodine retention. α-CD was the most efficient in retarding iodine desorption. Later, various concentrations of α-CD were used in the desorption experiment to observe its volatile suppression effect and determine the stability constant of iodine/α-CD complexation. At α-CD concentration of 10.3 mM, no lost of iodine from the solution was detected. A model was developed for desorption of iodine from the solution based on mass transfer theory. The stability constant K given by this model was 3.28×104 M−1 which was in the same order as the value estimated in this study by solubility method and as well those reported by other authors. In release experiments of solid state inclusion complexes, stability of inclusion complex powders decreased in the order of α-CD>β-CD>randomly methylated β-CD (RM-β-CD).  相似文献   

15.
利用微波协助的Stille缩合聚合反应方法合成了基于双噻吩苯并噻二唑和异靛单元的受体-受体聚合物HFTBT-DA865,并对其热稳定性、光物理性能、电化学性质和本体异质结太阳能电池性能进行了研究.该聚合物易溶于邻二氯苯和邻二甲苯等溶剂,具有优异的溶液加工性能.5%热分解温度为389℃,玻璃化转变温度为168℃,说明其具有较好的热稳定性能.对旋涂速度和温度进行优化,所得太阳能电池器件的光电转换效率为2.28%,开路电压为0.83 V,短路电流为-5.70 mA/cm^2,填充因子为48.9%.电化学性能和密度泛函理论估算结果表明,聚合物与受体材料PC71BM相近的最低未占分子轨道(LUMO)值及其平面性可能是影响光伏性质的重要因素.通过调控共聚单体或优化受体材料,器件性能可进一步提高.对受体-受体(A-A)类聚合物材料太阳能电池性能的研究表明,此类材料是一类潜在的聚合物太阳能电池材料.  相似文献   

16.
The reaction of derivatives on C3 of 6-hydroxy-2,7-dimethyl-11-oxatricyclo[6.2.1.02,6]undecan-4-one with lead tetraacetate and iodine, gave, in a good yield, 1,7-epoxycyclononanes. These compounds are the result of a β-fragmentation at the level of C2-C6 respect to the tertiary hydroxyl group on C6, with an unexpected contraction from a ten to a nine-membered ring system, via a radical addition to the carbonyl group on C4. The treatment of precursors (non-functionalized on C3) with LTA and iodine produced again a β-fragmentation without any structural rearrangement, affording a typical 1,8-epoxycyclodecane system. The transformation of the carbonyl group on C4 into acetate avoided radical additions and rearrangements affording, in high yield, the corresponding cyclodecanes. By this methodology, either 1,7-epoxy-cyclononane or 1,8-epoxycyclodecane could be synthesized, in a good yield, from the same versatile precursor.  相似文献   

17.
We report two novel types of hierarchically structured iodine‐doped ZnO (I? ZnO)‐based dye‐sensitized solar cells (DSCs) using indoline D205 and the ruthenium complex N719 as sensitizers. It was found that iodine doping boosts the efficiencies of D205 I? ZnO and N719 I? ZnO DSCs with an enhancement of 20.3 and 17.9 %, respectively, compared to the undoped versions. Transient absorption spectra demonstrated that iodine doping impels an increase in the decay time of I? ZnO, favoring enhanced exciton life. Mott–Schottky analysis results indicated a negative shift of the flat‐band potential (Vfb) of ZnO, caused by iodine doping, and this shift correlated with the enhancement of the open circuit voltage (Voc). To reveal the effect of iodine doping on the effective separation of e?‐h+ pairs which is responsible for cell efficiency, direct visualization of light‐induced changes in the surface potential between I? ZnO particles and dye molecules were traced by Kelvin probe force microscopy. We found that potential changes of iodine‐doped ZnO films by irradiation were above one hundred millivolts and thus significantly greater. In order to correlate enhanced cell performance with iodine doping, electrochemical impedance spectroscopy, incident‐photon‐current efficiency, and cyclic voltammetry investigations on I? ZnO cells were carried out. The results revealed several favorable features of I? ZnO cells, that is, longer electron lifetime, lower charge‐transfer resistance, stronger peak current, and extended visible light harvest, all of which serve to promote cell performance.  相似文献   

18.
In hydrochloric acid medium sodium meta-vanadate was used as a volumetric reagent for the determination of copper, zinc, cobalt, mercury, and lead. Cu+2, Zn+2 and Co+2were precipitated as complex mercurythiocyanates, Hg+2 as mercuric zinc thiocyanate and Pb+2 as Iodide. The thiocyanates were dissolved in concentrated hydrochloric acid and titrated against standard sodium meta-vanadate solution in the presence of iodine monochloride as a pie.oxidizer and catalyst. In titration of the iodide against the meta-vanadate. it was not necessary to add iodine monochloride to the titrant because it is formed during the titration. Chloroform was used as an indicator. It was pink owing to the liberation of iodine during the titration and became pale yellow at the end-point because of the formation of iodine monochlonde.  相似文献   

19.
《Analytical letters》2012,45(6):681-693
Abstract

A practical and correct methodology for evaluating CH2O in air without sampling artifact formation is presented. Formaldehyde is collected on an annular denuder coated with bisulfite-triethanolamine. The sorbent layer is extracted with water and the solution analyzed by the chromotropic acid (CTA) procedure. Sorption efficiency and loading capacity have been investigated along with storage stability.

Results of laboratory validation studies have indicated that a small annular denuder was able to sample about 300 μg CH2O without an appreciable decrease in the initial collection efficiency (99% at 2.5 1 min?1).

Tests on storage stability before and after exposure have also demonstrated that both oxidation of bisulfite and release of CH2O did not occur for time periods as long as 1 month.  相似文献   

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