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1.
TiO2纳米带表面光伏特性的研究   总被引:1,自引:0,他引:1  
近年来, 一维结构的纳米带由于其不同于管、线材料的新颖结构以及独特的光电性能而受到广泛关注. 人们通过各种方法合成了氧化锌、硫化镉和氧化锡等纳米带材料[1,2]. 纳米TiO2以其优异的光电性能和高的化学稳定性而被广泛应用于太阳能电池、光催化降解等诸多领域[3], 从而成为研究热点, 最近其纳米带的制备也有报道[4].  相似文献   

2.
TiO2纳米管阵列在环境领域的研究进展   总被引:1,自引:0,他引:1  
房治  周庆祥 《化学学报》2012,(17):1767-1774
TiO2纳米管阵列是一种新型的无机功能材料,具有化学惰性、气敏、介电效应、良好的生物兼容性、较强的光催化能力以及抗化学腐蚀和光腐蚀的能力,特别是具有很好的光催化活性,使其在太阳能的储存与利用、环境净化、催化剂、光催化降解环境污染物等方面有比较多的研究应用.TiO2纳米管阵列通过一定的修饰可以使其吸收光谱向可见光区迁移,同时它兼具成本低廉、环境友好等优点,是当前环境污染物削减与监控的重要研究方向之一.本文主要对近年来国内外TiO2纳米管阵列作为光催化剂降解环境污染物和作为功能材料在环境分析检测中的应用进行简要综述,为开发新型污染物监控与处理技术及拓展TiO2纳米管阵列的潜能提供重要参考.  相似文献   

3.
TiO2纳米管的模板法制备及表征   总被引:34,自引:0,他引:34  
TiO2纳米材料在太阳能的储存与利用、光电转换、光致变色及光催化降解大气和水中的污染物等方面具有广阔的应用前景,成为重点研究的课题之一[1~5].目前,以TiO2纳米粉体和纳米膜的研究较为普遍,而TiO2纳米管的报道不多.由于纳米管比纳米膜具有更大的比表面积,因而具有较高的吸附能力,可望提高TiO2的光电转换效率.模板法(包括多孔阳极氧化铝膜(PAA)、光刻蚀制备的纳米模板、聚碳酸酯纳米滤膜等)在制备导电聚合物、金属、碳、无机半导体等纳米管或线型材料方面已得到广泛应用[6~9],在这些模板中,PAA膜具有均匀分布的垂直于表面的相互平行的密集纳米孔,且孔径、孔间距、膜厚可以通过电化学手段加以控制[10~13].  相似文献   

4.
电化学溶解钛金属直接水解法制备纳米TiO_2   总被引:4,自引:0,他引:4  
纳米材料是目前材料科学的热点 .TiO2作为一种重要的无机功能材料 ,具有温敏、气敏、光催化等功能 ,广泛用于光电材料、涂料、传感器、介电材料、催化剂及载体等重要领域 .由于其各种应用都与粉体的性能有直接关系 ,因此研究纳米 TiO2的制备方法具有重要的实际意义 [1].近年来 ,纳米 TiO2粉体制备方法有了很大的发展 ,如 TiCl4气相水解沉淀法 [2],乳浊液法和 Ti(OC4H9)4水解沉淀法 [1],喷雾热解法 [3],放电爆炸法 [4],反应电极埋弧法 [5],溶胶凝胶 (Sol gel)法 [6]等 ,其中溶胶凝胶法是制备纳米材料的有效方法 .但这些方法存在…  相似文献   

5.
Fe_2O_3/TiO_2纳米管阵列的制备及其光催化性能   总被引:2,自引:0,他引:2  
在钛基体上采用阳极氧化法制备了TiO2纳米管阵列,采用化学浴方法在TiO2纳米管阵列上修饰了Fe2O3纳米颗粒。利用扫描电镜、X射线衍射和紫外可见漫反射光谱等手段对材料进行了表征,同时测试了材料的光电化学性能及其光催化降解亚甲基蓝染料废水的性能。结果表明,Fe2O3纳米颗粒的修饰将TiO2纳米管阵列的光响应拓宽至可见光区域,提高了光电流,Fe2O3/TiO2纳米管阵列的光电流是未修饰的TiO2纳米管阵列的9倍。而在光催化反应中,亚甲基蓝最高降解率可达80%,比未修饰的TiO2纳米管阵列高出30%。  相似文献   

6.
紫外光照处理对TiO2膜光伏性能的影响   总被引:3,自引:0,他引:3  
近年来人们利用纳米晶TiO2电极取代普通的TiO2电极[1],使其太阳能电池的光电转换效率得到很大提高.纳米晶TiO2电极具有大量表面态,在化学上表现为Ti3+或Ti—OH,对于光生电荷的分离过程和迁移过程有重要影响.这些表面化学结构的变化可能会导致TiO2的光伏性能的变化.1997年Fujishima等[2]用紫外光照射TiO2膜使它具有超亲水的性质,结构分析表明,超亲水的原因在于光照使TiO2膜的表面形成Ti—OH[3].因此,在光照处理的同时可能会导致TiO2的光伏性的变化.本文对紫外光照处理TiO2膜的光伏性能进行了研究,并结合光诱导TiO2的亲水性变化对光伏性能变化的原因进行了讨论.  相似文献   

7.
纳米TiO2粉体独特的光催化作用、颜色效应以及紫外屏蔽等功能使其在汽车工业、防晒化妆品、环保等方面有着广阔的应用前景[1-3]。未经表面处理的纳米TiO2表面疏油,不易在有机介质中分散,直接影响到TiO2性能的发挥。锐钛矿型TiO2晶体中[4], Ti—O键距离短且不等长,分别为1·937A°和1·964A°,这种不平衡使TiO2分子极性很强,强极性使得TiO2表面易吸附水分子并使水分子极化而形成表面羟基。本文选用月桂酸和棕榈酸作为改性剂,让羧基与TiO2的羟基以化学吸附的形式连接起来,使纳米TiO2表面改性为亲油性。结果表明棕榈吸的改性效果较月桂…  相似文献   

8.
TiO2纳米微粒对聚苯胺性能的影响   总被引:26,自引:0,他引:26  
纳米微粒具有量子尺寸效应, 其光、电、声及磁等方面的性能与常规材料有显著的不同, 其中以TiO2纳米微粒的电荷载体、光电活性中心、光学微腔和光电特性等特征[1,2]尤为引人注目. 导电聚合物的纳米复合材料是纳米材料的研究热点之一, 在导电材料、电流体和高密度信息存储材料等方面具有良好的应用前景[3]. 在导电聚合物中, 聚苯胺(PANI)因其具有较高的电导率, 原料便宜, 稳定性好而成为目前最有希望获得实际应用的导电聚合物[4~6]. 将纳米微粒和PANI制成复合材料, 其光电性能等与PANI相比均有所改变. 目前已相继有PANI-ZrO2, PANI-MnO2, PANI-SiO2纳米复合材料的报道[7,8], 而有关PANI-TiO2研究工作尚少见报道. 本文制备了PANI-TiO2纳米复合材料, 通过红外光谱、紫外可见光谱及透射电镜等探讨了复合材料的微结构及性能.  相似文献   

9.
本文研究了TiO2纳米管阵列制备及其嵌锂电化学性能.采用阳极氧化法制备了TiO2纳米管阵列.利用XRD、SEM、恒电流充放电、CV、EIS等手段.对所制备TiO2纳米管阵列的结构、形貌进行了分析表征及电化学性能测试.实验结果表明,制备出的TiO2纳米管阵列薄膜具有很好的循环性能.首次嵌锂容量达73.3 μAh·cm-2...  相似文献   

10.
表面与界面电荷性质是纳米材料制备及其应用中应该考虑的重要问题. 详细了解纳米材料的尺寸与表面电荷性质之间的关系是纳米科学研究中的重要课题. TiO2作为一种宽带隙的半导体材料, 因其具有显著的光电响应、良好的化学稳定性和绿色环保性, 在太阳能转换、光催化杀菌及污染处理等方面有着广泛的用途[1~5].  相似文献   

11.
Scandium magnesium gallide, Sc2MgGa2, and yttrium magnesium gallide, Y2MgGa2, were synthesized from the corresponding elements by heating under an argon atmosphere in an induction furnace. These intermetallic compounds crystallize in the tetragonal Mo2FeB2‐type structure. All three crystallographically unique atoms occupy special positions and the site symmetries of (Sc/Y, Ga) and Mg are m2m and 4/m, respectively. The coordinations around Sc/Y, Mg and Ga are pentagonal (Sc/Y), tetragonal (Mg) and triangular (Ga) prisms, with four (Mg) or three (Ga) additional capping atoms leading to the coordination numbers [10], [8+4] and [6+3], respectively. The crystal structure of Sc2MgGa2 was determined from single‐crystal diffraction intensities and the isostructural Y2MgGa2 was identified from powder diffraction data.  相似文献   

12.
13.
On Dialkali Metal Dichalcogenides β-Na2S2, K2S2, α-Rb2S2, β-Rb2S2, K2Se2, Rb2Se2, α-K2Te2, β-K2Te2 and Rb2Te2 The first presentation of pure samples of α- and β-Rb2S2, α- and β-K2Te2, and Rb2Te2 is described. Using single crystals of K2S2 and K2Se2, received by ammonothermal synthesis, the structure of the Na2O2 type and by using single crystals of β-Na2S2 and β-K2Te2 the Li2O2 type structure will be refined. By combined investigations with temperature-dependent Guinier-, neutron diffraction-, thermal analysis, and Raman-spectroscopy the nature of the monotropic phase transition from the Na2O2 type to the Li2O2 type will be explained by means of the examples α-/β-Na2S2 and α-/β-K2Te2. A further case of dimorphic condition as well as the monotropic phase transition of α- and β-Rb2S2 is presented. The existing areas of the structure fields of the dialkali metal dichalcogenides are limited by the model of the polar covalence.  相似文献   

14.
15.
[(n‐Bu)2Sn(O2PPh2)2] ( 1 ), and [Ph2Sn(O2PPh2)2] ( 2 ) have been synthesized by the reactions of R2SnCl2 (R=n‐Bu, Ph) with HO2PPh2 in Methanol. From the reaction of Ph2SnCl2 with diphenylphosphinic acid a third product [PhClSn(O2PPh2)OMe]2 ( 3 ) could be isolated. X‐ray diffraction studies show 1 to crystallize in the monoclinic space group P21/c with a = 1303.7(1) pm, b = 2286.9(2) pm, c = 1063.1(1) pm, β = 94.383(6)°, and Z = 4. 2 crystallizes triclinic in the space group , the cell parameters being a = 1293.2(2) pm, b = 1478.5(4) pm, c = 1507.2(3) pm, α = 98.86(3)°, β = 109.63(2)°, γ = 114.88(2)°, and Z = 2. Both compounds form arrays of eight‐membered rings (SnOPO)2 linked at the tin atoms to form chains of infinite length. The dimer 3 consists of a like ring, in which the tin atoms are bridged by methoxo groups. It crystallizes triclinic in space group with a = 946.4(1) pm, b = 963.7(1) pm, c = 1174.2(1) pm, α = 82.495(6)°, β = 66.451(6)°, γ = 74.922(6)°, and Z = 1 for the dimer. The Raman spectra of 2 and 3 are given and discussed.  相似文献   

16.
Summary The ability of [MoS4]2–, anions to be used as ligands for transition metal ions has been widely demonstrated, especially with Fe2+. The present study has been restricted to linear complexes such as (NEt4)2 [Cl2FeS2MoS2] and (NEt4)2[Cl2FeS2MoS2FeCl2]. Their electrochemical properties are described: upon electrochemical reduction, these compounds yield MoS2, as a black precipitate, and an iron complex in solution, assumed to be [SFeCl2]2–. The electrochemical reduction goes through two electron transfers, coupled with the breakdown of the molecular skeleton: a DISPl and an ECE mechanism. Depending on the solvent, the following equilibrium may be observed: [Cl4Fe2MoS4]2–[Cl2FeMoS4]2–+FeCl2. The equilibrium constant, KD, was evaluated by differential pulse polarography. KD is tightly related to the donor number of the solvent.  相似文献   

17.
18.
The structures of the hypophosphites KH2PO2 (potassium hypophosphite), RbH2PO2 (rubidium hypophosphite) and CsH2PO2 (caesium hypophosphite) have been determined by single‐crystal X‐ray diffraction. The structures consist of layers of alkali cations and hypophosphite anions, with the latter bridging four cations within the same layer. The Rb and Cs hypophosphites are isomorphous.  相似文献   

19.
Me2Sn(O2PPh2)2 ( 1 ), Ph2Pb(O2PMe2)2 ( 2 ), and Ph2Pb(O2PPh2)2 ( 3 ) have been synthesized by the reactions of Me2SnCl2 or Ph3PbCl with the corresponding diorganophosphinic acid in methanol. X‐ray diffraction studies show that the diorganophosphinate groups behave as double bridges between the metal atoms leading to polymeric ring‐chain structures with M2O4P2 (M = Pb, Sn) eight‐membered rings. The organic groups bonded to the metal atoms are in trans‐position in the resulting octahedral arrangement around the metal atoms. The IR and the mass spectra were reported and discussed.  相似文献   

20.
TG and DTA studies on Me3SnO2PCl2, Me2Sn(O2PCl2)2 and Ph3SnO2PCl2 were carried out under dynamic argon atmosphere. The results show that the decomposition proceeds in different stages leading to the formation of Sn3(PO4)2 as a stable product. This compound was characterized by IR spectroscopy. Decomposition schemes involving reductive elimination reactions were proposed.  相似文献   

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