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1.
将电沉积法和化学浴沉积法结合,分别将CdTe和CdS量子点纳米晶材料引入到TiO_2纳米管阵列上制备CdTe/CdS量子点共敏化TiO_2光电极。利用扫描电镜、X射线衍射和X射线能量色散光谱等测试手段对所得样品的形貌、晶型和组分进行表征。在模拟太阳光照射条件下,通过电化学工作站测试其光电化学性能。研究结果表明,相对于单一量子点敏化CdS/TiO_2和CdTe/TiO_2光电极而言,共敏化CdTe/CdS/TiO_2光电极表现出更好的光电转化性能,短路电流密度和光电转换效率分别可以达到3.1 m A·cm~(-2)和1.85%。此外,采用电化学阻抗测试技术对材料性能提升的原因进行深入的探究。  相似文献   

2.
将适量Se加入到Na2S甲醇水溶液中反应生成Na2SSe2阴离子前驱体, 以Cd(NO3)2、Mn(CH3COO)2为阳离子前驱体, 通过连续离子层吸附反应(SILAR)分别制备出CdSSe2/TiO2或 MN2+掺杂的Mn-CdSSe2/TiO2量子点敏化光阳极。采用拉曼光谱、X射线光电子能谱和能量色散X射线能谱分析确定阴离子前驱体和量子点的价键结构和组成;通过紫外可见吸光光谱表征量子点的光吸收性能;利用J-V曲线和IPCE分别对CdS、CdSSe2和Mn-CdSSe2量子点敏化的TiO2光阳极的光电性能进行了表征。实验结果表明, 采用 0.12 mol·L-1 Se和0.5 mol·L-1 Na2S制备的阴离子前驱体、0. 5 mol·L-1 Cd2+和 0.3 mol·L-1 MN2+阳离子前驱体, 通过SILAR法制备的Mn-CdSSe2/TiO2光阳极, 能量转换效率比CdSSe2/TiO2和CdS/TiO2光阳极分别提高了90%和247%。  相似文献   

3.
以四氯化钛、盐酸为原料,制备出花状TiO2纳米微球,利用扫描电子显微镜(SEM)、X射线衍射(XRD)等测试方法,对样品的结构和形貌进行了表征。为了提高TiO2微球电池的光电性能,利用TiO2微球作为反射层构造了双层结构的薄膜电极,结果表明,双层结构染料敏化太阳能电池在100 mW·cm-2(1.5 G)光照条件下,短路光电流Jsc为17.64 mA·cm-2,开路光电压Voc为0.74 V,填充因子FF为0.63和光电转化效率η为8.33%。相比TiO2微球制备的太阳能电池,双层结构染料敏化太阳能电池光电转化效率提高至5.3倍。最后对电极中染料的吸附量、电极的光散射性能和电池的电化学阻抗做了进一步研究和分析,研究表明,双层结构电池增强光的捕获能力,从而提高光伏性能。  相似文献   

4.
将适量Se加入到Na2S甲醇水溶液中反应生成Na2SSe2阴离子前驱体, 以Cd(NO3)2、Mn(CH3COO)2为阳离子前驱体, 通过连续离子层吸附反应(SILAR)分别制备出CdSSe2/TiO2或 Mn2+掺杂的Mn-CdSSe2/TiO2量子点敏化光阳极。采用拉曼光谱、X射线光电子能谱和能量色散X射线能谱分析确定阴离子前驱体和量子点的价键结构和组成;通过紫外可见吸光光谱表征量子点的光吸收性能;利用J-V曲线和IPCE分别对CdS、CdSSe2和Mn-CdSSe2量子点敏化的TiO2光阳极的光电性能进行了表征。实验结果表明, 采用 0.12 mol·L-1 Se和0.5 mol·L-1 Na2S制备的阴离子前驱体、0.5 mol·L-1 Cd2+和 0.3 mol·L-1 Mn2+阳离子前驱体, 通过SILAR法制备的Mn-CdSSe2/TiO2光阳极, 能量转换效率比CdSSe2/TiO2和CdS/TiO2光阳极分别提高了90%和247%。  相似文献   

5.
利用水热法制备一维TiO2纳米棒阵列,并采用化学浴沉积法(CBD)结合自组装技术在TiO2纳米棒上敏化Bi2S3量子点,形成TiO2/Bi2S3复合纳米棒阵列。系统研究了复合结构的表面形貌、晶体结构、光学及光电性能。结果表明:在修饰有三氨丙基三乙氧基硅烷自组装单分子膜(APTS-SAMs)的TiO2纳米棒表面形成一层致密的Bi2S3量子点敏化层,这一技术的关键是含-NH2末端的APTS-SAMs可有效促进Bi2S3的异相成核作用;Bi2S3的沉积时间对复合结构的光吸收及光电响应性能有决定性的影响,薄膜的光电流随着沉积时间呈先增加后减小的趋势,在沉积时间为20min时,光电流密度最大。这是因为随着沉积时间的增加,TiO2纳米棒表面Bi2S3量子点密度增大,光吸收增加;而当沉积时间进一步延长时,Bi2S3在TiO2纳米棒表面的大量负载而形成堆积和团聚,导致表面缺陷增多,光生电子复合几率增大,从而使光电流密度减小。  相似文献   

6.
在用阳极氧化法制备有序排列TiO2纳米管阵列薄膜的基础上,引入脉冲沉积工艺,成功实现了均匀、弥散分布的Cu2O纳米颗粒修饰改性TiO2纳米管阵列,形成Cu2O/TiO2 纳米管异质结复合材料. 利用场发射扫描电镜(FESEM)、场发射透射电镜(FETEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)和紫外-可见漫反射光谱(UV-Vis DRS)对样品进行表征,重点研究了Cu2O/TiO2 纳米管异质结的光电化学特性和对甲基橙(MO)的可见光催化降解性能. 结果表明,Cu2O纳米颗粒均匀附着在TiO2纳米管阵列的管口和中部位置,所制备的Cu2O/TiO2 纳米管异质结具有高效的可见光光催化性能;在浓度为0.01 mol·L-1的CuSO4溶液中制得的Cu2O/TiO2纳米管异质结表现出最好的电化学特性和光催化性能;另外,对Cu2O纳米颗粒影响光催化活性的机理进行了讨论.  相似文献   

7.
为获得良好光电化学性能的TiO2半导体复合膜,采用Bi2S3和CdSe对TiO2纳米管膜进行共修饰。以阳极氧化法在Ti表面先制备TiO2纳米管膜,再通过恒电流电沉积和连续离子层吸附反应在纳米管表面依次沉积CdSe和Bi2S3,构建了具有级联能带结构的Bi2S3/CdSe共修饰的TiO2纳米管复合膜。结果表明,Bi2S3/CdSe/TiO2纳米管复合膜对可见光吸收显著增强,光电化学性能大幅度提高。白光照射下,复合膜的光电流密度为670 μA·cm-2,达到了纯TiO2纳米管膜的17.6倍。Bi2S3/CdSe/TiO2复合膜作为光阳极可使0.5 mol·L-1 NaCl溶液中的403不锈钢的电位相对于腐蚀电位下降690 mV,显示出良好的光电化学阴极保护效应。  相似文献   

8.
利用水热法制备一维TiO2纳米棒阵列,并采用化学浴沉积法(CBD)结合自组装技术在TiO2纳米棒上敏化Bi2S3量子点,形成TiO2/Bi2S3复合纳米棒阵列.系统研究了复合结构的表面形貌、晶体结构、光学及光电性能.结果表明:在修饰有三氨丙基三乙氧基硅烷自组装单分子膜(APTS-SAMs)的TiO2纳米棒表面形成一层致密的Bi2S3量子点敏化层,这一技术的关键是含-NH2末端的APTS-SAMs可有效促进Bi2S3的异相成核作用;Bi2S3的沉积时间对复合结构的光吸收及光电响应性能有决定性的影响,薄膜的光电流随着沉积时间呈先增加后减小的趋势,在沉积时间为20 min时,光电流密度最大.这是因为随着沉积时间的增加,TiO2纳米棒表面Bi2S3量子点密度增大,光吸收增加;而当沉积时间进一步延长时,Bi2S3在TiO2纳米棒表面的大量负载而形成堆积和团聚,导致表面缺陷增多,光生电子复合几率增大,从而使光电流密度减小.  相似文献   

9.
采用水热法在FTO上制备(001)高活性晶面主导的TiO2纳米片薄膜,利用循环伏安法在TiO2纳米片薄膜上沉积CdSe颗粒,制备了TiO2/CdSe纳米片异质结薄膜。分别在150、250、350、450 ℃,氩气保护气氛中对样品进行退火。利用X射线衍射仪(XRD)、场发射扫描电镜(FESEM)、X射线光电子能谱分析仪(XPS)、紫外-可见(UV-Vis)分光光度计以及电化学工作站对不同温度退火后的TiO2/CdSe纳米片异质结薄膜的微观形貌、晶体结构、光电化学性能进行表征和测试。结果表明:六方相CdSe纳米颗粒均匀包覆在TiO2纳米片表面,直径30 nm左右;随着退火温度的升高CdSe纳米颗粒长大,形成光滑的CdSe薄膜,且晶化程度提高;TiO2纳米片表面的Se元素与Cd元素发生氧化;TiO2/CdSe纳米片异质结薄膜对可见光的吸收光谱发生红移,禁带宽度逐渐减小。光电化学性能测试表明随着退火温度的升高,TiO2/CdSe纳米片异质结薄膜的光电流密度显著提高,开路电压减小,但由于SeO2和CdO的出现,导致填充因子减小,影响光电转换效率的提高。在本实验条件下,TiO2/CdSe纳米片异质结薄膜的最佳退火温度为150 ℃,填充因子为0.77,光电转换效率达到3.12%。  相似文献   

10.
利用阳极氧化法在钛金属基体表面制备一层TiO2纳米管阵列薄膜, 然后通过水热反应在TiO2纳米管上负载CdS纳米粒子, 形成CdS/TiO2纳米管的复合结构。利用SEM、XRD、XPS、UV-Vis等手段对其形貌和结构进行表征。进一步考察了CdS/TiO2纳米管的光电性能和光催化活性, 结果表明, 相比于TiO2纳米管, CdS/TiO2纳米管复合结构在紫外光和可见光下都具有更好的光催化活性及光电性能。  相似文献   

11.
A green and simple method was found to prepare CdS/CdSe co-sensitized photoelectrodes for the quantum dots sensitized solar cells application. All the assembly processes of CdS and CdSe quantum dots (QDs) were carried out in aqueous solution. CdS and CdSe QDs were sequentially assembled onto TiO2-nano-SiO2 hybrid film by two steps. Firstly, CdS QDs were deposited in situ over TiO2-nano-SiO2 hybrid film by the successive ionic layer adsorption and reaction (SILAR) process in water. Secondly, using 3-mercaptopropionic acid (3-MPA) as a linker molecule, the pre-prepared colloidal CdSe QDs (~3.0 nm) dissolved in water was linked onto the TiO2-nano-SiO2 hybrid film by the self-assembled monolayer technique with the mode of dropwise. The mode is simple and advantageous to saving materials and time. The results show that the photovoltaic performance of the cells is enhanced with the increase of SILAR cycles for TiO2-nano-SiO2/CdS photoelectrode. The power conversion efficiency of 2.15 % was achieved using the co-sensitization photoelectrode prepared by using 6 SILAR cycles of CdS plus CdSe (TiO2-nano-SiO2/CdS(6)/CdSe) under the illumination of one sun (AM1.5, 100 mW/cm2).  相似文献   

12.
A label-free photoelectrochemical aptasensor for the sensitive and selective determination of carcinoembryonic antigen was constructed based on a CdS quantum dot sensitized TiO2 nanotube electrode. TiO2 nanotubes with highly ordered structure and more active sites than bulk TiO2 were prepared with an electrochemical anodic oxidation process. The CdS quantum dots were immobilized on the TiO2 nanotubes using poly(diallyldimethylammonium chloride) as a bridge. Due to the energy level match between TiO2 and CdS, the CdS quantum dots/TiO2 nanotubes electrode exhibits excellent photoelectrochemical performance. The large surface area of the electrode also allows for capturing large numbers of aptamers. The fine photoelectrochemical performance and the large surface area of the electrode greatly enhanced the detection sensitivity. Under the optimal conditions, the prepared photoelectrochemical aptasensor presents desirable analytical properties for the determination of carcinoembryonic antigen in the range of 0.05 to 10?ng?mL?1 with a detection limit of 0.014?ng?mL?1. The application of the designed protocol was investigated by analyzing carcinoembryonic antigen in human serum samples with recoveries from 80.0 to 115.0%. This simple and sensitive method provides an alternative tool to standard biochemical assays.  相似文献   

13.
程辉  姚江宏  曹亚安 《物理化学学报》2012,28(11):2632-2640
采用溶胶-凝胶法制备出In 表面修饰的TiO2 (TiO2-Inx%)纳米粒子, x%代表在In 掺杂的TiO2样品中In3+与In3+和Ti4+离子摩尔百分含量. 利用二(四丁基铵)顺式-双(异硫氰基)双(2,2''-联吡啶-4,4''-二羧酸)钌(II)(N719)作为敏化剂, 制备出N719/TiO2/FTO (氟掺杂锡氧化物)和N719/TiO2-Inx%/FTO染料敏化薄膜电极. 光电转换效率实验表明, 在薄膜电极+0.5 mol·L-1 LiI+0.05 mol·L-1 I2的三甲氧基丙腈(MPN)溶液+Pt 光电池体系中,N719/TiO2-Inx%/FTO薄膜电极的光电转换效率均高于N719/TiO2/FTO, 其中N719/TiO2-In0.1%/FTO的光电转换效率比N719/TiO2/FTO提高了20%. 利用X 射线衍射(XRD)、X 射线光电子能谱(XPS)、漫反射吸收光谱(DRS)、荧光(PL)光谱和表面光电流作用谱确定了TiO2-Inx%样品中In3+离子的存在方式和能带结构; 利用表面光电流作用谱研究了N719/TiO2-Inx%/FTO薄膜电极的光致界面电荷转移过程. 结果表明, In3+离子在TiO2表面形成O-In-Cln (n=1, 2)物种, 该物种的表面态能级位于导带下0.3 eV处; 在光电流产生过程中, O-In-Cln (n=1, 2)表面态能级有效地抑制了光生载流子在TiO2-Inx%层的复合, 促进了阳极光电流的增加, 从而导致N719/TiO2-Inx%/FTO薄膜电极的光电转化效率高于N719/TiO2/FTO, 并进一步讨论了光致界面电荷转移的机理.  相似文献   

14.
In this work, TiO2/CdS nanocomposites with co-exposed {101}/[111]-facets (NH4F-TiO2/CdS), {101}/{010} facets (FMA-TiO2/CdS), and {101}/{010}/[111]-facets (HF-TiO2/CdS and Urea-TiO2/CdS) were successfully synthesized through a one-pot solvothermal method by using [Ti4O9]2− colloidal solution containing CdS crystals as the precursor. The crystal structure, morphology, specific surface area, pore size distribution, separation, and recombination of photogenerated electrons/holes of the TiO2/CdS nanocomposites were characterized. The photocatalytic activity and cycling performance of the TiO2/CdS nanocomposites were also investigated. The results showed that as-prepared FMA-TiO2/CdS with co-exposed {101}/{010} facets exhibited the highest photocatalytic activity in the process of photocatalytic degradation of methyl orange (MO), and its degradation efficiency was 88.4%. The rate constants of FMA-TiO2/CdS was 0.0167 min−1, which was 55.7, 4.0, 3.7, 3.5, 3.3, and 1.9 times of No catalyst, CdS, HF-TiO2/CdS, NH4F-TiO2/CdS, CM-TiO2, Urea-TiO2/CdS, respectively. The highest photocatalytic activity of FMA-TiO2/CdS could be attributed to the synergistic effects of the largest surface energy, co-exposed {101}/{010} facets, the lowest photoluminescence intensity, lower charge-transfer resistance, and a higher charge-transfer efficiency.  相似文献   

15.
Decoration of TiO2 nanotube films (TiO2 nanotube arrays (TNAs)) with CdS nanoparticles has been pursued for a broad range of applications that goes from solar cells to biological sensors. In most synthesis methods, the scale-up of devices has been challenging due to the poor contact at the chalcogenide/oxide interface. In this work, we validate the electrochemical/thermal/chemical route as a superior strategy to sensitize TNAs with CdS nanoparticles when compared with conventional methods. The process consisted of (i) electrodeposition of cadmium on TNAs to ensure strong bonding between TiO2 and Cd precursor particles, (ii) air annealing of Cd-decorated TNAs to thermally oxidize cadmium to cadmium oxide, and (iii) total sulfurization of cadmium oxide to obtain CdS in an hexagonal phase matching that of TNAs. X-ray diffraction (XRD), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS) analyses indicated the complete transformation of cadmium precursor particles into CdS and a good surface coverage of the internal/external walls of TNAs. When compared to samples prepared by successive ionic layer adsorption and reaction (SILAR), electrochemical impedance spectroscopy data revealed the improvement of the electrical properties of the TNA matrix due to the sulfurization process and a lower contact resistance at the CdS/TNA interface. These improvements explain the superior photoelectrochemical response of CdS/TNA photoelectrodes obtained by the electrochemical/thermal/chemical route.  相似文献   

16.
金涛  许頔  刁鹏*  项民 《物理化学学报》2012,28(10):2276-2284
采用溶胶-凝胶法制备了TiO2 纳米晶, 并通过浸渍技术在其表面引入了FeO(OH). 采用紫外-可见(UV-Vis)吸收光谱确定了引入FeO(OH)的最佳Fe3+浓度. 通过电化学法在FeO(OH)-TiO2光阳极上沉积了催化水分解制备氧气的钴基催化剂(CoPi), 得到了FeO(OH)-TiO2/CoPi 复合光阳极. 利用透射电镜(TEM), 高分辨透射电镜(HRTEM), X射线衍射(XRD), 扫描电镜(SEM)对TiO2纳米晶, FeO(OH)-TiO2以及FeO(OH)-TiO2/CoPi复合光阳极进行了表征, 采用电化学和光电化学技术研究了中性条件下FeO(OH)-TiO2/CoPi 复合光阳极的光电催化分解水性能. 结果表明, TiO2纳米晶为梭形的锐钛矿, 其表面修饰的FeO(OH)为针铁矿型, 且当前驱体溶液中Fe3+与TiO2的质量比为0.05%时得到的FeO(OH)-TiO2具有最佳的光吸收效果. 形成FeO(OH)-TiO2/CoPi复合光阳极后, 在光照条件下CoPi 电催化分解水制备氧气的过电位显著降低. TiO2表面FeO(OH)的引入增加了光阳极对可见光的吸收能力, 同时光阳极表面沉积的CoPi有效地利用了FeO(OH)-TiO2产生的光生空穴, 将水氧化形成氧气, 从而在光照条件下显著提高了CoPi催化氧化水的效率.  相似文献   

17.
A novel TiO2 nanotube array/CdS nanoparticle/ZnO nanorod (TiO2 NT/CdS/ZnO NR) photocatalyst was constructed which exhibited a wide‐absorption (200–535 nm) response in the UV/Vis region and was applied for the photoelectrocatalytic (PEC) degradation of dye wastewater. This was achieved by chemically assembling CdS into the TiO2 NTs and then constructing a ZnO NR layer on the TiO2 NT/CdS surface. Scanning electron microscopy (SEM) results showed that a new structure had been obtained. The TiO2 NTs looked like many “empty bottles” and the ZnO NR layer served as a big lid. Meanwhile the CdS NPs were encapsulated between them with good protection. After being sensitized by the CdS NPs, the absorption‐band edge of the obtained photocatalyst was obviously red‐shifted to the visible region, and the band gap was reduced from its original 3.20 eV to 2.32 eV. Photoelectric‐property tests indicated that the TiO2 NT/CdS/ZnO NR material maintained a very high PEC activity in both the ultraviolet (UV) and the visible region. The maximum photoelectric conversion efficiencies of TiO2 NT/CdS/ZnO NR were 31.8 and 5.98 % under UV light (365 nm) and visible light (420–800 nm), respectively. In the PEC oxidation, TiO2 NT/CdS/ZnO NR exhibited a higher removal ability for methyl orange (MO) and a high stability. The kinetic constants were 1.77×10?4 s?1 under UV light, which was almost 5.9 and 2.6 times of those on pure TiO2 NTs and TiO2 NT/ZnO NR, and 2.5×10?4 s?1 under visible light, 2.4 times those on TiO2 NT/CdS.  相似文献   

18.
表面活性剂对染料敏化太阳能电池光电性能的提高   总被引:4,自引:2,他引:2  
在硝酸/醋酸(HNO3/HAc)的水溶液中分别加入十二烷基苯磺酸钠(DBS)、十六烷基三甲基溴化铵(CTAB)、吐温20等不同类型的表面活性剂来水解钛酸四正丁酯制得前驱体溶液,通过水热法制备纳晶TiO2,并组装成染料敏化太阳能电池(DSSC)。通过XRD、SEM和UV-Vis对纳晶TiO2薄膜进行表征,并对DSSC进行光电流-光电压(I-V)曲线的测试,研究了不同类型的表面活性剂和不同浓度的CTAB对DSSC光电性能的影响。结果表明:加入阳离子表面活性剂CTAB时提高了DSSC的光电性能,而加入阴离子表面活性剂DBS和非离子表面活性剂吐温20时,DSSC的光电性能反而降低。随着CTAB浓度的增加,电池的光电性能先提高后下降,当cCTAB=0.08 mol·L-1时,DSSC的光电转化效率最高为5.76%,比不添加表面活性剂制备的纳晶TiO2所组装的DSSC的光电转化效率提高了约18%。  相似文献   

19.
Chemically crosslinked polyacrylamide-based hydrogel has been first used as the polymer matrix to prepare quasi-solid-state polysulfide electrolyte for CdS/CdSe co-sensitized solar cells (QDSCs). The room temperature ionic conductivity of the gel electrolyte reaches 0.093 S·cm?1. QDSCs based on this quasi-solid-state electrolyte can present up to 4.0% of light-to-electricity conversion efficiency. Meanwhile, the interfacial recombination at TiO2/electrolyte interface of the cell is also investigated by Electrochemical Impedance Spectroscopy (EIS).  相似文献   

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