首页> 外文学位 >Size, surface, and compositional tuning of the electronic and photocatalytic properties of II-VI quantum-size semiconductor nanocrystals.
【24h】

Size, surface, and compositional tuning of the electronic and photocatalytic properties of II-VI quantum-size semiconductor nanocrystals.

机译:II-VI量子尺寸半导体纳米晶体的电子和光催化性能的尺寸,表面和组成调整。

获取原文
获取原文并翻译 | 示例

摘要

Phosphatidylcholine vesicles provide reaction compartments for synthesis of size-quantized CdS nanocrystals of dimension predicted to within {dollar}pm{dollar}2 A based on initial encapsulated {dollar}rm CdClsb2{dollar} concentration and vesicle diameter. Vesicle formation by detergent dialysis of phosphatidylcholine/hexylglucoside mixed micelles yields highly monodisperse lipid capsules within which monodisperse CdS nanoparticles are precipitated with sulfide. Size-quantized CdS nanocrystals, with diameters ranging from 20 to 60 A, have been produced with typical standard deviations about the mean diameter of {dollar}pm{dollar}8% as measured by transmission electron microscopy. By including {dollar}rm ZnClsb2{dollar} or {dollar}rm HgClsb2{dollar} in the dialyzate prior to vesicle formation, quantum-sized {dollar}rm Znsb{lcub}y{rcub}Cdsb{lcub}1-y{rcub}S{dollar} or {dollar}rm Hgsb{lcub}y{rcub}Cdsb{lcub}1-y{rcub}S{dollar} nanocrystal alloys with controlled stoichiometry are generated. Spectrophotometric and spectrofluorimetric measurements are consistent with highly crystalline, monodisperse particles with few core or surface defects. The alloyed nanocrystal spectra shift consistently with composition indicating a high degree of compositional control. Measured exciton energies for CdS show excellent agreement with data in the literature. The empirical pseudopotential model presented by Ramakrishna and Friesner for a cubic CdS lattice, correcting for experimentally measured lattice contractions, best fits the data. Size-quantized CdS nanocrystals serve as photocatalysts for nitrate reduction at neutral pH under conditions that mimic illumination by sunlight with overall product quantum yields of up to 4% for {dollar}{lcub}sim{rcub}20{dollar} A, amine-terminated particles. Due to the effects of quantum confinement on electron and hole redox potentials, photocatalyzed nitrate reduction rates depend strongly on the particle size, and the fastest reduction rates are observed with the smallest nanocrystals. Using a Tafel plot and the empirical pseudopotential model to estimate electron redox potentials, the apparent electron transfer coefficient and the apparent standard rate constant is estimated at 0.23 and {dollar}4.0times 10sp{lcub}-12{rcub}{dollar} cm/sec, respectively, for amine-terminated particles. Nitrate adsorption is important in this system and the effect on photoreduction rates is described well by a Langmuir-Hinschelwood expression. Nitrate reduction rates are reduced two-fold or more on negatively charged, carboxy-terminated nanocrystals that electrostatically repel nitrate. Reaction rates are additionally influenced by competetive chloride adsorption and surface charge modification due to solution pH.
机译:磷脂酰胆碱囊泡提供了反应室,用于合成尺寸量子化的CdS纳米晶体,该晶体的尺寸根据初始包封的{rm} CdClsb2 {dollar}的浓度和囊泡直径而预测在{pm} {A}内。通过去污剂透析磷脂酰胆碱/己基葡糖苷混合胶束形成的囊泡产生高度单分散的脂质胶囊,其中单分散的CdS纳米颗粒被硫化物沉淀。已经制备了直径范围为20至60 A的尺寸量化的CdS纳米晶体,其具有通过透射电子显微镜测量的约{pmpm美元dol平均直径的典型标准偏差,为8%。通过在囊泡形成之前在透析液中加入{dol} rm ZnClsb2 {dollar}或{dol} rm HgClsb2 {dollar},量子大小的{dollar} rm Znsb {lcub} y {rcub} Cdsb {lcub} 1-y {产生具有受控化学计量的rcub} S {美元}或{rm} Hgsb {lcub} y {rcub} Cdsb {lcub} 1-y {rcub} S {dollar}纳米晶体合金。分光光度法和荧光分光光度法测量结果与高度结晶的单分散颗粒一致,几乎没有核心或表面缺陷。合金化的纳米晶体光谱与组成一致地移动,表明高度的组成控制。 CdS的激子能量实测值与文献数据非常吻合。 Ramakrishna和Friesner提出的立方CdS晶格的经验伪势模型可以对实验测量的晶格收缩进行校正,最适合该数据。尺寸量化的CdS纳米晶体可在模拟太阳光照射的条件下,在中性pH值下还原硝酸盐时的硝酸盐光催化剂,{dollar} {lcub} sim {rcub} 20 {dollar} A,胺-的总产物量子产率高达4%。终止的粒子。由于量子限制对电子和空穴氧化还原电势的影响,光催化硝酸盐的还原速率在很大程度上取决于粒径,并且在最小的纳米晶体中观察到最快的还原速率。使用塔菲尔图和经验伪势模型来估计电子氧化还原电势,表观电子传递系数和表观标准速率常数估计为0.23和{4.0} 10sp {lcub} -12 {rcub} {dollar} cm /秒分别用于胺封端的颗粒。硝酸盐吸附在该系统中很重要,Langmuir-Hinschelwood表达式很好地描述了对光还原速率的影响。在带负电荷的,羧基排斥的纳米晶体上,硝酸盐的还原速率会降低两倍或更多,而纳米颗粒会静电排斥硝酸盐。反应速率还受竞争性氯化物吸附和由于溶液pH值引起的表面电荷改性的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号