首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 359 毫秒
1.
自从表面增强拉文光谱(SERS)发现以来,人们一直试图将SERS推广到半导体表面上*.叶琳类化合物在生物化学、分析化学和光电催化等方面,有着重要应用问.然而,叶琳在半导体界面上行为的拉曼光谱研究,是一个研究尚少,而有重要意义的课题.本文初步研究了meso一四一时磷酸基苯)叶琳(H。TSPP)和Ag(11)TSPP吸附在均分散Fe。O。胶体上的拉文光谱增强,发现HZTSPP在Fe3O4上发生质子化的现象.1实验meso一四一(对碘酸基苯)叶琳(H。TSPP)和Ag(11)TSPP分别按文献门和*的方法合成并纯化.用三次蒸馏水溶解上述外财…  相似文献   

2.
四-(对-磺酸基)苯基卟啉(TSPP4-)作为超灵敏显色剂和电极修饰材料在光谱分析和电化学分析中有重要应用.它在酸性条件下以质子化二酸H24+TSPP4-的形式存在.七十年代,Pasternack等人曾发现H2+4TSPP4-的电子吸收谱随溶液Ph的改变产生复杂的变化,并推测与H2+4TSPP4-的分子缔合有关[1].近年来,H2+4TSPP4-的分子缔合及其光谱性质重新引起人们的兴趣.基于光谱实验结果[2-6],一些作者认为TSPP在强酸性条件下形成准一维的有序结构,类似于菁染料的J-聚集体(Jelley-Scheibe聚集体)[3-5].目前对H2+4TSPP4-J聚集体形成的原因尚不清楚.本文用UV-Vis吸收光谱考察了H+,Li+,Na+,K+对H2+4TSPP4-J聚集的影响,结果显示上述离子的加入可促进H2+4TSPP4-的J-聚集,其中H+起到的促进作用较强.本文还从静电作用的角度,讨论了聚集体中H2+4TSPP4-分子可能的排列方式,并用分子激子理论分析了聚集体激于带的能量,结果与实验基本符合.  相似文献   

3.
研究了四-(对-磺基苯基)卟啉二酸(H2+4TSPP)的J-聚集体共振喇曼光谱,用氘代法考察了各喇曼谱带的同位素位移.指认3条低波数喇曼带为分子聚集体的晶格模.喇曼光谱退偏比测量表明,聚集体中H2+4TSPP的对称性较分子态降低.比较游离碱H2TSPP和分子态H2+4TSPP共振喇曼光谱讨论了聚集体中H2+4TSPP的结构变化.H2+4TSPP在聚集体中以接近面对面方式排列.  相似文献   

4.
研究了四-(对-磺基苯基)卟啉二酸的J-聚集体共振喇曼光谱,用氘代法考察了各喇曼谱带的同位素位移。指认3条低波数喇曼带为分子聚集体的晶格模,喇曼光谱退偏比测量表明,聚集体中H4^2+TSPP的对称性较分子态降低。H4^2+TSPP在聚集体中以这面对面方式排列。  相似文献   

5.
研究了四-(对-磺基苯基)卟啉二酸(H2+4TSPP)的J-聚集体共振喇曼光谱,用氘代法考察了各喇曼谱带的同位素位移.指认3条低波数喇曼带为分子聚集体的晶格模.喇曼光谱退偏比测量表明,聚集体中H2+4TSPP的对称性较分子态降低.比较游离碱H2TSPP和分子态H2+4TSPP共振喇曼光谱讨论了聚集体中H2+4TSPP的结构变化.H2+4TSPP在聚集体中以接近面对面方式排列  相似文献   

6.
Most of the current analytical methods depend largely on laboratory-based analytical techniques that require expensive and bullky equipment,potentially incur costly testing,and involve lengthy detection processes.With increasing requirements for point-of-care testing(POCT),more attention has been paid to miniaturized analytical devices.Miniaturized electrochemical(MEC)sensors,including different material-based MEC sensors(such as DNA-,paper-,and screen electrode-based),have been in strong demand in analytical science due to their easy operation,portability,high sensitivity,as well as their short analysis time.They have been applied for the detection of trace amounts of target through measuring changes in electrochemical signal,such as current,voltage,potential,or impedance,due to the oxidation/reduction of chemical/biological molecules with the help of electrodes and electrochemical units.MEC sensors present great potential for the detection of targets including small organic molecules,metal ions,and biomolecules.In recent years,MEC sensors have been broadly applied to POCT in various fields,including health care,food safety,and environmental monitoring,owing to the excellent advantages of electrochemical(EC)technologies.This review summarized the state-of-the-art advancements on various types of MEC sensors and their applications in POCT.Furthermore,the future perspectives,opportunities,and challenges in this field are also discussed.  相似文献   

7.
Feng Pan 《结构化学》2020,39(1):7-10
Machine learning is an emerging method to discover new materials with specific characteristics.An unsupervised machine learning research is highlighted to discover new potential lithium ionic conductors by screening and clustering lithium compounds,providing inspirations for the development of solid-state electrolytes and practical batteries.  相似文献   

8.
Designing defect-engineered semiconductor heterojunctions can effectively promote the charge carrier separation.Herein,novel ceria(CeO2) quantum dots(QDs) decorated sulfur-doped carbon nitride nanotubes(SCN NTs) were synthesized via a thermal polycondensation coupled in situ depositionprecipitation method without use of template or surfactant.The structure and morphology studies indicate that ultrafine CeO2 QDs are well distributed inside and outside of SCN NTs offering highly dispersed active sites and a large contact interface between two components.This leads to the promoted formation of rich Ce3+ ion and oxygen vacancies as confirmed by XPS.The photocatalytic performance can be facilely modulated by the content of CeO2 QDs introduced in SCN matrix while bare CeO2 does not show activity of hydrogen production.The optimal catalyst with 10% of CeO2 loading yields a hydrogen evolution rate of 2923.8 μmol h-1 g-1 under visible light,remarkably higher than that of bare SCN and their physical mixtures.Further studies reveal that the abundant surface defects and the created 0 D/1 D junctions play a critical role in improving the separation and transfer of charge carriers,leading to superior solar hydrogen production and good stability.  相似文献   

9.
The demand on low-carbon emission fabrication technologies for energy storage materials is increasing dramatically with the global interest on carbon neutrality.As a promising active material for metal-sulfur batteries,sulfur is of great interest due to its high-energy-density and abundance.However,there is a lack of industry-friendly and low-carbon fabrication strategies for high-performance sulfur-based active particles,which,however,is in critical need by their practical success.Herein,based on a hail-inspired sulfur nano-storm(HSN)technology developed in our lab,we report an energy-saving,solvent-free strategy for producing core-shell sulfur/carbon electrode particles(CNT@AC-S)in minutes.The fabrication of the CNT@AC-S electrode particles only involves low-cost sulfur blocks,commercial carbon nanotubes(CNT)and activated carbon(AC)micro-particles with high specific surface area.Based on the above core-shell CNT@AC-S particles,sulfur cathode with a high sulfur-loading of 9.2 mg cm-2 delivers a stable area capacity of 6.6 mAh cm-2 over 100 cycles.Furthermore,even for sulfur cathode with a super-high sulfur content(72 wt%over the whole electrode),it still delivers a high area capacity of 9 mAh cm-2 over50 cycles in a quasi-lean electrolyte condition.In a nutshell,this study brings a green and industryfriendly fabrication strategy for cost-effective production of rationally designed S-rich electrode particles.  相似文献   

10.
Transition metal selenides have been widely studied as anode materials of sodium ion batteries(SIBs),however,the investigation of solid-electrolyte-interface(SEI)on these materials,which is critical to the electrochemical performance of SIBs,remains at its infancy.Here in this paper,ZnSe@C nanoparticles were prepared from ZIF-8 and the SEI layers on these electrodes with and without reduced graphene oxide(rGO)layers were examined in details by X-ray photoelectron spectroscopies at varied charged/discharged states.It is observed that fast and complicated electrolyte decomposition reactions on ZnSe@C leads to quite thick SEI film and intercalation of solvated sodium ions through such thick SEI film results in slow ion diffusion kinetics and unstable electrode structure.However,the presence of rGO could efficiently suppress the decomposition of electrolyte,thus thin and stable SEI film was formed.ZnSe@C electrodes wrapped by rGO demonstrates enhanced interfacial charge transfer kinetics and high electrochemical performance,a capacity retention of 96.4%,after 1000 cycles at 5 A/g.This study might offer a simple avenue for the designing high performance anode materials through manipulation of SEI film.  相似文献   

11.
La2O3对Ni/γ-Al2O3甲烷化催化剂的助催化作用   总被引:14,自引:0,他引:14  
我国将稀土作为助剂引入镍基甲烷化催化剂,大大提高了催化剂的活性和热稳定性,并已投入工业应用[1-3].稀土对不同镍催化剂反应性能及其作用机理的研究已有一些报导[3-7].谢有畅等观察到镍负载在经单层La2O3改性的γ-Al2O3表面,其晶粒要比没有La2O3时小得多.Rotgerink等认为添加La后反应速率的增加不只是由于几何效应,而是La对甲烷化本身有促进作用,单位镍表面的活性是随La含量不同而改变的,活性增加的同时表观活化能也增加[5].作为助剂的La2O3在氢还原和反应过程中的变化及其作用的研究和讨论较少,目前一般认为添…  相似文献   

12.
采用密度泛函理论(DFT)B3LYP方法,6-311G(d,p)(C,H,O)/LANL2DZ(Ag)基组,计算了黄曲霉素B2(AFB2)分子吸附在Ag2团簇的表面增强拉曼散射(SERS)光谱和预共振拉曼光谱,并与实验结果比较. 结果显示:AFB2分子在基态Ag2团簇表面吸附时,增强因子最大达到102,对应吡喃(pyrane)环C=O伸缩振动,主要是由AFB2分子周围化学环境改变而引起的基态静极化率改变导致的化学增强. 不同激发波长下的AFB2分子预共振拉曼光谱的增强强度不同:电荷转移态激发波长为1144 和544 nm时拉曼信号增强了102倍,而选择电荷转移预共振波长432和410 nm作为入射光时,其拉曼信号增强了104倍,增强机理为银团簇和黄曲霉素分子之间的电荷转移共振增强. 因此通过改变入射光波长,选择电荷转移共振激发波长,更有利于强致癌物AFB2分子的痕量检测.  相似文献   

13.
黄曲霉素B1在银团簇表面吸附的表面增强拉曼光谱   总被引:2,自引:0,他引:2  
采用密度泛函理论(DFT)的B3LYP方法和6-311g(d, p)(C, H, O)/LanL2DZ(Ag)基组, 优化得到黄曲霉素分子AFB1与Ag小团簇形成的复合物AFB1-Agn (n=2, 4, 6)的稳定结构, 并计算了三种复合物的表面增强拉曼光谱(SERS)和预共振拉曼光谱(SERRS), 与实验结果相一致. 计算结果显示: 三种复合物表面增强拉曼光谱中C=O伸缩振动模的增强因子约为102-103, 是由于极化率改变引起的静化学增强. 根据含时密度泛函理论(TDDFT)方法计算得到的吸收光谱, 分别选择407.5、446.2和411.2 nm作为入射光, 计算三种复合物的共振拉曼光谱, 发现在SERRS光谱中, Ag―O伸缩振动的增强因子达到104量级, 主要是由电荷转移产生的共振增强引起的.  相似文献   

14.
合成了两种稀土高氯酸盐与L 脯氨酸配合物的晶体.经热重、差热、化学分析及对比有关文献,知其组成是[Pr2(L Pro)6(H2O)4](ClO4)6和[Er2(L Pro)6(H2O)4](ClO4)6,质量分数为99.24%和98.20%.选用RE(NO3)3•6H2O(RE=Pr,Er)、L Pro、NaClO4•H2O和NaNO3作辅助物,使用具有恒温环境的反应热量计,以2 mol•L-1 HCl作溶剂,分别测定了[2RE(NO3)3•6H2O+6L Pro+6NaClO4•H2O]和{[RE2(L PrO)6(H2O)4](ClO4)6+6NaNO3}在298.15 K时的溶解热.设计一热化学循环求得化学反应的反应焓ΔrHm分别是:63.904 kJ•mol-1和91.017 kJ•mol-1,经计算得配合物[RE2(L Pro)6(H2O)4](ClO4)6(s)在298.15 K时的标准生成焓ΔfHm(298.15 K)分别是-6 594.78 kJ•mol-1和-6 532.87 kJ•mol-1.  相似文献   

15.
用XPS测定了LnCu2O4(Ln=Gd, Nd)的内层和价层电子能谱,观察到LnCu2O4中稀土金属的3d电子结合能比相应的稀土金属简单氧化物的3d结合能低0.8~0.9 eV,而Cu的2p电子结合能比CuO的高0.4~0.5 eV,因此推断在LnCu2O4的Ln-O-Cu链中存在Cu→O→Ln电荷转移.XPS分析还表明LnCu2O4的Cu原子上有较低的电荷密度,但不存在混合价态.此外,通过比较价电子能谱,发现NdCu2O4的Ln 4f Cu 3d O 2p价带中心比GdCu2O4的价带中心向Fermi能级移近了3.4 eV,而且NdCu2O4的价带谱更窄.  相似文献   

16.
ZrO2表面B2O3的分散及其作用状态   总被引:4,自引:0,他引:4  
用XPS、FT IR和FT Raman等技术研究了ZrO2表面B2O3的分散及其作用状态,测定了B2O3在ZrO2表面的分散阈值.结果表明:B2O3在ZrO2表面可以三配位BO3和四配位BO4结构单元存在;载体ZrO2的预焙烧温度和硼含量对B2O3的分散及作用状态有较大影响,并改变BO3与BO4结构单元之间的比例.实验测得B2O3在ZrO2载体上的单层分散阈值为0.05 gB2O3/gZrO2(或B2O3的质量分数w=4.76%),处在此单层中的硼原子以BO4为结构单元直接与ZrO2表面相作用.只有当B2O3的负载量超过此(单层)分散阈值时, BO3结构单元才会形成.  相似文献   

17.
在水-丙酮混合溶剂中合成了未见文献报导的Zn(Thr)Ac2•2H2O固态配合物,通过化学分析、元素分析、IR、XRD和TG-DTG等对其组成、结构及热稳定性进行了研究.用微量热法测定了配合物在298.15 K时在纯水中的溶解焓,计算了Zn(Thr)2+(aq,∞)和Zn(Thr)Ac2•2H2O(s) 的标准摩尔生成焓分别为(955.24±5.70) kJ•mol-1和(-570.92±5.71) kJ•mol-1.  相似文献   

18.
磁性Fe3O4微粒表面有机改性   总被引:23,自引:1,他引:23  
在分散聚合法制备复合磁性微球过程中,采用硅烷偶联剂KH 570对磁性Fe3O4微粒进行表面改性.红外光谱(FTIR)、光电子能谱(XPS)分析结果表明,偶联剂与磁性微粒表面以化学键形式结合.改性后,Fe3O4微粒与单体及其聚合物之间具有良好的亲和性,采用改性后的磁性微粒可以显著改善磁性微球的性能指标.  相似文献   

19.
通过恒电势电沉积和加热处理在泡沫镍基体上制备了Co3O4纳米片. 利用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)等手段对纳米片的形貌和结构进行了表征. 采用线性伏安扫描和计时电流技术研究了Co3O4纳米片电极对H2O2的电还原性能. 结果表明,在3.0 mol/L KOH 和 0.4 mol/L H2O2溶液中,当电压为-0.4 V(vs. Ag/AgCl)时,线性伏安扫描电流密度达到-0.386 A/cm2,在1000 s 测试时间内,计时电流密度衰减很小,表明Co3O4纳米片电极对H2O2具有很高的活性和稳定性.  相似文献   

20.
采用了一种真空辅助沉淀法制备Fe3(PO4)2·8H2O,并以此进一步合成粒径尺寸在400 nm左右LiFePO4颗粒.研究了Fe3(PO4)2·8H2O对于磷酸铁锂的形貌、结构、电化学性能的影响.X射线衍射(XRD)结果表明,真空辅助制备的Fe3(PO4)2·8H2O具有高纯度,以此制备的LiFePO4具有高结晶度和纯度.扫描电子显微镜(SEM)结果表明,真空辅助制备的Fe3(PO4)2·8H2O具有未完全发育的颗粒,以此制备的LiFePO4均匀无硬团聚.透射电子显微镜(TEM)结果显示真空辅助制备的LiFePO4包覆一层均匀的碳.真空制备的LiFePO4显示了优异的电化学性能,在1C、10C、20C倍率下的容量分别为140、113、100 mAh·g-1.真空制备的LiFePO4的循环伏安曲线显示了小的极化电压和尖锐的氧化峰.充放电平台曲线表明真空对LiFePO4高倍率性能起到重要作用.电化学阻抗谱(EIS)计算结果显示,真空和非真空制备的LiFePO4的锂离子扩散系数分别为1.42×10-13和4.22×10-14cm2·s-1,说明真空辅助能够提高LiFePO4的扩散系数.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号