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 140 毫秒
1.
有中学化学参考资料题:0.10 mol/L的NH4Cl和(NH4)2SO4溶液哪个pH值高?这似乎是个中学生可做的简单题目,仔细考虑不是如此.如果简单地认为盐酸和硫酸都是强酸,而硫酸是二元酸,硫酸铵溶液中铵盐浓度为0.20 mol/L,那么NH4Cl溶液pH高,那是不妥的.硫酸是二元酸,第一个氢离子能完全电离,第二个氢离子部分电离,如此考虑情况怎么样呢?是不是答案发生变化?这要通过计算来说明.  相似文献   

2.
The conversion efficiencies reported for Tin(Sn)halide-based perovskite solar cells(PSCs)fall a large gap behind those of lead halide-based PSCs,mainly because of poor film quality of the former.Here we report an efficient strategy based on a simple secondary crystallization growth(SCG)technique to improve film quality for tin halide-based PSCs by applying a series of functional amine chlorides on the perovskite surface.They were discovered to enhance the film crystallinity and suppress the oxidation of Sn2+remarkably,hence reduce trap state density and non-irradiative recombination in the absorber films.Furthermore,the SCG film holds the band levels matching better with carrier transport layers and herein favoring charge extraction at the device interfaces.Consequently,a champion device efficiency of 8.07% was achieved alo ng with significant enhancements in VOC and JSC,in contrast to 5.35% of the control device value.Moreover,the SCG film-based devices also exhibit superior stability comparing with the control one.This work explicitly paves a novel and general strategy for developing high performance lead-free PSCs.  相似文献   

3.
Mixed cation and anion based perovskites solar cells exhibited enhanced stability under outdoor conditions,however,it yielded limited power conversion efficiency when TiO2 and Spiro-OMeTAD were employed as electron and hole transport layer(ETL/HTL)respectively.The inevitable interfacial recombination of charge carriers at ETL/perovskite and perovskite/HTL interface diminished the efficiency in planar(n-i-p)perovskite solar cells.By employing computational approach for uni-dimensional device simulator,the effect of band offset on charge recombination at both interfaces was investigated.We noted that it acquired cliff structure when the conduction band minimum of the ETL was lower than that of the perovskite,and thus maximized interfacial recombination.However,if the conduction band minimum of ETL is higher than perovskite,a spike structure is formed,which improve the performance of solar cell.An optimum value of conduction band offset allows to reach performance of 25.21%,with an open circuit voltage(VOC)of 1231 mV,a current density JSC of 24.57 mA/cm2 and a fill factor of 83.28%.Additionally,we found that beyond the optimum offset value,large spike structure could decrease the performance.With an optimized energy level of Spiro-OMeTAD and the thickness of mixed-perovskite layer performance of 26.56% can be attained.Our results demonstrate a detailed understanding about the energy level tuning between the charge selective layers and perovskite and how the improvement in PV performance can be achieved by adjusting the energy level offset.  相似文献   

4.
Carbon nanotubes(CNTs),as one-dimensional nanomaterials,show great potential in energy conversion and storage due to their efficient electrical conductivity and mass transfer.However,the security risks,time-consuming and high cost of the preparation process hinder its further application.Here,we develop that a negative pressure rather than a following gas environment can promote the generation of cobalt and nitrogen co-doped CNTs(Co/N-CNTs) by using cobalt zeolitic imidazolate framework(ZIF-67) as a precursor,in which the negative pressure plays a key role in adjusting the size of cobalt nanoparticles and stimulating the rearragement of carbon atoms for forming CNTs.Importantly,the obtained Co/N-CNTs,with high content of pyridinic nitrogen and abundant graphitized structure,exhibit superior catalytic activity for oxygen reduction reaction(ORR) with half-wave potential(E1/2) of 0.85 V and durability in terms of the minimum current loss(2%) after the 30,000 s test.Our development provides a new pathway for large-scale and cost-effective preparation of metal-doped CNTs for various applications.  相似文献   

5.
Bioimaging,as a powerful and helpful tool,which allows people to investigate deeply within living organisms,has contributed a lot for both clinical theranostics and scientific research.Pure organic room temperature phosphorescence(RTP)materials with the unique features of ultralong luminescence lifetime and large Stokes shift,can efficiently avoid biological autofluorescence and scattered light through a time-resolved imaging modality,and thus are attracting increasing attention.This review classifies pure organic RTP materials into three categories,including small molecule RTP materials,polymer RTP materials and supramolecular RTP materials,and summarizes the recent advances of pure organic RTP materials for bioimaging applications.  相似文献   

6.
The pressing demand for high-energy/power lithium-ion batteries requires the deployment of cathode materials with higher capacity and output voltage.Despite more than ten years of research,high-voltage cathode mate-rials,such as high-voltage layered oxides,spinel LiNi0.5Mn1.5O4,and high-voltage polyanionic compounds still cannot be commercially viable due to the instabilities of standard electrolytes,cathode materials,and cathode electrolyte interphases under high-voltage operation.This paper summarizes the recent advances in addressing the surface and interface issues haunting the application of high-voltage cathode materials.The understanding of the limitations and advantages of different modification protocols will direct the future endeavours on advancing high-energy/power lithium-ion batteries.  相似文献   

7.
A generic coarse-grained bead-and-spring model,mapped onto comb-shaped polycarboxylate-based(PCE)superplasticizers,is developed and studied by Langevin molecular dynamics simulations with implicit solvent and explicit counterions.The agreement on the radius of gyration of the PCEs with experiments shows that our model can be useful in studying the equilibrium sizes of PCEs in solution.The effects of ionic strength,side-chain number,and side-chain length on the conformational behavior of PCEs in solution are explored.Single-chain equilibrium properties,including the radius of gyration,end-to-end distance and persistenee length of the polymer backbone,shape-asphericity parameter,and the mean span dimension,are determined.It is found that with the increase of ionic strength,the equilibrium sizes of the polymers decrease only slightly,and a linear dependenew of the persistence length of backbone on the Debye screening length is found,in good agreement with the theory developed by Dobrynin.Increasing side-chain numbers and/or side-chain lengths increases not only the equilibrium sizes(radius of gyration and mean span)of the polymer as a whole,but also the persistence length of the backbone due to excluded volume interactions.  相似文献   

8.
Suppressing the trap-state density and the energy loss via ternary strategy was demonstrated.Favorable vertical phase distribution with donors(acceptors)accumulated(depleted)at the interface of active layer and charge extraction layer can be obtained by introducing appropriate amount of polymer acceptor N2200 into the systems of PBDB-T:IT-M and PBDB-TF:Y6.In addition,N2200 is gradiently distributed in the vertical direction in the ternary blend film.Various measurements were carried out to study the effects of N2200 on the binary systems.It was found that the optimized morphology especially in vertical direction can significantly decrease the trap state density of the binary blend films,which is beneficial for the charge transport and collection.All these features enable an obvious decrease in charge recombination in both PBDB-T:IT-M and PBDB-TF:Y6 based organic solar cells(OSCs),and power conversion efficiencies(PCEs)of 12.5%and 16.42%were obtained for the ternary OSCs,respectively.This work indicates that it is an effective method to suppress the trap state density and thus improve the device performance through ternary strategy.  相似文献   

9.
Laser-structuring is an effective method to promote ion diffusion and improve the performance of lithium-ion battery(LIB)electrodes.In this work,the effects of laser structuring parameters(groove pitch and depth)on the fundamental characteristics of LIB electrode,such as interfacial area,internal resistances,material loss and electrochemical performance,are investigated,LiNi0.5Co0.2Mn0.3O2 cathodes were structured by a femtosecond laser by varying groove depth and pitch,which resulted in a material loss of 5%-14%and an increase of 140%-260%in the in terfacial area between electrode surface and electrolyte.It is shown that the importance of groove depth and pitch on the electrochemical performance(specific capacity and areal discharge capacity)of laser-structured electrode varies with current rates.Groove pitch is more im porta nt at low current rate but groove depth is at high curre nt rate.From the mapping of lithium concentration within the electrodes of varying groove depth and pitch by laser-induced breakdown spectroscopy,it is verified that the groove functions as a diffusion path for lithium ions.The ionic,electronic,and charge transfer resistances measured with symmetric and half cells showed that these internal resistances are differently affected by laser structuring parameters and the changes in porosity,ionic diffusion and electronic pathways.It is demonstrated that the laser structuring parameters for maximum electrode performance and minimum capacity loss should be determined in consideration of the main operating conditions of LIBs.  相似文献   

10.
In order to balance electrochemical kinetics with loading level for achieving efficient energy storage with high areal capacity and good rate capability simultaneously for wearable electronics,herein,2 D meshlike vertical structures(NiCo_2 S_4@Ni(OH)_2) with a high mass loading of 2.17 mg cm-2 and combined merits of both 1 D nanowires and 2 D nanosheets are designed for fabricating flexible hybrid supercapacitors.Particularly,the seamlessly interconnected NiCo_2 S_4 core not only provides high capacity of 287.5 μAh cm-2 but also functions as conductive skeleton for fast electron transport;Ni(OH)_2 sheath occupying the voids in NiCo_2 S_4 meshes contributes extra capacity of 248.4 μAh cm-2;the holey features guarantee rapid ion diffusion along and across NiCO_2 S_4@Ni(OH)_2 meshes.The resultant flexible electrode exhibits a high areal capacity of 535.9 μAh cm-2(246.9 mAh g-1) at 3 mA cm-2 and outstanding rate performance with 84.7% retention at 30 mA cm-2,suggesting efficient utilization of both NiCo_2 S_4 and Ni(OH)_2 with specific capacities approaching to their theoretical values.The flexible solid-state hybrid device based on NiCo_2 S_4@Ni(OH)_2 cathode and Fe_2 O_3 anode delivers a high energy density of 315 μWh cm-2 at the power density of 2.14 mW cm-2 with excellent electrochemical cycling stability.  相似文献   

11.
TAI (4-hydroxy-6-methyl-1,3,3a,7-tetraazaindene) significantly influences ultra-fine AgBr/I particle growth in aqueous fish gelatin. IR spectrum shows that the NH stretching vibration band of TAI is absent in ultra-fine AgBr/I particle/fish gelatin emulsion, indicating the formation of N-Ag bond and the adsorption to AgBr/I particles. By the analysis of UV adsorption spectrum, it is shown that the amount and percentage coverage of TAI adsorbed to ultra-fine AgBr/I particle is related with the physical ripening process of emulsion. With ripening for 5min, the amount of TAI adsorbed per unit area of AgBr/I particle and percentage coverage of TAI on the particle surface reached maximum, which may be attributed to a suitable space structure of TAI-Ag compounds. As the ripening time was prolonged, the adsorption amount per unit area and percentage coverage of TAI adsorbed on the surface of ultra fine AgBr/I particle showed a tendency to level off on the whole, i.e. 1.3 μmol/m2 and 47%~49%, respectively. By TEM observation, the largest average diameter of ultra-fine AgBr/I particles appeared after physical ripening for 5 min. No significant change of the average diameter and size distribution of the particles was observed when the ripening time was prolonged continuously. In the case of TAI addition, the average diameter and growth rate of ultra-fine AgBr/I particles in aqueous fish gelatin solution was obviously smaller than that without TAI addition, indicating TAI protection for ultra-fine AgBr/I particles in emulsion. Under cooperative action of TAI and fish gelatin, the average diameter and size distribution of ultra-fine AgBr/I particles hold relative stability.  相似文献   

12.
近年来,已有将冠醚化合物用于卤化银感光乳剂中的一些报道[1-4]。为了改善卤化银感光材料的性能,我们将合成的一种新冠醚——N-对甲苯磺酰基-7-氮杂-1,4,10,13-四硫杂环十六烷(NTsTTH)用于卤化银乳剂中,发现它能提高卤化银乳剂的感光度。  相似文献   

13.
本文采用X射线光电子能谱技术研究了两种照相明胶与化学增感剂相互作用的机理.当两种照相明胶样品在HAuCl4溶液中反应5min后,明胶中的蛋氨酸、蛋氨酸亚砜均被氧化为蛋氨酸砜.与此同时,明胶吸附的大部分Au3+被还原为Au+,并且Au+以络合形态存在于明胶之中.根据与AuCl3反应之后明胶中Au3+与Au+的比例,法国明胶的还原性略高于包头明胶.添加到明胶中的Na2S2O3能将明胶大分子所含的蛋氨酸亚砜全部还原为蛋氨酸.S2O32-、蛋氨酸和蛋氨酸砜可以稳定共存于明胶体系之中,外加的S2O32-的还原性高于明胶中蛋氨酸、蛋氨酸亚砜的还原性.添加Na2S2O3后的两种照相明胶均可以将其溶胀吸附的Au3+全部还原为胶态金.此时,参与氧化还原反应的主要基团是S2O32-而非明胶中的蛋氨酸残基.由于Na2S2O3的添加,照相明胶对AuCl3的还原能力增强.  相似文献   

14.
(PdCl2—PVP)/Al2O3催化剂中Pd状态的探讨   总被引:3,自引:0,他引:3  
刘菁  李灿 《分子催化》1992,6(1):32-37
氯化钯先锚定在聚乙烯吡咯烷酮上后进一步负载到Al_2O_3上所制的催化剂[简称(PdCl_2-PVP)/Al_2O_3]是一种活性、选择性高,稳定性好的烯烃、二烯烃和多烯烃加氢催化剂。本文结合加氢反应,使用XPS、FT-IR、电镜及用CO为探针的FT-IR,对这种催化剂进行了考察。实验说明,在这种催化剂中,钯的价态是在0—2之间。红外光谱在486cm~(-1)处有一微弱的小峰,说明存在Pd—N的配位键。催化剂中钯含量低时(0.2wt%)稳定性好,不吸附CO,活性中心是络合钯原子;当钯含量较高时(0.7wt%),催化剂的初活性虽不低,稳定性却较差,这种催化剂能吸附CO,IR谱图上仅在1919cm~(-1)处有CO桥式吸附态的伸缩振动。表明除络合钯原子外,还有聚集的钯金属存在。FT-IR尚表明,PVP在Al_2O_3上可能并非单纯的物理吸附。电镜结果表明,PVP在Al_2O_3上呈30—70(?)的微球状,(PdCl_2-PVP)/Al)_2O_3上的(PdCl_2-PVP)亦呈微球状,与前者无明显区别,这种催化剂中其活性中心是络合钯原子。  相似文献   

15.
使用AgBr晶体作为AgBr乳剂的模型,利用光电导法研究光谱增感的机理及染料的增感性能。采用“蚶埚下降法”重复地制备出了透明度相当好的AgBr晶体,还研究了晶体片的抛光与化学处理过程,这对于光电导实验都是重要的。对几种实用的光谱增感染料进行了光电导实验,实验结果与照相乳剂的光谱响应一致。而且观察到四氯咪碳菁与其它染料相比,光敏化电流有显著的不同。同时还进行了不同电荷染料的组合实验,由实验看到,由于染料吸附的先后次序不同,光电导曲线上峰电流的位置和大小发生了明显地变化,这对于照相乳剂的配制将具有一定的实际指导意义。  相似文献   

16.
细菌吸附还原贵金属离子特性及表征   总被引:10,自引:0,他引:10  
提炼、富集贵金属是细菌固定金属的重要用途.部分细菌还可还原金属离子,如海藻、枯草杆菌等均有较强的吸附、还原AU3+等金属离子的能力[1~3].本文研究了从生态环境中筛选的几种细菌及其吸附、还原Pd2+、Pt4+、Au3+、Ag+、Rh3+等贵金属离子的特性,以期了解细菌固定金属的作用机制,提高细菌的还原能力,并将所得结果用于回收贵金属和制备高分散度贵金属催化剂.1实验部分D01细菌从生态环境中筛选、培养,并按常规微生物法制备大量菌体.所用仪器为SCR20BC高速冷冻离心机,BairdPS-4电感耦合等离子原子发射光谱仪,740SXFTIR光…  相似文献   

17.
分别以鱼明胶和骨明胶(惰胶)作为分散介质制备了两种不同形貌与粒径的纳米AgBr/I粒子乳剂.利用掺入作为正空穴捕获剂的甲酸盐,可以使本征感光度很低的纳米粒子乳剂的感光度有相当大的提高,显示甲酸盐具有很好的增感效果.对鱼明胶介质中制备的纳米AgBr/I粒子乳剂,甲酸盐掺杂方式不同其增感效果不一样.在乳剂颗粒中均匀掺杂增感效果最好,而趋向于近表面掺杂则增感效果降低,显示出甲酸盐掺杂的位置效应.籽晶掺杂后包壳的复合结构乳剂颗粒与均匀掺杂乳剂颗粒的增感效果近似.对鱼明胶介质中制备的掺杂甲酸盐的纳米AgBr/I粒子乳剂再进行硫增感或硫加金增感,乳剂感光度可进一步提高,表明甲酸盐掺杂与常规的硫增感或硫加金增感有很好的协同作用.  相似文献   

18.
硬弹性聚丙烯晶相和非晶相分子链取向的研究   总被引:2,自引:0,他引:2  
本文用力学-振动光谱研究了硬弹性聚丙烯(HEPP)晶区和非晶区分子链在拉伸时取向的变化.我们发现在红外光谱中,1130—1190cm~(-1)波数范围内存在着三个峰,其中1167cm~(-1)处的峰是与结晶相长螺旋分子链相关的构象谱带,其谱带的强弱变化是与998cm~(-1)结晶谱带在拉伸时的变化趋势一致的.1159cm~(-1)谱带能够被归属于无定形谱带.而1152cm~(-1)处的峰也许是与短螺旋分子链构象谱带相关的.我们用计算机的二次微分、解卷积以及分峰程序测定了拉伸时HEPP晶区和非晶区分子链的取向函数,结果发现HEPP无定形分子链取向随拉伸比增加而增加,而晶区分子链的取向随拉伸比的增加先下降,直至拉伸比为1.5(第二次屈服点)后才逐渐增加.  相似文献   

19.
H(Mg,Co)AlPO4—5杂原子分子筛的酸性质测定   总被引:3,自引:0,他引:3  
以红外光谱和程序升温脱附法研究了H(Mg,Co)AlPO_4-5分子筛的酸性,样品红外谱图中的3820和3680cm~(-1)谱峰分别归属于v_(Al—OH)和v_(p—OH),而3660~3568cm~(-1)谱峰则分别归属于HMgAlPO_4-5和HCoAlPO_4-5分子筛的M(OH)P(M=Mg,Co)基团的振动,酸强度顺序为:Co(OH)P>Mg(OH)P>P(OH)>Al(OH),吡啶吸附的红外光谱揭示,H(Mg,Co)AlPO_4-5分子筛具有较高酸强度的B酸和L酸中心。NH_3-TPD表明分子筛的酸强度顺序为H(Co)AlPO_4-5>H(Mg)AlPO_4-5>>AlPO_4-5。  相似文献   

20.
无定型氧化硅转变为α-方石英的振动光谱   总被引:2,自引:1,他引:1  
红外和喇曼光谱是分子结构信息的重要来源,也是研究表面和催化问题的强有力手段,常用来表征活性中心及吸附物种的结构.为提高稳定性,催化剂一般都要经过焙烧处理,在焙烧过程中,载体结构可能会发生变化,有时还会形成一定的晶相.载体结构变化时,一般会伴随振动光谱的变化,因此在利用振动光谱研究催化体系时,弄清载体的振动光谱是十分必要的.二氧化硅是最常用的催化剂载体之一,但它具有比较多的结构形式,除无定型氧化硅中硅氧四面体可连接成不同的结构外,它还具有石英、鳞石英、方石英等多个晶相系列.对氧化硅的不同结构形式,…  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