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1.
Perovskite-type oxides of the series La1−xAxMn1−yByO3 (A = Sr; B = Fe or Co) were prepared by solution combustion synthesis and characterized by X-ray diffraction, specific surface analysis, transmission electron microscopy and field emission scanning electron microscopy techniques. Their activity towards the combustion of methane was evaluated in a temperature programmed combustion microreactor. The LaMn0.9Fe0.1O3 catalyst was found to provide the best performance. The half-conversion temperature of methane over the LaMn0.9Fe0.1O3 catalyst was 398 °C with a W/F = 0.12 g s/cm3 and a methane feed concentration of 0.4 vol% under oxygen excess. Via temperature programmed oxygen desorption (TPD) analysis as well as catalytic combustion runs, the prevalent activity of the LaMn0.9Fe0.1O3 catalyst could be explained by its higher and increased capability to desorb suprafacial, weakly chemisorbed oxygen species. Further catalyst development allowed to maximise the catalytic activity of this compound by promoting it with CeO2 (1:1 molar ratio) and with 1 wt% Pd. This promoted catalyst was lined on cordierite monoliths in a γ-Al2O3-supported form (catalyst weight percentage: 15 wt%) and then tested in a lab-scale test rig under realistic conditions for compressed natural gas-vehicles' exhaust gas treatment. Half methane conversion was achieved at 340 °C (gas high space velocity = 10 000 h−1), nearly the same but with a fourfold lower amount of the expensive noble metal than that used in commercial 4wt%Pd–γ-Al2O3 catalysts.  相似文献   

2.
Spinel Li1+xMn2-xO4 has been studied extensively as a promising cathode material for lithium rechargeable batteries with high energy density due to the following advantages. (1) it is less expensive; (2) it is less toxic; (3) it is easier to prepare than layered LiCoO2 and LiNiO2. The preparation methods have important and remarkable effects on the electrochemical properties of spinel Li1+xMn2-xO4 cathode material. Li1+,Mn2_x04 powders are typically synthesized by solid state reaction which consists of extensively mechanical mixing and intermitted grinding[1,2]. This treatment is detrimental to the quality of the final product because of the resulting inhomogeneity, irregular morphology, larger particle size with broader particle diameter distribution, and poor control of stoichiometry resulted from lithium loss at high temperature for long time. In order to achieve good efficiency of lithium utilization at high current and high reliability of lithium rechargeable batteries, we developed a new synthesis process which was called as in-situ redox precipitation method[3]. By this method, the Li1+xMn2-xO4 cathode material with good homogeneity, uniform morphology and narrow particle-size distribution as well as excellent electrochemical performance can be easily produced at lower temperature and in a shorter processing time. In this paper, our partial findings were reported.  相似文献   

3.
Nitric oxides (NOx) storage catalyst[1] provides an alternative route for abatement of NO in presence of oxygen by first adsorbing NOx and then desorbing it by temperature swing or pressure swing. YBa2Cu3Oy[2] and Mn-Zr mixed oxides[3] were reported to have large NOx adsorption capacity, but the former suffered from a great amount of coexisting CO2 gases. The author previously reported that high NOx adsorption capacity could be obtained on Ce modified TiO2-pillared montmorillonite without deactivation by CO2[1]. Microemulsion method was reported to be effective to control particle sizes and microstructures of the metal oxides[4]. In this paper, a thermal stable ZrO2 with high surface area was prepared in water-in-oil microemulsion, and NOx adsorption capacity was tested on the above ZrO2 sample after impregnating with manganese nitrate and cerium nitrate.  相似文献   

4.
氦气在科学和工业等领域中都具有不可替代的作用,其主要存在于天然气中。如何高效地从天然气中分离氦气显得至关重要。本文基于密度泛函理论(DFT)方法系统地探究了菱形石墨炔(rhombic-graphyne,R-GY)分离膜对He和其他天然气组分(Ne、Ar、CO_2、N_2和CH_4)的吸附、选择和渗透性能。结果表明,R-GY作为He分离膜可同时满足高选择性和高渗透率的要求。常温下,R-GY薄膜对He/Ne、He/CO_2、He/N_2、He/Ar和He/CH_4的选择性可分别达到2?10~7、3?10~(20)、9?10~(26)、7?10~(37)和5?10~(51),即使在600 K时仍可保持较高水平。此外,由于较低的扩散能垒,He穿透R-GY薄膜的渗透率在常温下可达到10~(-6) mol·m~(-2)·s~(-1)·Pa~(-1),高出工业标准近3个数量级;而其他气体组分在常温下的渗透率仅为10~(-58)-10~(-14) mol·m~(-2)·s~(-1)·Pa~(-1),气体无法渗透R-GY薄膜。  相似文献   

5.
The IR studies on Ru surfaces have revealed important information such as disposition of nitogen[1-3] and adsorption site of H[3-4]. Most of Ru-based catalysts, however, were supported on oxides. In our experiments, Ru was supported on carbon nanotubes and this catalyst has high activity for ammonia synthesis. The experiment was carried out on Nicolet 740 FTIR. The catalyst surface was detected during the processed of temperature-programmed adsorption of N2 and H2) respectively, from 298 K to 773 K. The FTIR spectra of adsorbed H2 and N2 are shown on Fig.l. At 298 K two peaks assigned to adsorbed hydrogen atoms were observed at 2124 and 1564 cm-1. At 673 K, these two peaks shift to 2089 and 1475 cm-1, respectively, and another peak appeared at 1775 cm-1. The peaks at 2124 and 2089 cm-1 can be assigned to the model of H right on top of Ru, and 1564 and 1475 cm-1 may be due to the bridging H. The peak at 1775 cm-1, which can only be observed at high temperature, may be twin-type H. Nitrogen molecularly adsorbed was observed at 1893 cm-1 (298 K) and 1856 cm-1 (673 K) and they can be assigned to liner N2 on top site.  相似文献   

6.
Some paper have reported that catalyt of NiSO4/γAlO3 has a very high oligomerization activity for propene, but the over tri oligomerization selectivity is very low[1].The catalyt of Fe2(SO4)3/γ-Al2O3 has a very high over trioligomerization selectivity, but oligomerization activity was lower then catalysis of NiSO4/γ-Al2O3 for propene and stability of catalysis was not as good as catalysis of NiSO4/γ-Al2O3[2].In this paper the catalysis of Fe(2/3)xNi1-xSO4-P2O5/γ-Al2O3 for propene oligomerization has been systematically studied, the effect of the activation method, the stability and reaction conditions on activity and selectivity were investigated. Fe(2/3)xNi1-xSO4-P2O5/γ-Al2O3 catalysis was preparared by impregnation.The factors affecting catalyst performance for propene oligomerization are as follows.  相似文献   

7.
A novel energetic combustion catalyst, 4-amino-3,S-dinitropyrazole copper salt ([Cu(adnp)2(H2O)2]), was synthesized in a yield of 93.6% for the first time. The single crystal of [Cu(adnp)2(H2O)2] was determined by single crystal X-ray diffraction. It crystallizes in a triclinic system, space group p^-1 with crystal parameters a = 5.541(3) A, b = 7.926(4) A, c = 10.231(5) A,β = 101.372(8)°, V = 398.3(3) A3, Z = 1, μ = 1.467 mm^-1, F(0 0 0) = 243, and Dc = 2.000 g cm^-3. The thermal behavior and non-isothermal decomposition reaction kinetics of [Cu(adnp)2(H2O)2] were studied by means of different heating rate differential scanning calorimetry (DSC). The kinetic equation of major exothermic decomposition reaction for [Cu(adnp)2(H2O)2] was obtained. The entropy of activation (△S≠), enthalpy of activation (△H≠), free energy of activation (△G≠), the self-accelerating decomposition temperature (TSADT) and the critical temperature of thermal explosion (Tb) are 59.42 j mol^-1 K^-1, 169.5 kJ mol^-1, 1141.26 kJ mol ^-1 457.3 K and 468.1 K, respectively.  相似文献   

8.
As a good photocatalyst, TiO2 has a promising prospect in environmental purification[1]. Due to the technical problem for the separation of dispersed TiO2 nanosized catalyst, TiO2 film photocatalyst has become a better choice for TiO2 photocatalyst used in fluid[2]. Because TiO2 thin film photocatalyst has small surface area, the catalytical activity was very low. It was an effective way to use mesoporous TiO2 film with high surface area as photocatalyst. The structure and properties of mesoporous TiO2 film was studied here.  相似文献   

9.
The hydrophobic ionic liquid (IL) 1-propyl-3-methylimidazolium bis[(trifluoromethyl)sulfonyl]imide ([C3mim][NTf2]) was synthesized according to traditional methods. By adding different amounts of diethyl carbonate (DEC) solvent and lithium bis[(trifluoromethyl)sulfonyl]imide ([Li][NTf2]) salt to [C3mim][NTf2] IL, eight solution systems were prepared. First, the thermodynamic properties of the eight solution systems were characterized by differential scanning calorimetry (DSC). The semi-stable temperature of the system gradually disappeared with increasing lithium salt content, but the melting point temperature was not apparent in the experiment. These results indicate that DEC and lithium salts can dissolve in ILs within the tested temperature range. The basic properties of the eight systems, including thermodynamic and dynamic properties, were systematically studied at different temperatures. The variation in the self-diffusion coefficient of lithium ion ([Li]+) as a function of DEC concentration, density changes, viscosity, conductivity, and the viscosity/conductivity activation energy of the eight systems was calculated by the Vogel Fulcher Taman (VFT), Final Vogel Fulcher Taman (FVFT), and Arrhenius equations. The effect of temperature on the properties of the system was studied in detail. Within the temperature range measured herein, the deviation between the fitting equation and experimental value was small. Consequently, these equations were successfully used to calculate the properties of the system at various temperatures. All fitting parameters of the corresponding equations are provided herein. The viscosity for all systems decreased rapidly with increasing temperature, which increased the conductivity. Based on these experiments, the influence of DEC on the system microstructure was discussed in the context of the molecular dynamics simulation results. In particular, the interaction between [Li]+ and [NTf2]-/DEC was examined. In all solution systems, [NTf2]- coordinates to [Li]+ through only the O atom and not the N atom. Radial distribution function (RDF) analysis showed that the interaction between [Li]+ and [NTf2]- weakened with increasing DEC concentration. DEC molecules were observed in the first solvation layer of [Li]+ coordinating to [Li]+ through the carbonyl O atom. Although the interaction between [Li]+ and DEC was weakened, competition between [NTf2]- and DEC in the first solvation layer of [Li]+ was observed by the coordination number analysis of the O atom around [Li]+. Therefore, the introduction of DEC is beneficial for Li+ diffusion, which is consistent with the experimental results.  相似文献   

10.
Mn-V-Ce/TiO_2低温催化还原NO性能研究   总被引:4,自引:1,他引:3  
采用浸渍法制备了NH3选择性催化还原(SCR)NO新型催化剂Mn-V-Ce/TiO2,考察了操作条件对其活性的影响;通过NO、O2、NH3的暂态响应实验分析了在该催化剂上进行SCR反应的机理;对催化剂进行了FT-IR和TG分析,探讨了H2O、SO2对其活性的影响。结果表明,该催化剂具有很好的低温SCR活性,空速5 000 h-1、150℃下的NO转化率达99.2%。170℃下同时通硫、水后的350 min内,活性始终保持在98%;单独通入SO2时,中毒速率较快,但体积分数为8%的H2O对该催化剂的活性没有影响,转化率始终保持在98%以上。该催化剂能应用于不含SO2的燃气锅炉烟气和不含SO2的硝酸尾气等NOx工业废气的低温脱硝。  相似文献   

11.
采用密度泛函理论方法比较了DBT/DBTO2和[BMIM]+[PF6]-/[BMIM]+[BF4]-的相互作用。对最稳定的[BMIM]+[PF6]-、[BMIM]+[PF6]--DBT、[BMIM]+[PF6]--DBTO2、[BMIM]+[BF4]-、[BMIM]+[BF4]--DBT、[BMIM]+[BF4]--DBTO2进行了NBO和AIM分析。结果表明,DBT和[BMIM]+[PF6]-/[BMIM]+[BF4]-中的咪唑环彼此相互平行,NBO和AIM分析表明它们之间发生了π-π相互作用。H1'和H9'形成的F…H氢键有利于π-π堆积作用的形成。DBTO2倾向于趋近C2-H2和甲基基团形成O…H相互作用;DBTO2优先吸附在[BMIM]+[PF6]-/[BMIM]+[BF4]-。在模拟油中,[BMIM]+[PF6]-和[BMIM]+[BF4]-离子液体对DBTO2的萃取能力大于DBT,其原因是可能是DBTO2具有较大的极性和O…H与F…H的氢键作用。  相似文献   

12.
The temperature-dependent structural changes in 1-butyl-3-methylimidazolium tetrafluoride([Bmim]FeCl4)magnetic ionic liquid(MIL)were investigated by using in-situ X-ray absorption fine structure(XAFS)combined with Raman spectroscopy and DFT calculations.XAFS re sults revealed that the coordination number and bond length of Fe-Cl in the anion of[Bmim]FeCl4 MIL decreased with increments in temperature.These results directly reflected the dissociation of tetrahedral structure[FeCl4]^-,and the formation of bridge-chain[Fe2 Cl5]^+,and[FeCl2]^+species in the anion of[Bmim]FeCl4 MIL.These behaviors indicated that[FeCl4]^-dissociation was endothermic,and was promoted by increased temperature.The results obtained through XAFS were in agreement with those obtained through Raman spectroscopy and DFT calculations.  相似文献   

13.
多金属氧酸盐作为一类阴离子簇合物,由于其结构的多样性和尺寸大小的可调变性,在电化学、催化和药学等领域引起了人们的广泛关注.本文制备了多酸Co(C15N6H12)2[PW12O38]·5H2O(Co[PW12O38])修饰碳糊电极并通过电化学阻抗谱、循环伏安法以及差分脉冲伏安法对多巴胺的传感性能进行了研究.对其制备条件和检测条件分别进行了优化.在优化条件下,制备的传感器对多巴胺具有良好的选择性和灵敏度的检测能力.多巴胺的线性响应范围为8.0x10-6 mol·L-1至3x10-5 mol·L-1,灵敏度为0.039 μA·(μmol·L-1)-1,检出限(S/N=3)为5.4 x10-6 mol·L-1. 制备的多酸修饰碳糊电极用于检测多巴胺表现出良好的稳定性和重现性,并且对抗坏血酸、尿酸等常见的干扰物质,具有良好的抗干扰性. 多酸修饰的碳糊电极制备过程简单方便,成本低,传感性能良好,对应用于电化学传感器检测多巴胺具备潜在的应用前景.   相似文献   

14.
在小型固定床实验台上利用半焦及其KMnO4溶液改性样品进行气态Hg0吸附实验。结果表明,在低温时原料半焦对气态Hg0具有良好的吸附性能,升温则使其吸附性能迅速降低;经高锰酸钾溶液浸渍处理后,改性半焦在高温140 ℃时吸附性能明显提高,对浸渍样品在250 ℃进行热处理可使其吸附性能进一步提高。BET结果表明,原料半焦具有较发达的微孔结构,改性处理使微孔比例下降,孔隙结构发达程度降低;XPS测试表明,改性半焦表面的汞主要以氧化态(Hg2+)形式存在,高价锰化合物(KMnO4、K2MnO4、MnO2)是主要的氧化活性物质。  相似文献   

15.
Reaction of potassium 3{5}-(3′,4′-dimethoxyphenyl)pyrazolide with 2-bromopyridine in diglyme at 130°C for 3 days followed by an aqueous quench, affords 1-{pyrid-2-yl}-3-{3′,4′-dimethoxyphenyl}pyrazole (L2) in 69% yield after recrystallization from hot hexanes. Complexation of [Cu(NCMe)4]BF4 by 2 molar equivalents of 1-{pyrid-2-yl}-3-{2′,5′-dimethoxyphenyl}pyrazole (L1) or L2 in MeCN at room temperature, followed by concentration and crystallisation with Et2O, gives [Cu(L)2]BF4 L = L1, L2) in good yields. Treatment of AgBF4 with L1 or L2 in MeNO2 similarly gives [Ag(L)2]BF4 L = L1, L2); reaction of AfBF4 with L2 in MeCN gives a product of stoichiometry [Ag(L2)(NCMe)]BF4. The 1H NMR spectra of the [M(L)2]BF4 complexes show peaks arising from a single coordinated environment. The single crystal X-ray structure of [Cu(L1)2]BF4 shows a tetrahedral complex cation with Cu---N = 2.011(8), 2.036(8), 2.039(8), 2.110(8) Å. The CuI centre is close to tetrahedral, the dihedral angle between the least-squares planes formed by the Cu atom and the N donor atoms of the two ligands being 88.3(3)°. Complexation of hydrated Cu(BF4)2 by L2 in MeCN at room temperature yields [Cu(L2)2](BF4)2. The cyclic voltammograms of the three AgI complexes in MeCN/0.1 M Bu4n NPF6 are suggestive of extensive ligand dissociation in this solvent.  相似文献   

16.
The bis(μ3-ethylidyne) tricobalt cluster [(CpCo)33-CCH3)2] (1b) is protonated by trifluoroacetic acid to give the dicobalt edge-protonated cation [H(CpCo)33-CCH3)2]+ [lb + H]+. Protonation of the μ3-ethylidyne tetracobalt cluster hydride [H(CpCo)43-CCH3)] (3) takes place in two consecutive steps. At low temperature [H2(CpCo)43-CCH3)]+ [3 + H]+ is formed first, and is then slowly converted into [H3(CpCo)43-CCH3)]2+ [3 + 2H]2+ by an excess of acid. As judged by the 1H NMR data and the crystal structure of [3 + X]+[(CF3COO)2X] (X = H or D) the endo hydrogens in [3 + H]+ and [3 + 2H]2+ occupy μ3-(Co3) face capping hydridic positions. The cations [1b + H]+ and [3 + H]+ show hydride fluxionality in solution, which in the case of [3 + H]+ can be frozen out on the NMR timescale at low temperature (ΔG (203 K) = 40.8 kJ/mol). The structure of [3 + X]+ [(CF3COO)2X] (X = H or D) was determined by X-ray crystallography. One of the hydrides/deuterides is located on the crystallographic mirror plane, capping a tricobalt face of the cluster cation. The other endo hydrogen atom is believed to be disordered between the other two μ3-(Co3) sites, which are related by space group symmetry. Deuteronation of 3 shows a strong normal kinetic deuterium isotope effect. From the temperature independence of the 1H NMR spectrum of [3 + 2D]2+ a non-fluxional solution structure can be inferred. In all the systems studied, hydridic (μ2- or μ3-) sites are thermodynamically preferred to possible isomeric agostic CoHC or Co2HC sites for the endo hydrogens. Agostic interactions cannot, however, be ruled out in transient intermediates during the course of the protonations.  相似文献   

17.
采用密度泛函理论(DFT)计算了MgAl-LDHs层板与无机阴离子(F-、Cl-、NO3-、CO32-、SO42-)和有机阴离子(水杨酸根离子([HO(C6H4)COO]-)、苯甲酸根离子([(C6H5)COO]-)、对二甲氨基苯甲酸根离子([p-(CH3)2N(C6H4)COO]-)、十二烷基磺酸根离子[C12H25SO3]-、己烷基磺酸根离子[C6H13SO3]-、丙烷基磺酸根离子[C3H7SO3]-)间的相互作用,获得稳定超分子几何结构及相互作用能。层板主体与客体间存在较强的超分子作用,包括主客体间静电作用和氢键等。主、客体间相互作用能数值大小顺序为CO32- > SO42- > F-> Cl-> NO3-;[p-(CH3)2N(C6H4)COO]-> [(C6H5)COO]-> [HO(C6H4)COO]-和[C12H25SO3]-> [C6H13SO3]- > [C3H7SO3]-。另外,还采用自然键轨道(NBO)计算和分析了LDHs 层板与阴离子间作用机理,从二阶微扰理论计算得到的稳定化能变化趋势与相互作用能数据基本吻合。  相似文献   

18.
Solvent molecules can significantly reduce the heat of detonation and stability of energetic metal-organic framework (EMOF) materials, and the development of solvent-free EMOFs has become an effective strategy to prepare high-energy density materials. In this study, a solvent-free EMOF, [Ag2(DTPZ)]n (1) (N% = 32.58%), was synthesized by reacting a high-energy ligand, 2, 3-di(1H-tetrazol-5-yl)pyrazine (H2DTPZ), with silver ions under hydrothermal conditions, and it was structurally characterized by elemental analysis, infrared spectroscopy, X-ray diffraction, and thermal analysis. In 1, the DTPZ2− ligands that adopted a highly torsional configuration bridged the Ag+ ions in an octadentate coordination mode to form a three-dimensional framework (ρ = 2.812 g∙cm−3). The large steric effect and strong coordination ability of DTPZ2− effectively prevented the solvent molecules from binding with the metal centers or occupying the voids of 1. Moreover, the strong π-π stacking interactions [centroid-centroid distance = 0.34461(1) nm] between the tetrazole rings in different DTPZ2− ligands provided a high thermal stability to the framework (Te = 619.1 K, Tp = 658.7 K). Thermal analysis showed that a one-step rapid weight loss with intense heat release primarily occurred during the decomposition of 1, suggesting potential energetic characteristics. Non-isothermal thermokinetic analyses (based on the Kissinger and Ozawa-Doyle methods) were performed using differential scanning calorimetry to obtain the thermoanalysis kinetic parameters of the thermodecomposition of 1 (Ea = 272.1 kJ·mol−1, Eo = 268.9 kJ·mol−1; lgA =19.67 s−1). The related thermodynamic parameters [enthalpy of activation (ΔH = 266.9 kJ·mol−1), entropy of activation (ΔS = 125.4 J·mol−1·K−1), free energy of activation (ΔG = 188.3 kJ·mol−1)], critical temperature of thermal explosion (Tb = 607.1 K), and self-accelerating decomposition temperature (TSADT = 595.8 K) of the decomposition reaction were also calculated based on the decomposition peak temperature and extrapolated onset temperature when the heating rate approached zero. The results revealed that 1 featured good thermal safety, and its decomposition was a non-spontaneous entropy-driven process. The standard molar enthalpy for the formation of 1 was calculated to be (2165.99 ± 0.81) kJ·mol−1 based on its constant volume combustion energy determined using a precise rotating oxygen bomb calorimeter. Detonation and safety performance tests revealed that 1 was insensitive to impact and friction, and its heat of detonation (10.15 kJ·g−1) was higher than that of common ammonium nitrate explosives, such as octogen (HMX), hexogene (RDX), and 2, 4, 6-trinitrotoluene (TNT), indicating that 1 is a promising high-energy and insensitive material.  相似文献   

19.
采用共沉淀法制备了LaMnAl11O19六铝酸盐催化剂,采用XRD、BET和XPS对样品结构进行了表征,并通过模拟生物质气化气的燃烧实验和NH3单独氧化实验,分别考察了催化燃烧和均相燃烧过程中NH3的转化特性。利用原位漫反射红外光谱(in-situ DRIFT)法在线研究了NH3在催化剂表面的吸附和氧化信息。结果表明,焙烧后催化剂形成磁铅石(MP)结构的六铝酸盐晶体,且具有较大的比表面积,Mn以+2、+3价形式存在晶体中。均相燃烧下模拟气中的NH3在500℃开始反应,随之就有NO生成。催化燃烧工况下NH3氧化曲线和模拟气中NH3的转化曲线相差不大,NH3的起燃温度为310℃,反应后随之就有NO生成,NO在350℃~800℃保持一个较高的浓度。NO2的生成温度较高,并仅在较窄的温度区间内出现,在整个燃烧过程中仅检测到几个10-6的N2O,反应过程中有40%以上的NH3转化成NO。DRIFT结果表明,催化剂作用下NH3的转化遵循 -NH反应机理,即催化剂表面吸附的NH3分解产生 -NH,-NH与氧原子(O)反应生成HNO,再进一步反应生成N2或N2O,或是 -NH直接与氧分子(O2)反应生成NO。  相似文献   

20.
用表面张力法、电导法和稳态荧光法研究了手性Gemini表面活性剂[C12-m-C12] Na2(m=2,4,6)和[C12-T-C12] Na2的表面性能及临界胶束聚集数,并计算胶束形成的热力学参数,用圆二色谱法考察了[C12-2-C12] Na2在不同浓度下的立体构型. 结果表明,手性Gemini表面活性剂的临界胶束浓度(cmc)和临界表面张力γcmc随着连接基链长增加或刚性增强而增大;ΔGm0和ΔHm0为负值,|ΔHm0|比|-TΔSm0|小很多,说明胶束化过程为熵驱动的自发放热过程;随着连接基链长增加或刚性增强,ΔGm0和ΔHm0逐渐增大,ΔSm0和临界胶束聚集数逐渐减小,表明其胶束化能力随之降低;当浓度大于cmc时,手性Gemini表面活性剂可形成手性超分子聚集体.  相似文献   

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