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1.
电化学合成铜配合物的研究   总被引:3,自引:0,他引:3  
采用金属铜为"牺牲"阳极,首次在无隔膜电解槽中,电化学溶解金属铜一步制备了纳米CuO前体Cu(OEt)2, Cu(OBu)2, Cu(acac)2, Cu(OEt)(acac), Cu(OBu)(acac) (acac为乙酰丙酮基).产物通过红外光谱(FT-IR)、拉曼光谱(Raman spectrum)进行表征.同时讨论了影响电合成铜醇盐及其配合物的关键因素.实验表明,防止阳极钝化,温度控制在30~50 ℃,采用有机胺溴化物为导电盐, 电极电位控制在0.8~1.2 V之间,可以提高电合成效率.实验同时表明Cu(acac)2, Cu(OEt)(acac), Cu(OBu)(acac)可作为制备含铜纳米材料前驱体.  相似文献   

2.
采用金属镍为“牺牲”阳极,首次在无隔膜电解槽中,电化学溶解金属镍一步 制备了纳米NiO前驱体Ni(Oet)2,Ni(Obu)2,Ni(Oet)2(acac)2,Ni(Obu)2(acac)2 [acac为乙酰丙酮基].产物通过红外光谱(FT-IR)、拉曼光谱(Raman spectrum) 进行表征。同时讨论了影响电合成镍醇盐及其配合物的关键因素。实验表明,防止 阳极钝化,温度控制在30-40℃,采用有机胺溴化物为导电盐,可以提高电合成效 率。  相似文献   

3.
电化学方法制备纳米NiO及反应机理初探   总被引:2,自引:0,他引:2  
采用电化学法一步制备了镍醇盐配合物Ni(OEt) 2 (acac) 2 (acac为乙酰丙酮基 ) ,并以其作为前驱体 ,控制一定水解条件制得胶体 ,分别在 4 5 0℃ ,60 0℃煅烧均得到具有立方晶型的纳米NiO粉体 .通过红外光谱 (FT_IR)、核磁共振 (1HNMR)、拉曼光谱 (Ramanspectrum)、X_射线粉末衍射 (XRD)、透射电子显微镜 (TEM)等手段对前驱体和NiO粉体进行了表征 .结果表明 ,电解合成的最佳温度为 30~ 4 0℃ ,不溶性镍醇盐配合物升温到 4 0~ 5 0℃即可溶解 .电解法制备得到的纳米NiO层呈球形单分散结构 ,粒径在 10~ 15nm左右 .本文同时讨论了电合成纳米NiO的反应机理  相似文献   

4.
电合成系列锌配合物及纳米ZnO的制备   总被引:4,自引:0,他引:4  
采用锌金属为“牺牲”阳极,首次在无隔膜电解槽中,电化学一步法制备了纳 米ZnO前驱体锌配合物Zn(OEt)_2, Zn(OBu)_2, Zn(acac)_2, Zn(OEt)_2(acac)_2, Zn(OBu)_2(acac)_2(acac为乙酰丙酮基),产物通过红外光谱(FTIR)、拉曼光谱和 核磁共振进行表征。同时采用含Zn(OEt)_2(acac)_2的电解液直接水解制备纳米 ZnO粉体,纳米ZnO通过拉曼光谱、X射线粉末衍射(XRD)和透射电子显微镜(TEM) 进行表征。实验表明电解时防止阳极钝化,控制温度在50~60 ℃之间,采用有机 胺溴化物为导电盐,可以提高电合成效率;电解合成Zn(acac)_2, Zn(OEt)_2 (acac)_2, Zn(OBu)_2(acac)_2的电流效率比Zn(OEt)_2, Zn(OBu)_2高,其中Zn (OEt)_2(acac)_2适宜作为溶胶-凝胶法制备纳米ZnO的原料,制备得到的纳米ZnO经 600 ℃煅烧后呈球形单分散结构,平均粒径在5~10nm左右。  相似文献   

5.
非水体系中电解镍中间产物制备纳米NiO   总被引:6,自引:0,他引:6  
采用纯镍为阳极,乙酰丙酮和乙醇的混合溶液中加入少量有机胺导电盐为电解液,施加一定电流使镍溶解,然后将电解液直接水解,控制一定的水解条件,制备得到纳米NiO粉体. 采用拉曼光谱、红外光谱、元素分析、XRD 和TEM 分别对电解得到的纳米NiO前驱体和纳米NiO进行了分析与表征, 并探讨了电化学溶解镍金属法制备纳米NiO反应的影响因素.电化学溶解镍金属得到的前驱体为Ni(OEt)2(acac)2,这种不溶性镍醇盐配合物升温至40~50℃即可溶解于乙醇溶液中,可直接应用于溶胶 凝胶(Sol gel)过程.水解后的纳米NiO呈无定形结构, 350 ℃煅烧后形成立方晶型NaCl结构, 纳米NiO经600 ℃煅烧后粒径分布在5~10 nm. 该方法理论上为二价不溶性金属醇盐经溶胶 凝胶工艺制备纳米氧化物材料提供了一条新的途径.  相似文献   

6.
在乙醇溶液中,按Ni/Al电量比为1∶3依次电解铝片和镍片,制得复合氧化物纳米粉体NiO Al2O3的前驱体NiAl2(OCH2CH3)(8-y)(acac)y[acac为乙酰丙酮基].产物通过红外光谱、X射线衍射、电子透射显微镜进行了表征,同时研究了镍电极在铝醇盐溶液中的电化学行为,讨论了影响电合成镍、铝醇盐配合物的关键因素.实验表明,电解温度控制在54~60℃、导电盐Bu4NBr浓度为0.040~0.045mol/L时,电流效率约为93%.水解后的干凝胶粒径在10nm左右,为纳米NiAl2O4粉体的制备创造了条件.  相似文献   

7.
易清风  黄武  于文强  李磊  刘小平 《中国化学》2008,26(8):1367-1372
利用电热法,一步制备出新型的钛基Ni-Sn/Ti电极(Ni8Sn/Ti, Ni7Sn3/Ti 和 Ni/Ti)。扫描电镜(SEM)图像表明,催化剂以片状的纳米颗粒形式沉积于钛基体上。利用电化学伏安技术、电位阶跃法和电化学交流阻抗谱(EIS),研究了这些电极在1mol.L�1NaOH溶液中对甲醇氧化反应的电催化活性。研究表明,与Ni7Sn3/Ti,Ni/Ti以及多晶镍电极相比,Ni8Sn/Ti电极对甲醇氧化反应表现出更高的阳极氧化电流和更低的起始电位。EIS分析表明,在本文所考察的阳极电位和甲醇浓度下,Ni8Sn/Ti电极对甲醇氧化反应显示出极低的电荷传递电阻。结果表明,这种新型的钛基Ni8Sn/Ti电极对甲醇氧化反应具有极高的电催化活性。  相似文献   

8.
文中报道两种新的含茂钛低钛物Cp_2Ti(Cl)-O-[-Ti(Cp)(O_2CCH_4CH-O)-O-]n-H(Ⅰ)与Cp_2Ti(Cl)-O-[-Ti(Cp)(O_2CCH_2CH)-O-]_u-H(Ⅰ)的制备并用元素分析和光谱(IR,1~H NMR,MS)对它们进行了鉴定。  相似文献   

9.
用牺牲金属阳极的电化学方法合成两种新的一价铜配合物Cu(Ⅰ)(dipy)[CH(CN)2]及Cu(Ⅰ)(phen)[CH(CN)2]。利用元素分析,红外光谱,核磁共振确证了配合物的组成,并研究了配合物的结构,荧光光谱和电合成机理。  相似文献   

10.
本文研究了Ti-Si Pentasil型分子筛的结构。红外光谱和拉曼光谱表明,Ti-Si分子筛骨架中存在Ti—O—Si键的振动;顺磁共振谱证实Ti~(4 )处在畸变四面体环境中;X射线光电子能谱进一步验证了该分子筛骨架中钛以钛氧四面体(TiO_4)~(4-)的形式存在;电子探针对分子筛晶体的微区分析结果表明,Ti原子位于分子筛骨架上;X射线衍射测定了Ti-Si Pentasil型分子筛的晶胞参数,将钛含量作为被测函数,与全硅分子筛相比,Ti-Si分子筛的单位晶胞体积是直线上升的,这与分子筛骨架中Ti对Si的取代相一致。  相似文献   

11.
电化学合成金属醇盐的研究   总被引:26,自引:0,他引:26  
纳米材料在生物、电子、能源、化工等各个领域的应用日益广泛 ,已成为当前研究的热点 [1,2 ] ,纳米材料的制备有多种方法 ,其中溶胶 -凝胶 ( Sol- gel) [3 ] 、醇盐热解、化学气相淀积 ( CVD)等方法所使用的前驱体主要为金属醇盐 .传统化学方法合成金属醇盐是用 MXn[X为 Hal,R,H,NR2 ,N( Si Me3 ) 2等 ]与醇进行交换反应 ,过程复杂 ,且原材料不易得到 ,产率低 ,纯度达不到要求 ,后续分离繁琐 ,所以人们一直努力寻找合成金属醇盐的新方法 .有机电解合成一般在常温常压下进行 ,可通过调节电极电位控制电极反应的方向和速度 .据报道 [4] …  相似文献   

12.
电化学溶解钛金属直接水解法制备纳米TiO2   总被引:21,自引:0,他引:21  
Metallic titanium was electrochemically dissoluted in absolute ethanol in the presence of Et4N•Br(as electro conductive additive),The electrolyte solution was then directly hydrolysized to obtain nanocrystalline TiO2.The powder obtained was calcined at 720℃ for 1 h.FT IR,Raman spectra,XRD and TEM were used to investigate the structure and particle size of the powder.Studies showed that the nanocrystalline TiO2 prepared by this method was of monocline structure with high textural stability and narrow size distribution of 10-20 nm,and its Raman spectra showed a shift of about 25 cm-1.The experiments also showed that the product yield could be improved by controlling the temperature under 50-60℃,selecting R4N•Br as conductive additive and preventing titanium anode from being passivated.The electrochemical dissolution of metal anode may be recommanded as a promising technique for the synthesis of nanomaterials.  相似文献   

13.
电化学溶解钛金属直接水解法制备纳米TiO_2   总被引:4,自引:0,他引:4  
纳米材料是目前材料科学的热点 .TiO2作为一种重要的无机功能材料 ,具有温敏、气敏、光催化等功能 ,广泛用于光电材料、涂料、传感器、介电材料、催化剂及载体等重要领域 .由于其各种应用都与粉体的性能有直接关系 ,因此研究纳米 TiO2的制备方法具有重要的实际意义 [1].近年来 ,纳米 TiO2粉体制备方法有了很大的发展 ,如 TiCl4气相水解沉淀法 [2],乳浊液法和 Ti(OC4H9)4水解沉淀法 [1],喷雾热解法 [3],放电爆炸法 [4],反应电极埋弧法 [5],溶胶凝胶 (Sol gel)法 [6]等 ,其中溶胶凝胶法是制备纳米材料的有效方法 .但这些方法存在…  相似文献   

14.
Reaction of the amino-alkoxides HOCH(CH(2)NMe(2))(2) (Hbdmap) and HOC(CH(2)NMe(2))(3) (Htdmap) with [Ti(OR)(4)] yields a series of heteroleptic titanium alkoxides [Ti(OR)(4-n)(L)(n)] (L = bdmap, tdmap). Substitution of the monodentate alkoxide with the chelating alkoxides becomes progressively more difficult, with homogeneous products being obtained only for n = 1, 2. The structure of [Ti(OEt)(3)(bdmap)](2), a mu-OEt bridged dimer, has been determined. Hydrolysis of [Ti(OR)(2)(L)(2)], by adventitious moisture affords the dimeric oxo-alkoxides [Ti(O)(L)(2)](2), both of which have been characterised crystallographically. These two compounds have also been prepared by reaction of [Ti(NMe(2))(2)(L)(2)] with the hydrated metal salts [Zn(acac)(2).2H(2)O] and [Zn(OAc)(2).2H(2)O] using the intrinsic water molecules in these salts to react with the labile amido groups, though the former also produces Me(Me(2)N)C=C(H)C(O)Me from reaction of liberated HNMe(2) with the coordinated acac ligand, while the latter also affords the ligand exchange product [Zn(OAc)(bdmap)]. In neither case does the free dimethylamino group of [Ti(O)(L)(2)](2) coordinate a second metal. The dimeric structure of [Zn(OAc)(bdmap)](2) has been established, and the structure of the tetrameric oxo-alkoxide [Ti(O)(OPr(i))(OCH(2)CH(2)NMe(2))](4) is reported for comparison with others in this study. [Ti(OEt)(3)(bdmap)](2) has been used as a precursor in AACVD (Aerosol-Assisted Chemical Vapour Deposition) to generate amorphous TiO(2) films on glass at 440 degrees C, and TiO(2)@C nanoparticles of approximate diameter 350 nm with a carbon coating of width ca. 75 nm on heating in a sealed container at 700 degrees C.  相似文献   

15.
铅醇盐配合物的电化学合成;电化学; 牺牲阳极;铅醇盐  相似文献   

16.
A series of sterically varied titanium alkoxides [[Ti(OR)(4)](n)(), n = 4, OR = OCH(2)CH(3) (OEt); n = 1, OCH(CH(3))(2) (OPr(i)); n = 2, OCH(2)C(CH(3))(3) (ONep); n = 1, OC(6)H(3)(CH(3))(2)-2,6 (DMP)] were reacted with a series of thallium alkoxides [[Tl(OR)](x) (x = 4, OR = OEt, ONep; n = infinity, DMP)]. The resultant products of the [Tl(mu(3)-OEt)](4)-modified [Ti(OR)(4)](n)() (OR = OEt, OPr(i), ONep) were found by X-ray analysis to be Tl(4)Ti(2)(mu-O)(mu(3)-OEt)(8)(OEt)(2) (1), Tl(4)Ti(2)(mu-O)(mu(3)-OPr(i))(5)(mu(3)-OEt)(3)(OEt)(2) (2), and TlTi(2)(mu(3)-OEt)(2)(mu-OEt)(mu-ONep)(2)(ONep)(4) (3), respectively. The reaction of [Tl(mu(3)-OEt)](4), 12HOEt, and 4[Ti(mu-ONep)ONep)(3)](2) to generate 3 in a higher yield resulted in the isolation of TlTi(2)(mu(3)-OEt)(mu(3)-ONep)(mu-OEt)(mu-ONep)(2)(ONep)(4) (4). Compounds 1 and 2 possess an octahedral (Oh) arrangement of two Ti and four Tl metal atoms around a mu-O central oxide atom (the Tl-O distance is too long to be considered a bond). For both compounds, each Ti atom adopts a distorted Oh geometry with one terminal OEt ligand. The Tl atoms are formally 4-coordinated, adopting a distorted pyramidal geometry using four mu(3)-OR (OR = OEt or OPr(i)) ligands to complete their coordination sphere. The Tl atoms reside approximately 1.4 A below the basal plane of oxygens. In contrast to these structures, both 3 and 4 utilize ONep ligands and display reduced oligomerization yielding trinuclear complexes without oxo formation. The two Ti cations are Oh, and the single Tl cation is in a formal distorted pyramidal (PYD) arrangement. If the lone pair of the Tl cations are considered in the geometry, each Tl adopts a square base pyramidal geometry. Two terminal ONep ligands are bound to each Ti with the remainder of the molecule consisting of mu(3)- and mu-ONep ligands. The reaction of [Tl(mu(3)-ONep)](4) with two equivalents of [Ti(mu-ONep)(ONep)(3)](2) also led to the isolation of the homoleptic trinuclear complex TlTi(2)(mu(3)-ONep)(2)(mu-ONep)(3)(ONep)(4) (5) which is analogous in structure to the mixed ligand species of 3 and 4. Each Ti is Oh coordinated with six ONep ligands, and the single Tl is PYD bound by ONep ligands. A further increase in the steric bulk of the pendant ligands, using [Tl(mu-DMP)](infinity) and [Ti(mu-ONep)(ONep)(3)](2), resulted in a further decrease in the nuclearity yielding the dinuclear species TlTi(mu-DMP)(mu-ONep)(DMP)(ONep)(2) (6). For 6, the two metals are bound by a mu-ONep and a mu-DMP ligand. The Tl metal center was solved in a bent geometry while the Ti adopted a distorted trigonal bipyramidal (TBP) geometry using three ONep and two DMP ligands to fill its coordination sphere. Further increasing the steric bulk of the ancillary ligands using Ti(DMP)(4) and [Tl(mu-DMP)](infinity) led to the formation of [Tl(+)][(-)(eta(2-3)-DMP)Ti(DMP)(4)] (7). The Ti metal center is in a TBP geometry, and the "naked" Tl cation resides unencumbered by solvent molecules but was found to have a strong pi-interaction with four DMP ligands of neighboring Ti(DMP)(5)(-) anions. For this novel set of compounds, (205)Tl NMR spectroscopy was used to investigate the solution behavior of these compounds. Multiple (205)Tl resonances were observed for the solution spectra of the crystalline material of 1-6, and a broad singlet was observed for 7. The large number of minor resonances noted for these compounds was attributed to sensitivity of the Tl cation based on small variations due to ligand rearrangement. However, the major resonance noted in the (205)Tl NMR solution spectra of 1-7 are in agreement with their respective solid-state structures.  相似文献   

17.
Ti表面修饰纳米TiO2膜电极的电催化活性   总被引:33,自引:0,他引:33  
用电化学合成法在Ti表面修饰一层纳米TiO2膜,TEM和XRD测试表明晶型为锐钛矿型,晶粒平均尺寸为25nm.用循环伏安法、循环方波伏安法和电解合成法研究了纳米TiO2膜电极在硫酸介质中的氧化还原行为以及对硝基苯还原的电催化活性。结果表明,纳米TiO2膜电极具有异相氧化还原催化行为,膜中的Ti(Ⅳ)/Ti(Ⅲ)作为媒质间接电还原硝基苯为对氨基苯酚,收率和电流效率分别达91.6%和95.2%.  相似文献   

18.
Nanoscale Sb doped titanium dioxide thin films photocatalyst (Ti1-xSbO2) were obtained from dip-coating sol-gel method. The influence of dopant Sb density on the crystal structure and the phase transformation of the thin films were characterized by X-ray diffraction (XRD) and Raman spectra. The results of XRD showed that as-prepared films were not only in anatase state but also in brookite. The crystalline size was estimated to be around 13.3-20 nm. Raman spectra indicated there coexisted other phases and a transformation from brookite to anatase in the samples doped with 0.2% Sb. After doping a proper amount of Sb, the crystallization rate and the content of the anatase Ti1?xSbO2 in the thin films was clearly enhanced because Sb replaced part of the Ti of TiO2 in the thin films. The anode current density (photocurrent density) and the first order reaction speed constant (k) of thin films doped with 0.2% Sb reached 42.49 1A/cm2 and 0.171 h/cm2 under 254 nm UV illumination, respectively, which is about 11 times and 2 times that of the non-doped TiO2 anode prepared by the same method respectively.  相似文献   

19.
单茂钛化合物Cp′TiL3(Cp′为 η5 环戊二烯基或取代 η5 环戊二烯基 ;L为卤素、氢、烃基、烃氧基等 )和甲基铝氧烷 (MAO)组成的催化剂催化苯乙烯聚合 ,表现出非常高的催化活性和间规立构选择性[1~ 3] .这类催化剂也可用于丙烯、丁烯等α 烯烃聚合 ,合成无规或立构嵌段聚合物[4~ 6] ;但用单茂钛 /MAO催化剂进行乙烯均聚合研究[7] 较少 .本文报道用三甲基铝 (TMA)含量不同的改性MAO(mMAO)作助化催剂激活 1 ,2 ,3,4,5 五甲基茂基三苄氧基钛 [Cp Ti(OBz) 3]催化乙烯均聚合 ,对聚合产物结构性能进行表征 ;发现…  相似文献   

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