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1.
没食子酸正丁酯为白色或淡褐黄色的结晶粉末,无臭,稍有苦味;难溶于水,易溶于乙醇,是一种油溶性的抗氧化剂,常作为食品稳定剂、感光材料添加剂等[1].没食子酸正丁酯可由没食子酸和正丁醇在硫酸催化下直接合成.硫酸催化活性高,价格低,但对设备腐蚀严重,副反应多,产率低,反应时间长,后处理比较困难.近年来有采用十二烷基苯磺酸、固体超强酸[2,4]等作为替代硫酸的催化剂.固体超强酸的应用研究进展较快,已从单一型向复合型发展.本文在微波辐射下用固体超强酸SO2-4/TiO2/La3+为催化剂由没食子酸与正丁醇合成没食子酸正丁酯,考察了反应条件对产品产率的影响,并对产品进行了IR分析.  相似文献   

2.
没食子酸正丁酯为白色或淡褐黄色的结晶粉末,无臭,稍有苦味;难溶于水,易溶于乙醇,是一种油溶性的抗氧化剂,常作为食品稳定剂、感光材料添加剂等。没食子酸正丁酯可由没食子酸和正丁醇在硫酸催化下直接合成。硫酸催化活性高,价格低,但对设备腐蚀严重,副反应多,产率  相似文献   

3.
稀土固体超强酸催化合成庚酸丁酯   总被引:16,自引:0,他引:16  
庚酸丁酯是无色液体 ,具有生苹果香味。主要用以配制苹果型香精 ,是我国 GB2 760— 86规定允许使用的食用香料 ,也可用于有机合成和用作溶剂。通常它是在硫酸催化下由庚酸和正丁醇酯化反应而得[1] 。硫酸虽然活性高 ,价廉 ,但选择性差 ,产品质量不好 ,设备腐蚀严重 ,同时产生大量废液 ,污染环境。为此 ,本实验选用稀土固体超强酸 SO2 - 4/ Ti O2 / La3+作为催化剂进行庚酸与正丁醇的酯化反应。固体超强酸是比 1 0 0 %的硫酸更强的酸 ,即H0 <-1 1 .94的酸[2 ] 。在某些有机催化反应中 ,固体超强酸显示出非常高的催化活性 ,具有不怕水、耐…  相似文献   

4.
用浓H2SO4-K2Cr2O7改性煤基活性炭催化合成乙酸正丁酯   总被引:2,自引:0,他引:2  
乙酸正丁酯是一种重要的化工原料,也可广泛应用于食品工业、医药工业中作香料、溶剂等。它的传统合成方法是在硫酸催化下,冰乙酸和正丁醇进行酯化制得,但此法有很多公认的缺点[1,2]。近年来人们不断探索新型催化剂来代替硫酸,国内外研究较多的催化剂有无机盐[3,4]、固体酸[5-7]  相似文献   

5.
通过浸渍—焙烧法制备了固体超强酸S_2O_8~(2-)/TiO_2催化剂,并以醋酸和正丁醇为原料合成了乙酸正丁酯.考察了催化剂的焙烧温度、酸/醇比、反应时间等因素对反应的影响.结果表明S_2O_8~(2-)/TiO_2的最佳制备条件为:过硫酸铵浸渍浓度0.5mol/L,焙烧温度500℃,焙烧时间3h,在最佳反应条件下,乙酸正丁酯的酯化率可达97.8%,催化剂重复使用3次后,对醋酸的转化率仍可达90.8%.  相似文献   

6.
复合固体超强酸SO2-4/TiO2-Fe2O3催化合成丁酸异丁酯   总被引:6,自引:0,他引:6  
采用溶胶-凝胶法制备的复合固体超强酸催化剂SO2-4/TiO2-Fe2O3催化合成丁酸异丁酯[1],结果表明物质的量比n(Ti)∶n(Fe)=2∶1时催化剂活性最高,这与文献结果[2]有所不同.  相似文献   

7.
固体超强酸SO4/ZnO-TiO2催化合成柠檬酸三丁酯   总被引:2,自引:0,他引:2  
以固体超强酸SO4/ZnO-TiO2作催化剂,柠檬酸、正丁醇为原料合成了柠檬酸三丁酯(TBC).考察了反应条件对酯化率的影响.结果表明,固体超强酸SO4/ZnO-TiO2是合成柠檬酸三丁酯的良好催化剂,最佳反应条件为:正丁醇和柠檬酸的摩尔比为4.0:1,反应温度130℃-140℃,反应时间2.5h,催化剂用量为柠檬酸质...  相似文献   

8.
固体超强酸因其特殊的晶相结构和表面特性及高比表面积使其具有许多重要的催化特性[1],某些经特殊处理得到的金属氧化物(如ZrO2、TiO2、Fe 2O3等)负载SO24-后可以成为固体超强酸[2]..有关SO24-/ZrO2系列固体超强酸的研究和应用报道较多[3,4a,5].夏勇德等[4b,6]报道用(NH4)2S2O8浸渍无定形Zr(OH)4可制备超强酸性和催化活性比SO24-/ZrO2更强的新型固体超强酸S2O28-/ZrO2.本文在文献方法的基础上,制出新型固体超强酸S2O28-/ZrO2-Al2O3,以乙酸和正丁醇的酯化反应作探针,优选出高活性催化剂并成功地用于催化合成4种缩酮(醛)类化合物.它们经纯化处理后均可作为食用香料.  相似文献   

9.
建立了用钛白粉制备固体超强酸SO42-/TiO2的新方法.考察了超强酸SO42-/TiO2的制备条件对催化邻苯二甲酸酐和正丁醇酯化反应的催化活性的影响.实验表明,以合成的超强酸为催化剂,在160℃反应4h,邻苯二甲酸二丁酯的产率大于99%.  相似文献   

10.
尿囊素(1 脲基间二氮杂茂烷二酮—(2,4),allantoin)是一种两性化合物,可作为医药、化妆品、农业等化工原料中间体。通常用硝酸或过氧化氢氧化乙二醛生成乙醛酸后,再在酸催化下由乙醛酸与尿素缩合而成。但采用浓H2SO4、HNO3等作催化剂,产率偏低(<50%),选择性差,产品质量不好,同时设备腐蚀严重,污染环境。用SO2-4/MxOy型固体超强酸催化剂催化合成尿囊素[2 3],仍有产率偏低等不足之处。我们用La3+掺杂改性SO2-4/TiO2体系,合成了稀土固体超强酸催化剂SO2-4/TiO2 La3+,考察了合成尿囊素缩合反应的催化条件,在最适宜的反应条件下,催化…  相似文献   

11.
The reaction of (R(2)PCH(2)SiMe(2))(2)NM (PNP(R)M; R = Cy; M = Li, Na, MgHal, Ag) with L(2)ReOX(3) [L(2) = (Ph(3)P)(2) or (Ph(3)PO)(Me(2)S); X = Cl, Br] gives (PNP(Cy))ReOX(2) as two isomers, mer,trans and mer,cis. These compounds undergo a double Si migration from N to O at 90 degrees C to form (POP(Cy))ReNX(2) as a mixture of mer,trans and fac,cis isomers. Additional thermolysis effects migration of CH(3) from Si to Re, along with compensating migration of halide from Re to Si. DFT calculations on various structural isomers support the greater thermodynamic stability of the POP/ReN isomer vs PNP/ReO and highlight the influence of the template effect on the reactivities of these species.  相似文献   

12.
13.
A zero-valent [M(Ph(2)PCH(2)CH(2)PPh(2))(2)] moiety (M = Mo, W) generated in situ by dissociation of the N(2) ligands in trans-[M(N(2))(2)(Ph(2)PCH(2)CH(2)PPh(2))(2)] can activate pi-accepting organic molecules including isocyanides and nitriles, which undergo the electrophilic attack caused by a strong pi-donation from a zero-valent metal center. Cleavage of a variety of C-X bonds (X = H, C, N, O, P, halogen) also occurs at their electron-rich sites through oxidative addition to form reactive intermediates, which subsequently degradate to yield smaller molecules either bound to or dissociated from the metal center. The mechanism is substantiated unambiguously by isolation of numerous intermediate stages.  相似文献   

14.
The nucleophilicity of the [Pt(2)S(2)] core in [[Ph(2)P(CH(2))(n)PPh(2)]Pt(mu-S)(2)Pt[Ph(2)P(CH(2))(n)PPh(2)]] (n = 3, dppp (1); n = 2, dppe (2)) metalloligands toward the CH(2)Cl(2) solvent has been thoroughly studied. Complex 1, which has been obtained and characterized by X-ray diffraction, is structurally related to 2 and consists of dinuclear molecules with a hinged [Pt(2)S(2)] central ring. The reaction of 1 and 2 with CH(2)Cl(2) has been followed by means of (31)P, (1)H, and (13)C NMR, electrospray ionization mass spectrometry, and X-ray data. Although both reactions proceed at different rates, the first steps are common and lead to a mixture of the corresponding mononuclear complexes [Pt[Ph(2)P(CH(2))(n)PPh(2)](S(2)CH(2))], n = 3 (7), 2 (8), and [Pt[Ph(2)P(CH(2))(n)PPh(2)]Cl(2)], n = 3 (9), 2 (10). Theoretical calculations give support to the proposed pathway for the disintegration process of the [Pt(2)S(2)] ring. Only in the case of 1, the reaction proceeds further yielding [Pt(2)(dppp)(2)[mu-(SCH(2)SCH(2)S)-S,S']]Cl(2) (11). To confirm the sequence of the reactions leading from 1 and 2 to the final products 9 and 11 or 8 and 10, respectively, complexes 7, 8, and 11 have been synthesized and structurally characterized. Additional experiments have allowed elucidation of the reaction mechanism involved from 7 to 11, and thus, the origin of the CH(2) groups that participate in the expansion of the (SCH(2)S)(2-) ligand in 7 to afford the bridging (SCH(2)SCH(2)S)(2-) ligand in 11 has been established. The X-ray structure of 11 is totally unprecedented and consists of a hinged [(dppp)Pt(mu-S)(2)Pt(dppp)] core capped by a CH(2)SCH(2) fragment.  相似文献   

15.
1 INTRODUCTION The picolinic acid (picH), also called pyridine- 2-carboxylic acid, has a broad spectrum of physio- logical effects on the activity functions of both ani- mal and plant organisms. It is attributed increasing interest due to its ability to …  相似文献   

16.
17.
Huang FQ  Ibers JA 《Inorganic chemistry》2001,40(11):2602-2607
The new compounds K(2)TiCu(2)S(4), Rb(2)TiCu(2)S(4), Rb(2)TiAg(2)S(4), Cs(2)TiAg(2)S(4), and Cs(2)TiCu(2)Se(4) have been synthesized by the reactions of A(2)Q(3) (A = K, Rb, Cs; Q = S, Se) with Ti, M (M = Cu or Ag), and Q at 823 K. The compounds Rb(2)TiCu(2)S(4), Cs(2)TiAg(2)S(4), and Cs(2)TiCu(2)Se(4) are isostructural. They crystallize with two formula units in space group P4(2)/mcm of the tetragonal system in cells of dimensions a = 5.6046(4) A, c = 13.154(1) A for Rb(2)TiCu(2)S(4), a =6.024(1) A, c = 13.566(4) A for Cs(2)TiAg(2)S(4), and a =5.852(2) A, c =14.234(5) A for Cs(2)TiCu(2)Se(4) at 153 K. Their structure is closely related to that of Cs(2)ZrAg(2)Te(4) and comprises [TiM(2)Q(4)(2)(-)] layers, which are separated by alkali metal atoms. The [TiM(2)Q(4)(2)(-)] layer is anti-fluorite-like with both Ti and M atoms tetrahedrally coordinated to Q atoms. Tetrahedral coordination of Ti(4+) is rare in the solid state. On the basis of unit cell and space group determinations, the compounds K(2)TiCu(2)S(4) and Rb(2)TiAg(2)S(4) are isostructural with the above compounds. The band gaps of K(2)TiCu(2)S(4), Rb(2)TiCu(2)S(4), Rb(2)TiAg(2)S(4), and Cs(2)TiAg(2)S(4) are 2.04, 2.19, 2.33, and 2.44 eV, respectively, as derived from optical measurements. From band-structure calculations, the optical absorption for an A(2)TiM(2)Q(4) compound is assigned to a transition from an M d and Q p valence band (HOMO) to a Ti 3d conduction band.  相似文献   

18.
Electrospray ionization of actinyl perchlorate solutions in H2O with 5% by volume of dimethylformamide (DMF) produced the isolatable gas-phase complexes, [AnVIO2(DMF)3(H2O)]2+ and [AnVIO2(DMF)4]2+, where An = U, Np, and Pu. Collision-induced dissociation confirmed the composition of the dipositive coordination complexes, and produced doubly- and singly-charged fragment ions. The fragmentation products reveal differences in underlying chemistries of uranyl, neptunyl, and plutonyl, including the lower stability of Np(VI) and Pu(VI) compared with U(VI).  相似文献   

19.
We report the syntheses of imprinted polymers using iron-oxo-hydroxo clusters as templates. Three new iron clusters, [Fe(6)O(2)(OH)(2)(O(2)CC(Cl)=CH(2))(12)(H(2)O)(2)] (1), [{Fe(O(2)CC(Cl)=CH(2))(OMe)(2)}(10)] (2) and [Fe(6)O(2)(OH)(2)(O(2)C-Ph-(CH)=CH(2))(12)(H(2)O)(2)] (3) have been prepared from commercially-available carboxylic acids. Cluster-imprinted-polymers (CIPs) of 1, 2 and 3 were prepared with ethylene glycol dimethacrylate monomer, and of 1 with methyl methacrylate monomer. The imprinted sites within the CIPs were examined using EXAFS and diffuse reflectance UV/vis spectroscopy, demonstrating that the clusters 1, 2 and 3 were incorporated intact within the polymers. Extraction of the clusters from the CIPs imprinted with 1 and 3 gave new polymers that showed evidence of an imprinting effect.  相似文献   

20.
The reactions of UO(2)(C(2)H(3)O(2))(2).2H(2)O with K(2)TeO(3).H(2)O, Na(2)TeO(3) and TlCl, or Na(2)TeO(3) and Sr(OH)(2).8H(2)O under mild hydrothermal conditions yield K[UO(2)Te(2)O(5)(OH)] (1), Tl(3)[(UO(2))(2)[Te(2)O(5)(OH)](Te(2)O(6))].2H(2)O (2) and beta-Tl(2)[UO(2)(TeO(3))(2)] (3), or Sr(3)[UO(2)(TeO(3))(2)](TeO(3))(2) (4), respectively. The structure of 1 consists of tetragonal bipyramidal U(VI) centers that are bound by terminal oxo groups and tellurite anions. These UO(6) units span between one-dimensional chains of corner-sharing, square pyramidal TeO(4) polyhedra to create two-dimensional layers. Alternating corner-shared oxygen atoms in the tellurium oxide chains are protonated to create short/long bonding patterns. The one-dimensional chains of corner-sharing TeO(4) units found in 1 are also present in 2. However, in 2 there are two distinct chains present, one where alternating corner-shared oxygen atoms are protonated, and one where the chains are unprotonated. The uranyl moieties in 2 are bound by five oxygen atoms from the tellurite chains to create seven-coordinate pentagonal bipyramidal U(VI). The structures of 3 and 4 both contain one-dimensional [UO(2)(TeO(3))(2)](2-) chains constructed from tetragonal bipyramidal U(VI) centers that are bridged by tellurite anions. The chains differ between 3 and 4 in that all of the pyramidal tellurite anions in 3 have the same orientation, whereas the tellurite anions in 4 have opposite orientations on each side of the chain. In 4, there are also additional isolated TeO(3)(2-) anions present. Crystallographic data: 1, orthorhombic, space group Cmcm, a = 7.9993(5) A, b = 8.7416(6) A, c = 11.4413(8) A, Z = 4; 2, orthorhombic, space group Pbam, a = 10.0623(8) A, b = 23.024(2) A, c = 7.9389(6) A, Z = 4; 3, monoclinic, space group P2(1)/n, a = 5.4766(4) A, b = 8.2348(6) A, c = 20.849(3) A, beta = 92.329(1) degrees, Z = 4; 4, monoclinic, space group C2/c, a = 20.546(1) A, b = 5.6571(3) A, c = 13.0979(8) A, beta = 94.416(1) degrees, Z = 4.  相似文献   

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