950 resultados para Calix[4]arene, Calix[8]arene, Selbstorganisation
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Two supramolecular assemblies of p-sulfonato-calix[8]arene were stacked by some infinite 1D 'molecular capsule' chains in which the calixarenes adopt an unprecedented 1,2,3,4-alternate double cone conformation.
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Wide rim tetraurea calix[4]arenes form hydrogen bonded dimeric capsules in apolar solvents in the presence of a suitable guest, which must be included in the cavity. The monomeric and dimeric form are never observed simultaneously under usual conditions. In general the combination of two different alkyl or aryl tetraurea derivatives results in the mixture of two homodimers and a heterodimer, however, only the heterodimeric species is observed in the 1:1 mixture of aryl and tosyl ureas. The (hetero)dimerization of oligourea calix[4]arenes (units) was used to construct larger structures via self-assembly of multiple calixarenes (building blocks) containing two (or more) covalently connected units. Among these self-assembled structures linear or branched polymers, cyclic oligomers and well-organized dendrimers were envisaged. The synthesis of the building blocks requires the preparation of calix[4]arene units possessing one (or more) functional group at the narrow or wide rim. Finally the oligourea units were covalently connected either directly or via suitable spacers within appropriate building blocks using amide bonds. Self-assembly properties of such building blocks were investigated.
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Química
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Thallium cation complexation by calix[4]tubes has been investigated by a combination of (TI)-T-205, H-1 NMR and ES MS demonstrating the solution formation of a dithallium complex in which the cations are held in the calix[4]arene cavities. In addition, the structure of the complex has been determined in the solid state revealing the cations to be held exclusively by pi-cation interactions. Furthermore, this crystal structure has been used as the basis for molecular dynamics simulations to confirm that binding of the smaller K+ cation in the calix[4]tube cryptand like array occurs via the axial route featuring a g-cation intermediate.
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A new class of ionophore consisting of two calix[4]arene units linked through the lower rim by two ethylene chains, in combination with propyl ether and phenolic functional groups, has been developed. These calix[4]semitube molecules exhibit remarkable selectivity and fast complexation kinetics for potassium over all Group 1 metal cations. Molecular modelling studies, using structural models derived from crystallographic data, suggest the potassium cation is complexed by a horizontal, side-on route and not through the calix[4]arene annulus. The length of the bridging alkylene chain between the respective calix[4]arenes of the semitube structure dictates the strength and selectivity of alkali metal cation binding.
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Calix[4]arenes fixed in the 1,3-alternate conformation offer an interesting platform for the attachment of further functionalities which has been less frequently used than the cone conformer. Several synthetic strategies were developed to attach four amino functions to the narrow rim, to the wide rim and to both rims of the calix[4]arene fixed in the 1,3-alternate conformation. Using different precursor groups (nitrile/phthalimide or nitro/phthalimide) which can be independently converted into amino functions opens the possibility to attach further groups selectively to the amino functions. Here the groups which is newly attached will determine the reaction sequence.
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A calix[4]arene was designed to reversibly dimerize and form an egg-shaped enclosure. Adhesive interactions in the assembly were provided by four self-associating ureas, which form a cyclic array containing 16 hydrogen bonds. The synthesis was completed in four steps from the previously described O,O',O",O"'-tetrabenzylcalix[4]arene. Evidence for dimerization of the calixarene tetraurea was provided by H NMR, mass spectrometry, and the observation of encapsulated molecules. The resulting cavity was of sufficient size to capture guests such as ethyl benzene and p-xylene.
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本论文依据主客体作用原理,从分子工程出发,主要利用各式杯芳烃主体与不同客体分子和金属离子进行组装,研究这类超分子的合成条件及规律,探讨主客体之间的相互影响及其自组装原理。 在第二章中,首先研究了银氨离子可诱导杯[4]芳烃(L1)形成超分子胶囊,接下来的工作中,我们对杯[4]芳烃进行修饰,合成了两种杯芳烃羧酸配体25, 26, 27, 28-tetrakis(carboxy methoxy)-calix[4]arene (L2) 和25, 26, 27, 28-tetrakis(carboxy methoxy)-p-t-butylcalix[4]arene (L3);并分别以六次甲基四胺和三苯基膦为中性配体,构筑了一个由胶囊构筑的三维网络结构和一个四核银的簇合物。 在第三章中,用六次甲基四胺作为中性配体与银离子和对磺酸杯[4]芳烃进行组装,得到了一个纳米孔材料,在该结构中,银与六次甲基四胺形成的配位多聚体作为模板,诱导对磺酸杯芳烃排列形成孔道。由于模板的作用,拉大了杯芳烃之间的距离。 在第四章中,用pnno (pyrazine-N,N’-dioxide)作为客体分子,在稀土离子存在的情况下与杯芳烃进行超分子组装。不同的实验方法分别得到了由超分子胶囊构筑的三维网络结构和A-B-A 的双层结构。稀土Nd与 5,11,17,23- tetrasulfonato- 25,26,27,28-tetra- ethoxycarbonylmethoxyl-calix[4]arene (L4)组装时,得到了一个由氢键连接的层状化合物。 在第五章中,在水溶液条件下,[M(bpdo)22H2O]2+ (M=Zn, Cu; bpdo=2, 2’- bipyridine-N, N’-dioxide )诱导对磺酸基杯[4]芳烃形成超分子胶囊;并且该胶囊通过电荷辅助的π•••π作用与[M(bpdo)3]2+组装成纳米孔材料,气体吸附的测试表明该纳米孔对甲醇有一定气体吸附能力。当用稀土离子代替金属离子时,形成了类似的超分子胶囊和孔状结构。结果表明稀土孔材料比过渡金属孔材料具有更好的热稳定性。进一步研究通过改变配体bpdo为tpdo (tpdo=terpyridine-1, 1’, 1’-trisoxide)得到了一个层状化合物。 在第六章中,将新型的有机配体与丙基焦杯芳烃或甲基间苯二酚杯芳烃进行自组装得到新奇的杯芳烃超分子结构。这些新型的有机配体含有N-O或C=O 官能团的有机分子4,4'-dipyridyl N, N'-dioxide (L5), tetra-2-pyridinyl-N, N', N", N"'-tetraoxide- pyrazine (L6) and 1, 10-phenanthroline-5, 6-dione (L7)。它们是具有特殊的氢键受体和空间构型的有机分子,由于氢键等弱相互作用在形成超分子结构中的重要作用,三种不同的有机配体与杯芳烃自组装得到了三种不同的杯芳烃超分子结构。
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This paper describes the use of molecular mechanics to model the geometry of the sodium complex of a calix[4] arene tetraester, in the 1,3-alternate conformation 1. Partial charges were assigned to the calixarene on the basis of semi-empirical (AM1, PM3, MNDO, INDO, CNDO and ZINDO) calculations and the binding of the sodium ion to the calixarene was modelled using molecular mechanics. Agreement between the optimised and X-ray structures of the complex was very good. The effect of placing the cation in different starting positions on the energy-minimised geometry of the complex is described.
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The dynamic ligand exchange behavior of cationic arene ruthenium metalla-rectangles of the type [(pcymene) 4Ru4(OOXOO)2(NXN)2]4+ (OOXOO ¼ oxalato, 2,5-dioxydo-1,4-benzoquinonato, 5,8-dioxydo-1,4-naphthoquinonato; NXN ¼ 4,40-bipyridine-H8, 4,40-bipyridine-D8) has been studied in solution. The robustness of the rectangular architecture has been evidenced by NMR and ESI mass spectrometry. Thermodynamic and kinetic aspects of the ligand exchange process have been explored using 1H/2D isotope labeling of the 4,40-bipyridine connectors. This study shows that ligand exchange does not proceed spontaneously for these metalla-assemblies, even at high temperature, unless an external stimulus is applied.
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One inorganic-organic hybrid and two host-guest complexes were synthesized from calix[4] arene tetra acetic ether derivative( C60H80O12, L) and potassium polyoxometalates. The structures of the complexes were characterized with the elemental analysis, IR, TG-DTA and X-crystallographic. X-ray crystallographic studies reveal the formation of an ionic crystal, which contains a calix-cluster and calix-cluster-calix line array, and belongs to a typical inorganic-organic hybrid ( complex 1) or has a host-guest structure ( complex 2 and 3). The results of cyclic voltammograms at different scanning rates showed that the anode peak current of complex 1 was proportional to the square root of the scanning rate and the charge transfer process was controlled by pervasion. The anode peak current of complexes 2 and 3 was proportional to the scanning rate and the charge transfer process was controlled by the surface. The results suggest that there are consanguineous relationship between the anode reaction and the structure.
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Nesta tese, desenvolvida no âmbito do Programa Doutoral em Química da Universidade de Aveiro, foram desenvolvidos novos receptores sintéticos construídos a partir da plataforma macrocíclica tetraazacalix[2]areno[2]triazina ou do fragmento de isoftalamida. Ambas as unidades estruturais foram decora-das com grupos de reconhecimento molecular baseados em grupos amida e/ou ureia com o objectivo de actuarem como receptores selectivos de aniões com importância biológica ou farmacológica, incluindo acetato, oxalato, malo-nato, succinato, glutarato, diglicolato, L- e D-NHBoc-alanina, (S)- e (R)-fenilpro-panoato, (S,S)- e (R,R)-tartarato, fumarato, maleato, Cl-, HCO3-, H2PO4-, HSO4- e SO42-. No Capítulo 1 é efectuada uma revisão bibliográfica dos desenvolvimentos recentes na síntese, caracterização estrutural e aplicações de receptores fun-cionais relacionados com os desenvolvidos no âmbito desta tese, com especial incidência para aqueles que foram estudados como receptores de aniões. Neste domínio, enquanto que receptores derivados da isoftalamida têm sido bastante estudados ao longo das últimas décadas, o desenvolvimento de receptores de aniões inspirados em heteracalix[2]areno[2]triazinas ainda se encontra a dar os primeiros passos. No Capítulo 2 é apresentada a síntese de quatro novos macrociclos derivados de tetraazacalix[2]areno[2]triazina incorporando um ou dois braços de L-alanina (A1, A2) ou de L-leucina (L1, L2) nos anéis benzénicos, e derivados com grupos amida como unidades de reconhecimento. Adicionalmente, são também apresentados dois novos azacalix[2]areno[2]triazinas contendo um (U1) ou dois (U2) braços com grupos ureia substituídos com um grupo (S)-metilbenzílico. Foram ainda preparados os macrociclos A2Me4 e U2Me4 por metilação dos átomos de azoto em ponte de A2 e U2, os quais foram posterior-mente utilizados em estudos de associação. Os compostos sintetizados foram caracterizados através de técnicas espectroscópicas, complementadas por difracção de raios X de cristal único no caso de U2Me4. O Capítulo 3 contempla os estudos de reconhecimento molecular entre os macrociclos A2Me4 e U2Me4 e os aniões derivados de ácidos mono- e dicarbo-xílicos alifáticos, ácidos carboxílicos isoméricos (enantiómeros e isómeros geométricos), aminoácidos e polioxaniões acima referidos, excepto HCO3-. Os estudos de associação foram realizados através de técnicas de titulação por RMN 1H com determinação das respectivas constantes de afinidade. Todas as associações estudadas apresentaram uma estequiometria receptor-substrato 1:1 com excepção das associações formadas entre A2Me4 e U2Me4 com H2PO4- (1:2). Os complexos A2Me4∙SO42- e U2Me4∙(H2PO4-)2 são os mais estáveis com constantes de associação de 7,4 × 104 M-1 e superior a 105 M-2, respectivamente. O reconhecimento dos dicarboxilatos ocorreu através dos dois braços do macrociclo, com os aniões com grupos carboxilato separados por cadeias alifáticas mais compridas (glutarato e diglicolato) apresentando um melhor ajuste aos braços de A2Me4 e U2Me4. Não foi observado reconheci-mento enantiosselectivo de aniões. Em contraste, as constantes de afinidade para as associações com os aniões dos isómeros cis (maleato) e trans (fumarato) do ácido but-2-enodióico, de 89 e 4920 M-1 para A2Me4 e 481 e 4007 M-1 para U2Me4, respectivamente, sugerem selectividade de ambos os receptores para o fumarato. No Capítulo 4 é descrita a síntese de nove receptores acíclicos incorporando a unidade de isoftalamida (Iso-1 a Iso-9) e braços laterais com grupos de reconhecimento de aniões. Enquanto que o receptor Iso-1 possui como unida-des de reconhecimento apenas grupos amida, os receptores Iso-2, Iso-3, Iso-5, Iso-6, Iso-7 e Iso-9 possuem grupos amida e ureia, e os derivados Iso-4 e Iso-8 grupos amida e sulfonilureia. Em cada um destes compostos, os grupos de reconhecimento estão separados por uma cadeia etilénica cuja flexibilidade confere um melhor ajuste com os aniões. Os derivados de isoftalamida preparados foram caracterizados através de técnicas espectroscópicas. No Capítulo 5 são apresentados os estudos de associação realizados por técnicas de titulação por RMN 1H entre Iso-1, Iso-2, Iso-4, Iso-6 e Iso-8 com os aniões H2PO4-, HCO3-, Cl- e oxalato. Os receptores Iso-1, Iso-2 e Iso-6 apresentaram maior afinidade para o dianião, com valores de Kass de 6100, 7800 e 9800 M-1 respectivamente, e menor para Cl- (17 < Kass < 19 M-1). Foram sempre formadas associações mais estáveis com H2PO4- (294 < Kass < 427 M-1) comparativamente a HCO3-, sendo que a associação mais forte com este últi-mo foi determinada com Iso-2 (Kass = 95 M-1). As moléculas de Iso-4 e Iso-8 sofreram desprotonação dos grupos sulfonilureia na presença de todos os aniões excepto de Cl-. No Capítulo 6 apresentam-se as conclusões gerais e no Capítulo 7 descrevem-se os procedimentos experimentais e também os dados espectroscópicos dos produtos obtidos.
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Les sels d’imidazolium ont un rôle important dans certaines protéines et acides nucléiques et ont été utilisés à de nombreuses reprises dans des assemblages supramoléculaires en raison de leurs propriétés uniques. Les sels de diimidazolium dérivés sont toutefois moins connus. Ils ont pour l’instant uniquement été utilisés comme des précurseurs de carbènes N-hétérocycliques. Ils sont donc à la base de plusieurs catalyseurs utilisés pour des réactions de couplage croisés mais leurs propriétés sont toutefois méconnues dans le cadre de la chimie supramoléculaire. Cette classe de composés a nottament attiré notre attention en raison de la facilité de modification de leurs propriétés physico-chimiques par modification de leur structure chimique. L’objectif général des travaux présentés dans cette thèse est l’étude des propriétés supramoléculaires des sels de diimidazolium disubstitués en solution (aqueuse ou organique), ainsi qu’en phase solide ou cristal-liquide. L’influence de l’espaceur entre les deux noyaux imidazolium ainsi que l’influence des substituants latéraux et des contre-ions a été étudiée. Dans un premier temps, les propriétés de complexation des sels de diimidazolium à des macrocycles sont étudiées. Les sels bromure sont étudiés en solution aqueuse avec plusieurs cyclodextrines et le cucurbit[7]uril, et les sels hexafluorophosphate sont étudiés en solution organique pour leur complexation avec l’éther couronne DB24C8 et un calix[4]arène. Cette nouvelle classe de composés a montré de très bonnes propriétés de complexation à ces différents macrocycles en solution et a également permis de contrôler différents assemblages supramoléculaires à l’interface air-eau. Dans un deuxième temps, l’étude des sels de phénylènediimidazolium a permis de modifier les propriétés de complexation en solution pour obtenir la formation de complexes multiples avec le cucurbit[7]util en solution aqueuse. Cette même famille de composés a également permis la formation de cristaux liquides ioniques lorsque les substituants sont des chaînes alkyles plus longues. La résolution de plusieurs structures cristallines de différents sels de diimidazolium a finalement permis de comprendre la nature des interactions intermoléculaires à l’état cristallin. La recherche présentée dans cette thèse a donc permis une étude détaillée des propriétés supramoléculaires des sels de diimidazolium dans tous les états de la matière qui leur sont accessibles.
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Materials used in current technological approaches for the removal of mercury lack selectivity. Given that this is one of the main features of supramolecular chemistry, receptors based on calix[4]arene and calix[4]resorcarene containing functional groups able to interact selectively with polluting ions while discriminating against biologically essential ones were designed. Thus two receptors, a partially functionalized calix[4]arene derivative, namely, 5,11,17,23-tetra-tert-butyl [25-27-bis(diethyl thiophosphate amino)dihydroxy] calix[4]arene (1) and a fully functionalized calix[4]resorcarene, 4,6,10,12,16,18,22,24-diethyl thiophosphate calix[4]resorcarene (2) are introduced. Mercury(II) was the identified target due to the environmental and health problems associated with its presence in water Thus following the synthesis and characterization of 1 and 2 in solution ((1)HNMR) and in the solid state (X-ray crystallography) the sequence of experimental events leading to cation complexation studies in acetonitrile and methanol ((1)H NMR, conductance, potentiometric, and calorimetric measurements) with the aim of assessing their behavior as mercury selective receptors are described. The cation selectivity pattern observed in acetonitrile follows the sequence Hg(II) > Cu(II) > Ag(I). In methanol 1 is also selective for Hg(II) relative to Ag(I) but no interaction takes place between this receptor and Cu(II) in this solvent. Based on previous results and experimental facts shown in this paper, it is concluded that the complexation observed with Cu(II) in acetonitrile occurs through the acetonitrile-receptor adduct rather than through the free ligand. Receptor 2 has an enhanced capacity for uptaking Hg(II) but forms metalate complexes with Cu(II). These studies in solution guided the inmobilization of receptor 1 into a silica support to produce a new and recyclable material for the removal of Hg(II) from water. An assessment on its capacity to extract this cation from water relative to Cu(II) and Ag (I) shows that the cation selectivity pattern of the inmobilized receptor is the same as that observed for the free receptor in methanol. These findings demonstrate that fundamental studies play a critical role in the selection of the receptor to be attached to silicates as well as in the reaction medium used for the synthesis of the new decontaminating agent.
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This thesis was driven by the ambition to create suitable model systems that mimic complex processes in nature, like intramolecular transitions, such as unfolding and refolding of proteins, or intermolecular interactions between different cell compo-nents. Novel biophysical approaches were adopted by employing atomic force mi-croscopy (AFM) as the main measurement technique due to its broad diversity. Thus, high-resolution imaging, adhesion measurements, and single-molecule force distance experiments were performed on the verge of the instrumental capabilities. As first objective, the interaction between plasma membrane and cytoskeleton, me-diated by the linker protein ezrin, was pursued. Therefore, the adsorption process and the lateral organization of ezrin on PIP2 containing solid-supported membranes were characterized and quantified as a fundament for the establishment of a biomimetic model system. As second component of the model system, actin filaments were coated on functionalized colloidal probes attached on cantilevers, serving as sensor elements. The zealous endeavor of creating this complex biomimetic system was rewarded by successful investigation of the activation process of ezrin. As a result, it can be stated that ezrin is activated by solely binding to PIP2 without any further stimulating agents. Additional cofactors may stabilize and prolong the active conformation but are not essentially required for triggering ezrin’s transformation into an active conformation. In the second project, single-molecule force distance experiments were performed on bis-loop tetra-urea calix[4]arene-catenanes with different loading rates (increase in force per second). These macromolecules were specifically designed to investigate the rupture and rejoining mechanism of hydrogen bonds under external load. The entangled loops of capsule-like molecules locked the unbound state of intramolecular hydrogen bonds mechanically, rendering a rebinding observable on the experimental time scale. In conjunction with Molecular Dynamics simulations, a three-well potential of the bond rupture process was established and all kinetically relevant parameters of the experiments were determined by means of Monte Carlo simulations and stochastic modeling. In summary, it can be stated that atomic force microscopy is an invaluable tool to scrutinize relevant processes in nature, such as investigating activation mechanisms in proteins, as shown by analysis of the interaction between F-actin and ezrin, as well as exploring fundamental properties of single hydrogen bonds that are of paramount interest for the complete understanding of complex supramolecular structures.