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Like Molecules

Bfi and 022- However, in the second binary, intermolecular forces between unlike molecules are much stronger than those between like molecules chloroform and ethyl acetate can strongly hydrogen bond with each other but only very weakly with them-... [Pg.31]

In summary, a vast number of materials has been used to fonn LB films. However, in the majority of cases an effort to characterize the film stmcture or even to show that a regular layer stmcture has been achieved is lacking. Work on the stmcture of films of disc-like molecules such as porjDhyrins and phthalocyanines is especially limited. Some references can be found in [29]. [Pg.2618]

Chapter 2 we worked through the two most commonly used quantum mechanical models r performing calculations on ground-state organic -like molecules, the ab initio and semi-ipirical approaches. We also considered some of the properties that can be calculated ing these techniques. In this chapter we will consider various advanced features of the ab Itio approach and also examine the use of density functional methods. Finally, we will amine the important topic of how quantum mechanics can be used to study the solid state. [Pg.128]

W P Walters and M A Murcko 1998. Can We Learn to Distinguish Between Drug-like and indrug-like Molecules Journal of Medicinal Chemistry 41 3314-3324. [Pg.736]

Metallomesogens. It is also possible to synthesize compounds based on metal atoms which possess Hquid crystal phases. The series based on dithiolene complexes (1), where M = Ni, Pd, or Pt, contains a number of compounds which show the Hquid crystal phases typical of rod-like molecules (13,14). [Pg.196]

Evidence soon emerged that the endogenous opioids were peptides rather than simple morphine-like molecules (9). The first direct evidence for endogenous opioids in brain extracts was provided in 1975 when two pentapeptides were purified that differed only in the carboxyl terminal amino acids (10) (Table 1). These peptides were called methionine- (Met-) and leucine- (Leu-) enkephalin, from the Greek term meaning "in the head."... [Pg.444]

Clays have plate-like molecules with charges on their surfaces (Chapter 16). The charges draw water into the clay as a thin lubricating layer between the plates. With the right moisture content, clays are plastie they can be moulded, extruded, turned or carved. But when they are dried, they have sufficient strength to be handled and stacked in kilns for firing. [Pg.201]

Figure 14.1 Each polypeptide chain in the collagen molecule folds into an extended polyproline type II helix with a rise per turn along the helix of 9.6 A comprising 3.3 residues. In the collagen molecule three such chains are supercoiled about a common axis to form a 3000-A-long rod-like molecule. The amino acid sequence contains repeats of -Gly-X-Y- where X is often proline and Y is often hydroxyproline. (a) Ball and stick model of two turns of one polypeptide chain. Figure 14.1 Each polypeptide chain in the collagen molecule folds into an extended polyproline type II helix with a rise per turn along the helix of 9.6 A comprising 3.3 residues. In the collagen molecule three such chains are supercoiled about a common axis to form a 3000-A-long rod-like molecule. The amino acid sequence contains repeats of -Gly-X-Y- where X is often proline and Y is often hydroxyproline. (a) Ball and stick model of two turns of one polypeptide chain.
Wilson, I.A., Bjorkman, P.J. Unusual MHC-like molecules CDl, Pc receptor, the hemochromatosis gene product, and viral homologs. Curr. Opin. Struct. Biol. 10 67-73, 1998. [Pg.321]

The liquid crystal polymers consist of rod-like molecules which, during shear, tend to orient in the direction of shear. Because of the molecular order the molecules flow past each other with comparative ease and the melts have a low viscosity. When the melt is cooled the molecules retain their orientation, giving self-reinforcing materials that are extremely strong in the direction of orientation. [Pg.53]

A chemical will be a solvent for another material if the molecules of the two materials are compatible, i.e. they can co-exist on the molecular scale and there is no tendency to separate. This statement does not indicate the speed at which solution may take place since this will depend on additional considerations such as the molecular size of the potential solvent and the temperature. Molecules of two different species will be able to co-exist if the force of attraction between different molecules is not less than the forces of attraction between two like molecules of either species. If the average force of attraction between dissimilar molecules A and B is and that between similar molecules of type B Fbb and between similar molecules of type A F a then for compatibility Fab - bb and AB - P/KA- This is shown schematically in Figure 5.5 (a). [Pg.80]

In Chapter 3 it was pointed out that certain rod-like polymers showed many of the attributes of liquid crystals in the melt. In particular, these molecules were oriented in shear to such an extent that interchain entanglement was small and the melts had a low viscosity. On cooling of the melt these rod-like molecules remained oriented, effectively self-reinforcing the polymer in the direction of flow. The essential differences in the properties of liquid crystal polymers... [Pg.733]

Fullerene chemistry leading to novel fullerene-like molecules with new chemical groups that are radially attached has become a very active research field, largely because of the uniqueness of the Cgo molecule and the variety of chemical reactions that appear to be possible [30, 31]. Many new fullerene-based molecules have already been synthesized and characterized chemically,... [Pg.38]

It is usual to think that plastics are a relatively recent development but in fact, as part of the larger family called polymers, they are a basic ingredient of animal and plant life. Polymers are different from metals in the sense that their structure consists of very long chain-like molecules. Natural materials such as silk, shellac, bitumen, rubber and cellulose have this type of structure. However, it was not until the 19th century that attempts were made to develop a synthetic... [Pg.1]

The words polymers and plastics are often taken as synonymous but in fact there is a distinction. The polymer is the pure material which results from the process of polymerisation and is usually taken as the family name for materials which have long chain-like molecules (and this includes rubbers). Pure polymers are seldom used on their own and it is when additives are present that the term plastic is applied. Polymers contain additives for a number of reasons. The following list outlines the purpose of the main additives used in plastics. [Pg.3]

In a thermoplastic material the very long chain-like molecules are held together by relatively weak Van der Waals forces. A useful image of the structure is a mass of randomly distributed long strands of sticky wool. When the material is heated the intermolecular forces are weakened so that it becomes soft and flexible and eventually, at high temperatures, it is a viscous melt. [Pg.3]

Conventional rubbers are members of the polymer family in that they consist of long chain-like molecules. These chains are coiled and twisted in a random... [Pg.9]

The total energy of condensation from the ideal gas to the liquid state (the reverse process of vaporization) as a consequence of 1-1 contacts (i.e., intermolecular interactions of component 1 with like molecules) is the product of the energy of condensation per unit volume, the volume of liquid, and the volume fraction of component 1 in the liquid, or... [Pg.413]

The molecules join together to form a long chain-like molecule which may contain many thousands of ethylene units. Such a molecule is referred to as a polymer, in this case polyethylene, whilst in this context ethylene is referred to as a monomer. Styrene, propylene, vinyl chloride, vinyl acetate and methyl methacrylate are other examples of monomers which can polymerise in this way. Sometimes two monomers may be reacted together so that residues of both are to be found in the same chain. Such materials are known as copolymers and are exemplified by ethylene-vinyl acetate copolymers and styrene-acrylonitrile copolymers. [Pg.914]

Strictly speaking, the noble gases are "atomic" rether than molecular. However, like molecules, the noble-gas atoms are attracted to one another by dispersion forces. [Pg.236]


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Cage-like molecules

Carpanone-like molecules

Catenane-like molecules

Collision rate like molecules

Disc-like molecules

Disc-like molecules, discotics

Disk-like mesogenic molecule

Disk-like molecule

Drug-like molecules

Drug-like molecules, generation

Flow Chemistry and Automation in the Synthesis of Drug-Like Molecules

Hydrogen bonds peptide-like molecules

Lath-Like Molecules

Lipid-like molecules

Liquid crystals of disc-like molecules

Liquid crystals of rod-like molecules

Molecular Simulation Methods to Compute Intrinsic Aqueous Solubility of Crystalline Drug-Like Molecules

Molecule wedge-like

Molecules environments likely

Molecules with Disk-Like Mesogens

Molecules with Rod-Like Mesogens

Natural-product-like molecules

Non-drug like molecules

Nondrug-like molecules

Nucleoside-like molecule

Propeller-like Molecules (Several Chirality Axes)

Propeller-like molecules

RET between like molecules. Excitation energy migration in assemblies of chromophores

Reaction between like molecules

Rod-like Molecules and Phenol Formaldehyde Oligomers

Rod-like mesogenic molecule

Rod-like molecule

Rod-like molecules as single substances

Rotation barrier ethane-like molecules

Screw-like molecules

Stilbene-like molecules

Stilbene-like molecules tetrahedral structure

The Molecular Weight and Staudinger Index of Coil-like Molecules

Thermotropic Mesophases Formed by Achiral Rod-Like Molecules

Transferrin-like molecule

Tree-like Shaped Molecules. Starburst Dendrimers, Arborols

Tree-like molecules

Tree-like molecules proteins

Tree-like molecules surface

What Do Molecules Look Like

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