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81.
Noble metal nanoparticles were prepared by the in situ reduction of the respective metal salt precursors in the presence
of various protective polymers. Transmission electron microscopy (TEM) has been used to determine the particle shapes and
morphologies. These are strongly influenced by the reduction methods and conditions chosen, but the choice of the protective
polymer is equally important for controlling the particle morphologies and for the stabilization of the colloids. A whole
spectrum of nanoparticle morphologies and shapes was obtained, ranging from nanoagglomerates which are nevertheless well-defined
and well-stabilized to nanosized single crystals with triangular shape.
Received: 2 February 1998 Accepted: 29 May 1998 相似文献
82.
In seeded emulsion polymerization, during the second stage, new interfaces appear and the surface area changes. A thermodynamic equilibrium approach is presented which predicts particle morphology of a whole range of non-spherical particles upon polymer conversion. Simulation takes into account swelling ratio, molar volumes and interfacial tension. As the particle geometry is complex, a new mathematical procedure is detailed.The computed data are useful to discuss either the stability or the instability of the particles morphology. These results must be compared with actual experimental structures.Abreviations and symbols G
Gibbs' free energy
-
reduced Gibbs' free energy
- i
interfacial tension
- 12
interfacial tension between polymer 1 and polymer 2
- 1w
interfacial tension between polymer 1 and water
- 2w
interfacial tension between polymer 2 and water
-
r
1
polymer 1 swollen by monomer 2 sphere radius
-
r
2
polymer 2 swollen by monomer 2 sphere radius
-
r
i
interfacial radius
-
h
1
sphere 1 distance to minimal section
-
h
2
sphere 2 distance to minimal section
-
h
i
interfacial sphere distance to minimal section
-
sign ofh
i, positive when the interface sphere is on the side of the sphere 2, negative when the interface sphere is on the side of the sphere 1
-
A
12
surface between polymer 1 and polymer 2
-
A
1w
surface between polymer 1 and water
-
A
1w
0
surface between polymer 1 and water before polymerization
-
A
2w
surface between polymer 2 and water
-
v
1
volume of the polymer 1 swollen by monomer 2
-
v
i
volume of the polymer 1 swollen by monomer 2 before polymerization
-
v
2
volume of the polymer 2 swollen by monomer 2
-
V
p1
polymer 1 molar volume
-
V
p2
polymer 2 molar volume
-
V
m2
monomer 2 molar volume
-
n
p2
polymer 2 number of mole
-
n
p1
polymer 1 number of moles
-
n
m21
monomer 2 number of mole in the swollen polymer 1
-
n
m22
monomer 2 number of mole in the swollen polymer 2
-
n
m2
monomer 2 total number of mole
-
n
m2
monomer 2 number of mole before polymerization
-
TGn
1
polymer 1 swelling rate
-
TGn
2
polymer 2 swelling rate
-
TGn
i
maximum number of mole of monomer 2 in polymeri by mole of polymeri
-
x
polymer 2 conversion rate
-
K, p, q
mathematical variables
-
D, r, a
mathematical variables 相似文献
83.
84.
热处理对聚乙烯/炭黑导电复合体系形态结构及PTC特性的影响 总被引:11,自引:3,他引:11
借助WAXD、SAXD和DSC等手段研究了炭黑与聚乙烯复合体系在不同热处理条件下的结晶行为及聚集态结构的大尺寸效应对PTC特性的影响。由此提出,不仅结晶度大小,而且聚集大尺寸效应性能对PTC行性有重要影响的新观点。 相似文献
85.
Block copolymer vesicles can be prepared in solution from a variety of different amphiphilic systems. Polystyrene‐block‐poly(acrylic acid), polystyrene‐block‐poly(ethylene oxide), and many other block copolymer systems can produce vesicles of a wide range of sizes; those in the range of 100–1000 nm have been explored extensively. Different factors, such as the absolute and relative block lengths, the presence of additives (ions, homopolymers, and surfactants), the water content in the solvent mixture, the nature and composition of the solvent, the temperature, and the polydispersity of the hydrophilic block, provide control over the types of vesicles produced. Their high stability, resistance to many external stimuli, and ability to package both hydrophilic and hydrophobic compounds make them excellent candidates for use in the medical, pharmaceutical, and environmental fields. © 2004 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 42: 923–938, 2004 相似文献
86.
The organic nanoparticles of a blue-light-emitting molecule, 1,3-diphenyl-5-(9-anthryl)-2-pyrazuline, were prepared by reprecipitation method using acetonitrile as the solvent for the molecular precursor. Three morphologies, spherical, doughnut-shaped and cubic, could be observed on the silicon substrate forthe nanoparfides by the volume-controlled addition of acetonitrile. The evolution of particle morphology as a function of acetonitrile addition was attributed to the variation of the growth habits of the particles in the different environment. The nanoparticles exhibit the novel photoluminescence spectra as compared to those of monomer and the bulk crystals. 相似文献
87.
88.
89.
KaiKANG ChengYouKAN YiDU YuZhongLI DeShanLIU 《中国化学快报》2005,16(6):831-834
Soap-flee P(MMA-EA-MAA) particles with narrow size distribution were synthesized by seeded emulsion polymerization of methyl methacrylate (MMA), ethyl acrylate (EA) and methacrylic acid (MAA), and large voids inside the particles were generated by alkali posttreatment in the presence of 2-butanone. Results indicated that the size of void and theparticle volume were related with the amount of 2-butanone. The generation mechanism of voids was proposed. 相似文献
90.
Mojumdar S. C. Kozánková J. Chocholoušek J. Majling J. Fábryová D. 《Journal of Thermal Analysis and Calorimetry》2004,78(1):73-82
Fluoroapatite containing glass-ceramics were prepared from Li2O-CaO-CaF2-P2O5-SiO2 system. The glass was melted at 1480°C for 1 h. The object of observation was the preparing crystal phase of fluoroapatite
in amorphous glass matrix. The morphology of lithium disilicate glass-ceramics was studied by SEM. The crystal growth and
thermal properties of fluoroapatite were studied by X-ray diffraction and DTA. The more the content of P2O5, the more the presence of fluoroapatite particles. SEM investigation clearly indicated the phase separation and formation
of a primary crystalline phase of fluoroapatite in the studied glass-ceramics. DTA curves of the fluoroapatite samples exhibit
exothermic effects in the temperature range 337-694°C depending on the composition of the materials. The position of exothermic peak for lithium disilicate on DTA curves moves with increasing specific surfacetowards lower temperatures which points on its preferential surface crystallization. As far as physical qualities are concerned,
mainly color and gloss, the best qualities of all observed materials belong to glass-ceramics with 10% P2O5.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献