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311.
Claudia Unger Martin Gruene Lothar Koch Juergen Koch Boris N. Chichkov 《Applied Physics A: Materials Science & Processing》2011,103(2):271-277
In this work, the printing mechanism of an alginate-based hydrogel via laser-induced forward transfer (LIFT) is investigated by spatial and temporal high-resolved stroboscopic imaging. First, the generation of the liquid jet is studied at two different laser fluences in a process without collector slide. Furthermore, the impingement process onto the collector slide at the same fluence levels is observed. With the help of these images the development of the jet is explained. Besides the influences of the collector slide as well as the applied laser fluence on the transfer are demonstrated. 相似文献
312.
Yi-Fan Chang Chih-Wei Guo Ting-Hao Chan Yi-Wen Pan En-Lun Tsou Wei-Chieh Cheng 《Molecular diversity》2011,15(1):203-214
The preparation of natural product-like polyhydroxylated pyrrolidine and piperidine alkaloids using a combination of solid–
and solution-phase organic synthesis is described. The key intermediates, enantiopure five- or six-membered tri-O-benzyl cyclic nitrones, were efficiently prepared on solid support from accessible chiral furanosides and pyranosides, respectively.
The substituent diversity was achieved by a diastereoselective addition of a variety of Grignard reagents to the cyclic nitrones
in solution-phase synthesis. All reaction steps and work-up procedures were modified to allow the use of automated equipment.
A 36-membered demonstration library with three diversity elements (core, configuration, and substituent) was prepared in good
yield and purity. 相似文献
313.
The higher spin Dirac operator \(\mathcal{Q}_{k,l}\) acting on functions taking values in an irreducible representation space for \(\mathfrak{so}(m)\) with highest weight \((k+\frac{1}{2},l+\frac{1}{2},\frac{1}{2},\ldots,\frac{1}{2})\), with k, l?∈?\(\mathbb{N}\) and \(k\geqslant l\), is constructed. The structure of the kernel space containing homogeneous polynomial solutions is then also studied. 相似文献
314.
Vojislav Spasojevic Ana Mrakovic Marija Perovic Vladan Kusigerski Jovan Blanusa 《Journal of nanoparticle research》2011,13(2):763-771
Single-phase perovskite compound La0.7Ca0.3MnO3 was synthesised by a high-energy ball milling in a single step processing. Structure and morphology characterizations revealed nanoparticle nature of this mixed valent manganite with the average particle diameter of 9 nm. Comprehensive set of magnetic measurements showed that the system can be described as an ensemble of interacting magnetic nanoparticles where each particle possesses high magnetic moment, i.e., superspin. Furthermore, magnetic behavior showed contributions from both superspin-glass (SSG) and superparamagnetic (SP) states, and the prevailing properties depended on the experimental conditions. It was established that SSG state dominated in low magnetic fields up to 500 Oe while in higher applied fields suppression of collective behavior occurred and individual characteristics of nanoparticles prevailed. It was also concluded that the applied method of synthesis produced system with high magnetic anisotropy as well as with the large nanoparticle shell whose thickness amounts 30% of a particle diameter. 相似文献
315.
Zhiguo Wang Shengjie Wang Chunlai Zhang Jingbo Li 《Journal of nanoparticle research》2011,13(1):185-191
The electronic properties of saturated and unsaturated twinned SiC nanowires grown along [111] direction and surrounded by
{111} facets are investigated using first-principles calculations with density functional theory and generalized gradient
approximation. All the nanowires considered, including saturated and unsaturated ones, exhibit semiconducting characteristics.
The saturated nanowires have a direct band gap and the band gap decreases with increasing diameters of the nanowires. The
hexagonal (2H) stacking inside the cubic (3C) stacking has no effect on electronic properties of the SiC nanowires. The highest
occupied molecular orbitals and the lowest unoccupied molecular orbitals are distributed along the nanowire axis uniformly,
which indicates that the twinned SiC nanowires are good candidates in realizing nano-optoelectronic devices. 相似文献
316.
Zhi Ping Xu Zi Gu Xiaoxi Cheng Firas Rasoul Andrew K. Whittaker Gao Qing Max Lu 《Journal of nanoparticle research》2011,13(3):1253-1264
A novel nanocomposite film for sustained release of anionic ophthalmic drugs through a double-control process has been examined
in this study. The film, made as a drug-loaded contact lens, consists principally of a polymer hydrogel of 2-hydroxyethyl
methacrylate (HEMA), in whose matrix MgAl-layered double hydroxide (MgAl-LDH) nanoparticles intercalated with the anionic
drug are well dispersed. Such nanocomposite films (hydrogel-LDH-drug) contained 0.6–0.8 mg of MgAl-LDH and 0.08–0.09 mg of
the ophthalmic drug (ketorolac) in 1.0 g of hydrogel. MgAl-drug-LDH nanoparticles were prepared with the hydrodynamic particle
size of 40–200 nm. TEM images show that these nanoparticles are evenly dispersed in the hydrogel matrix. In vitro release
tests of hydrogel-LDH-drug in pH 7.4 PBS solution at 32 °C indicate a sustained release profile of the loaded drug for 1 week.
The drug release undergoes a rapid initial burst and then a monotonically decreasing rate up to 168 h. The initial burst release
is determined by the film thickness and the polymerization conditions, but the following release rate is very similar, with
the effective diffusion coefficient being nearly constant (3.0 × 10−12 m2/s). The drug release from the films is mechanistically attributed to anionic exchange and the subsequent diffusion in the
hydrogel matrix. 相似文献
317.
We study the coupling of a tetraquark system to an exchanged meson-meson channel, using a pure gluonic theory based four-quark
potential matrix model which is known to fit well a large number of data points for lattice simulations of different geometries of a four-quark
system. We find that if this minimal-area-based potential matrix replaces the earlier used simple Gaussian form for the gluon
field overlap factor f in its off-diagonal terms, the resulting T -matrix and phase shifts develop an angle dependence whose partial-wave analysis reveals D wave and higher angular-momentum components in it. In addition to the obvious implications of this result for the meson-meson
scattering, this new feature indicates the possibility of orbital excitations influencing properties of meson-meson molecules
through a polarization potential. We have used a formalism of the resonating group method, treated kinetic energy and overlap
matrices on model of the potential matrix, but decoupled the resulting complicated integral equations through the Born approximation.
In this exploratory study we have used a quadratic confinement and not included the spin dependence; we also used the approximation
of equal constituent quark masses. 相似文献
318.
We investigate the electronic and band structure for the (8; 0) single-wall carbon nanotube (SWCNT) with a europium (Eu) and
a uranium (U) atom outside by using the first-principles method with the density functional theory (DFT). The calculated band
structure (BS), total density of state (TDOS), and projected density of state (PDOS) can elucidate the differences between
the pure (8; 0) SWCNT and the nuclei outside the SWCNT. The indirect band gaps are obtained when Eu and U atom are put outside
the (8; 0) CNT; they are 0.037 eV and 0.036 eV, respectively, which is much smaller than 0.851 eV for pure CNT. Compared with
pure (8; 0) SWCNT, the bottom of the conduction band moves down by 0.383 eV and 0.451 eV with the Eu and U outside, and the
top of valence band moves up by 0.127 eV and 0.162 eV, respectively. More significantly, the top of the valence band has exceeded
the fermi-level. So, a single nucleus changes the semiconductor character of pure nanotube to semi-metal. 相似文献
319.
Anthony Ashmore Riccardo Bartolini Nicolas Delerue 《Central European Journal of Physics》2011,9(4):980-985
Laser-driven Plasma Accelerators (LPA) have successfully generated high energy, high charge electron bunches which can reach
many kA peak current, over short distances. Space charge issues, even in transport lines as simple as a drift section, have
to be carefully taken into account since they can degrade the beam quality, preventing any further application of such electron
beams. We analyse the space charge effects within an electron bunch with numerical simulations in order to assess their effect
on the beam. We use LPA beam parameters published in previous experimental studies. These studies can give an indication of
the working point where space charge can dominate the beam dynamics and has to be taken into account in the application of
such beams. 相似文献
320.
James B Whitney Saied Mirshahidi So-Yon Lim Lauren Goins Chris C Ibegbu Daniel C Anderson Richard B Raybourne Fred R Frankel Judy Lieberman Ruth M Ruprecht 《Journal of immune based therapies and vaccines》2011,9(1):2