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21.
Jong Bum Lee Soong Ho Um Jeong-Woo Choi Kee-Kahb Koo 《Colloids and surfaces. B, Biointerfaces》2003,30(4):307-314
The self-assembled ferredoxin monolayer onto the (100) surface of the silicon substrate was prepared and the nonspecifically adsorbed aggregates of ferredoxin on the substrate were successfully eliminated by using a zwitterionic surfactant, 3-[(3-cholamidopropyl) dimethylammonio]-1-propanesulfonate (CHAPS). The AFM image of the self-assembled ferredoxin monolayer on the silicon substrate treated with CHAPS clearly shows that the size of ferredoxin clusters is about 20–30 nm, which is on the order of an aggregate of about five ferredoxin molecules, whereas the size of ferredoxin aggregates on the substrate without CHAPS treatment was measured to be about 100–200 nm. Those results offer a useful method for the elimination of the nonspecific adsorption of proteins onto inorganic substrates, which has been a long-term problem in the fabrication of biomolecular electronic devices by the self-assembly technique. 相似文献
22.
The main theme of the present work is to investigate the electrokinetic effects on liquid flow and heat transfer in a flat microchannel of two parallel plates under asymmetric boundary conditions including wall-sliding motion, unequal zeta potentials, and unequal heat fluxes on two walls. Based on the Debye-Huckel approximation, an electrical potential solution to the linearized Poisson-Boltzmann equation is obtained and employed in the analysis. The analytic solutions of the electrical potential, velocity distributions, streaming potential, friction coefficient, temperature distribution, and heat transfer rate are obtained, and thereby the effects of electrokinetic separation distance (K), zeta-potential level (zeta;(1)), ratio of two zeta potentials (r(zeta) identical with zeta;(2)/zeta;(1)), wall-sliding velocity (u(w)), and heat flux ratio (r(q) identical with q"(2)/q"(1)) are investigated. The present results reveal the effects of wall-sliding and zeta-potential ratio on the hydrodynamic nature of microchannel flow, and they are used to provide physical interpretations for the resultant electrokinetic effects and the underlying electro-hydrodynamic interaction mechanisms. In the final part the results of potential and velocity fields are applied in solving the energy equation. The temperature distributions and heat transfer characteristics under the asymmetrical kinematic, electric, and thermal boundary conditions considered presently are dealt with. 相似文献
23.
Rajshree Ghosh Biswas Dr. Ronald Soong Amy Jenne Monica Bastawrous Prof. Myrna J. Simpson Prof. André J. Simpson 《Angewandte Chemie (International ed. in English)》2023,62(8):e202216105
Synergism between different phases gives rise to chemical, biological or environmental reactivity, thus it is increasingly important to study samples intact. Here, SASSY (SimultAneous Solid and Solution spectroscopY) is introduced to simultaneously observe (and differentiate) all phases in multiphase samples using standard, solid-state NMR equipment. When monitoring processes, the traditional approach of studying solids and liquids sequentially, can lead to information in the non-observed phase being missed. SASSY solves this by observing the full range of materials, from crystalline solids, through gels, to pure liquids, at full sensitivity in every scan. Results are identical to running separate 13C CP-MAS solid-state and 13C solution-state experiments back-to-back but requires only a fraction of the spectrometer time. After its introduction, SASSY is applied to process monitoring and finally to detect all phases in a living freshwater shrimp. SASSY is simple to implement and thus should find application across all areas of research. 相似文献
24.
Shen L Soong R Wang M Lee A Wu C Scholes GD Macdonald PM Winnik MA 《The journal of physical chemistry. B》2008,112(6):1626-1633
Pulsed field gradient nuclear magnetic resonance (PFG NMR) experiments have been used to examine ligand exchange between poly(2-(N,N-dimethylamino)ethyl methacrylate) (PDMA) (Mn = 12,000, Mw/Mn = 1.20, Nn = 78) and trioctylphosphine oxide (TOPO) bound to the surface of CdSe/TOPO quantum dots (QDs). We show that PFG 1H NMR can quantify the displacement of TOPO by PDMA through its ability to differentiate signals due to TOPO bound to the QDs versus those from TOPO molecules free in solution. For CdSe QDs with a band edge absorption maximum at 558 nm (diameter 2.7 nm by transmission electron microscopy), we determined that, at saturation, 8 polymer chains on average displace greater than 90% of the surface TOPO groups. At partial saturation, with an average of 6 polymer chains/QD, each TOPO displaced requires 28 DMA repeat units. Assuming that one Me2N- group binds to a surface Cd2+ for each TOPO displaced, we infer that only about 3% of the DMA units are directly bound to the surface. The remaining groups are present as loops or tails that protrude into the solvent and increase the hydrodynamic diameter of the particles. 相似文献
25.
Che Soong Kim Moon Ho Lee Alexander Dudin Valentina Klimenok 《Annals of Operations Research》2008,162(1):57-68
In this paper, we consider an N-server queueing model with homogeneous servers in which customers arrive according to a stationary Poisson arrival process.
The service times are exponentially distributed. Two new customer’s service disciplines assuming simultaneous service of arriving
customer by all currently idle servers are discussed. The steady state analysis of the queue length and sojourn time distribution
is performed by means of the matrix analytic methods. Numerical examples, which illustrate advantage of introduced disciplines
comparing to the classical one, are presented. 相似文献
26.
Nguyen KT Soong R Lm SC Waskell L Ramamoorthy A Chen Z 《Journal of the American Chemical Society》2010,132(43):15112-15115
In addition to providing a semipermeable barrier that protects a cell from harmful stimuli, lipid membranes occupy a central role in hosting a variety of biological processes, including cellular communications and membrane protein functions. Most importantly, protein-membrane interactions are implicated in a variety of diseases and therefore many analytical techniques were developed to study the basis of these interactions and their influence on the molecular architecture of the cell membrane. In this study, sum frequency generation (SFG) vibrational spectroscopy is used to investigate the spontaneous membrane insertion process of cytochrome b(5) and its mutants. Experimental results show a significant difference in the membrane insertion and orientation properties of these proteins, which can be correlated with their functional differences. In particular, our results correlate the nonfunctional property of a mutant cytochrome b(5) with its inability to insert into the lipid bilayer. The approach reported in this study could be used as a potential rapid screening tool in measuring the topology of membrane proteins as well as interactions of biomolecules with lipid bilayers in situ. 相似文献
27.
We present a new concept for a beam position monitor with the unique ability to map particle beam position to a measurable wavelength. Coupled with an optical spectrograph, this beam position monitor is capable of subnanometer resolution. We describe one possible design, and through finite-element frequency-domain simulations, we show a resolution of 0.7 nm. Because of its high precision and ultracompact form factor, this device is ideal for future x-ray sources and laser-driven particle accelerators "on a chip." 相似文献
28.
Che Soong Kim Valentina Klimenok Alexander Birukov Alexander Dudin 《Annals of Operations Research》2006,141(1):193-210
A single server retrial system having several operation modes is considered. The modes are distinguished by the transition
rate of the batch Markovian arrival process (BMAP), kernel of the semi-Markovian (SM) service process and the intensity of
retrials. Stationary state distribution is calculated under the fixed value of the multi-threshold control strategy. Dependence
of the cost criterion, which includes holding and operation cost, on the thresholds is derived. Numerical results illustrating
the work of the computer procedure for calculation of the optimal values of thresholds are presented. 相似文献
29.
M.A. Migliorato M.J. Steer W.M. Soong C.M. Tey H-Y. Liu S.L. Liew P. Navaretti D.J. Norris A.G. Cullis M. Hopkinson 《Physica E: Low-dimensional Systems and Nanostructures》2005,26(1-4):124
We discuss a novel approach to the optimisation of quantum dot bilayer structures grown by molecular beam epitaxy. Use of a kinetic segregation model has shown that a reduction of the In composition for the upper layer of a bilayer structure can be used to compensate for the excess In that exists on the surface prior to growth. Three samples have been grown with upper dot In compositions varying from 90% to 100% and have been investigated by means of optical spectroscopy and electron microscopy. 相似文献
30.
H.Y. Liu T.J. Badcock I.R. Sellers W.M. Soong K.M. Groom M. Hopkinson D.J. Mowbray M.S. Skolnick 《Physica E: Low-dimensional Systems and Nanostructures》2005,26(1-4):129
The effects of growth temperature of the GaAs spacer layers (SPLs) on the photoluminescence (PL) efficiency of multi-layer GaAs-based 1.3-μm InAs/InGaAs dots-in-well (DWELL) structures have been investigated. It is found that the PL intensity of DWELLs is enhanced by incorporating a high growth temperature step for GaAs SPLs. This improved PL efficiency could be understood in term of reducing the non-radiative recombination centers. An extremely low continuous-wave room-temperature threshold current density of 35 A/cm2 is achieved for an as-cleaved 5-layer device with emission at 1.31 μm by using this growth technique. 相似文献