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91.
Shuya Liang Miaomiao Wang Jun Wang Guanzhi Chen 《Chembiochem : a European journal of chemical biology》2021,22(22):3184-3189
To overcome high toxicity, low bioavailability and poor water solubility of chemotherapeutics, a variety of drug carriers have been designed. However, most carriers are severely limited by low drug loading capacity and adverse side effects. Here, a new type of metal-drug nanoparticles (MDNs) was designed and synthesized. The MDNs self-assembled with Fe(III) ions and drug molecules through coordination, resulting in nanoparticles with high drug loading. To assist systemic delivery and prolong circulation time, the obtained MDNs were camouflaged with red blood cell (RBCs) membranes (RBCs@Fe-DOX MDNs) to improve their stability and dispersity. The RBCs@Fe-DOX MDNs presented pH-responsive release functionalities, resulting in drug release accelerated in acidic tumor microenvironments. The outstanding in vitro and in vivo antitumor therapeutic outcome was realized by RBCs@Fe-DOX MDNs. This study provides an innovative design guideline for chemotherapy and demonstrates the great capacity of nanomaterials in anticancer treatments. 相似文献
92.
W. Choi P. N. Enjeti J. W. Howze G. Joung 《Journal of Materials Engineering and Performance》2004,13(3):257-264
In this article, an impedance model of the proton exchange membrane fuel cell stack (PEMFCS) is proposed. The proposed study
employs an equivalent circuit of the PEMFCS derived by the frequency response analysis technique. An equivalent circuit for
the PEMFCS is developed to evaluate the effects of ripple currents generated by the power-conditioning unit. The calculated
results are then verified by means of experiments using a commercially available PEMFCS. The relationship between ripple current
and fuel cell performance, such as power loss and fuel consumption, is investigated. Experimental results show that the ripple
current can contribute up to a 6% reduction in the available output power.
This paper was presented at the Fuel Cells: Materials, Processing, and Manufacturing Technologies Symposium sponsored by the
Energy/Utilities Industrial Sector & Ground Transportation Industrial Sector and the Specialty Materials Critical Technologies
Sector at the ASM International Materials Solutions Conference, October 13–15, 2003, in Pittsburgh, PA. The symposium was
organized by P. Singh, Pacific Northwest National Laboratory, S.C. Deevi, Philip Morris USA, T. Armstrong, Oak Ridge National
Laboratory, and T. Dubois, U.S. Army CECOM. 相似文献
93.
WANG Jingtang PANG Dexing DING Bingzhe BIAN Maoshu LI Shuling Institute of Metal Research Academia Sinica Shenyang ChinaOriginally published in ACTA METALL SIN 《金属学报(英文版)》1989,2(8):146-150
The viscous flow of amorphous alloys near T_gis closely related to the viscosity of liquid alloys.On the basis of the measured surface tension and density for Ni-P binary alloys,the correla-tion between the viscosity of the melt and viscous flow process of the amorphous alloy is inves-tigated.The relationship between viscosity and temperature for Ni-P alloys going from liquidto amorphous solid may be described by the following formula: 相似文献
94.
The Sn−Ti−Zn ternary phase diagram has been constructed using the CALPHAD technique. The Ti−Zn binary system phase boundaries
were determined using differential scanning calorimetry and the solid-liquid diffusion couples method. In addition, the formation
energy of some stoichiometric compounds was obtained using first-principle band energy calculations. For the ternary system,
some alloys were prepared by equilibration at 600 or 700 °C, and the compositions of the precipitates were analyzed using
electron probe microanalysis. Thermodynamic assessment of the Ti−Zn and Sn−Ti−Zn systems was performed based on the experimental
information and by adopting reported values of the thermodynamic properties of the Sn−Zn and Sn−Ti binary systems. Microstructural
observation showed that Sn3Ti5Zn12 exists in the ternary system. Seven types of invariant reaction on the Sn-rich liquidus surface of the ternary system are
predicted by the phase diagram calculations. The ternary eutectic point falls at 0,0009 mass% Ti and 8.69 mass% Zn, at T=192.40°C, which is slightly lower than the calculated eutectic point of Sn−Zn binary alloy (T=192.41°C). Based on these results, a nonequilibrium solidification process using the Scheil model was simulated.
This paper was presented at the International Symposium on User Aspects of Phase Diagrams, Materials Solutions Conference
and Exposition, Columbus, Ohio, 18–20 October, 2004. 相似文献
95.
8098单片机在轧机控制系统中的应用 总被引:2,自引:0,他引:2
在轧机速度控制和张力控制中采用8098单片机控制系统,使其速度控制精度和张力控制精度得到明显提高;系统还具有运行可靠、调试与维护方便、组成系统成本低等优点。 相似文献
96.
采用9种板料进行了单拉及液压胀形(双向拉伸)试验,分别研究了双向拉伸各性能指标间及单、双向伸各性能指标间的相关关系,得到了一系列有意义的结果。 相似文献
97.
液膜法分离富集,测定水中微量锶 总被引:1,自引:0,他引:1
用乳状液膜体系对锶进行分离富集,该体系包括协同流动载体(PMBP,TBP),表面活性剂(SPAN80)增强剂(丙三醇)溶剂(正己烷)和内相(1.2mol/L的盐酸溶液),实验表明,在适宜的条件下,锶的富集效率可达99.5%以上,而在此条件下许多共存离子,如Fe^3+,Al^3+,Ca^2+,Mg^2+,Ba^2+,Cr^3+,CO^2+,Ni^2+,Zr^4+,Cu^2+,Zn^2+,Pb^2+和 相似文献
98.
Strain rate sensitivity and tension/compression asymmetry of AZ31 magnesium alloy at different temperatures and strainrates were investigated.Both of mechanical behaviors are temperature dependent.Strain rate sensitivity increases with increasingtemperature.Thermally activated slip is the source of strain rate sensitivity.At the temperature below or near 373 K,strain ratesensitivity is very little.Tension/compression asymmetry in yielding decreases with increasing temperature.Twinning is the reasonof tension/compression asymmetry.At the temperature above or near 573 K,the material shows little tension/compressionasymmetry of the flow stress. 相似文献
99.
介绍了带钢热连轧过程中电动活套和液压活套各自的张力控制模型,前者以电机电流作为控制对象,后者以液压缸压力作为控制对象。 相似文献
100.
The integration of reaction and separation in catalytic membrane reactors has received increasing attention during the past 30 years. The combination promises to deliver more compact and less capital-intensive processes with substantial savings in energy consumption. With the advent of new inorganic materials and processing techniques, there has been renewed interest in exploiting the benefits of membranes in many industrial applications. Zeolite membranes, however, have only recently been considered for catalytic membrane reactor applications. Despite the significant recent interest in these types of membranes there are relatively few reports of the application of such membranes in high-temperature catalytic membrane reactor applications. This can be attributed to a number of limitations that still need to be addressed such as the relatively high price of membrane units, the difficulty of controlling the membrane thickness, permeance, high-temperature sealing, reproducibility and the dilemma of upscaling. A number of research efforts, with some degree of success have been directed to finding solutions to the remaining challenges. This review makes a critical assessment of what has been achieved in the past few years in terms of hurdles that still stand in the way of the successful implementation of zeolite membrane reactors in industry. 相似文献