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1.
以WC-6Co为主体原料,通过添加不同含量的ZrO2作为烧结助剂,采用SPS烧结技术制备出性能出众的WC-6Co硬质合金,研究了ZrO2烧结助剂对硬质合金显微组织及力学性能的影响规律.结果表明:随着ZrO2添加量的增加,试样的显微组织更加致密,相对密度更大,硬度和断裂韧性也有一定程度的增加.并且,当添加ZrO2的质量分数为3%时,试样的相对密度达到96.7%,维氏硬度增加到20.28kN·mm-2,断裂韧性增长到12.7MPa·mm1/2,综合性能最优.研究发现,ZrO2可以通过促进离子的扩散和颗粒的重排促进烧结,最终使得材料的相对密度和性能均得到提升.  相似文献   
2.
共价有机框架(COF)是一类新兴的多孔有机聚合物,因其具有较大的比表面积、有序的孔道结构以及良好的生物相容性,已成为具有潜力的纳米药物载体.制备了基于COF纳米颗粒的仿生纳米复合物,负载光敏剂孟加拉玫瑰红(RB),并包裹癌细胞膜(CMV)对该复合物进行仿生修饰.结果表明:制备的COF/RB@CMV纳米复合物具有良好的生物兼容性,能够被肿瘤细胞有效摄取,并在光照激活条件下产生对细胞具有高毒性的活性氧化物(ROS),进而起到了杀伤肿瘤细胞的作用.提出了一种新的基于COF的仿生纳米平台用作光动力学治疗(PDT)试剂.  相似文献   
3.
 在自行研制的离子束辅助孪生磁场中频反应溅射设备中制备光学氧化钛薄膜,利用郎缪尔静电探针研究等离子特性变化,同时测定基片表面的伏安(I-V)特性。结果表明,随离子束功率密度不断提高,等离子体电子密度不断增加,悬浮负电位绝对值减小,溅射阴极电压下降;基片表面经历从富电子向富阳离子转变,基片正电位不断提高;辅助离子束为109 W时,基片表面处于电中性等离子体平衡态。  相似文献   
4.
Sintering behavior of ZrB_2 ceramic with nano-sized SiC dopant was studied. ZrB_2-25 vol% nano-sized SiC was selected as the starting mixture to fabricate the composite. The manufacturing process was accomplished at 1800℃ for 5 min under 25 MPa via spark plasma sintering(SPS). The as-sintered sample reached a relative density of 99%. Besides the initial phases, namely ZrB_2 and SiC, the high-resolution X-ray diffraction(HRXRD) was used to study the formation of an in-situ ZrC phase. The possible chemical interactions during the ZrC phase formation were scrutinized. The microstructure of the composite was studied by the field emission scanning electron microscopy(FESEM) and transmission electron microscopy(TEM). Elemental analysis through FESEM evaluations revealed the formation of amorphous phases, rich in Zr, C, Si, B, and O elements, which was in harmony with the thermodynamical assessments. TEM studies endorsed the formation of such phases, containing a glassy bed of Si–B–O with ZrC and C islands dispersed therein.  相似文献   
5.
通过比较氢氟酸-硝酸高压罐密闭消解法、 氢氟酸-硝酸-高氯酸-盐酸低压密闭消解法和氢氟酸-硝酸-高氯酸-盐酸敞口消解法对钼矿样品的分解效果, 选用低压密闭消解法制备样品, 用电感耦合等离子体质谱(ICP-MS)法测定伴生稀有元素Li,Ga和15种稀土元素的质量比. 通过对干扰元素的分析, 选择合适同位素, 并确定151Eu,157Gd,159Tb质谱干扰的校正系数. 结果表明,  20 μg/L的铑(Rh)标准溶液作为内标可有效抑制溶液中的基体效应和信号动态漂移, 方法检出限为0.001~0.113 μg/g, 相对标准偏差(RSD, n=7)为0.30%~3.92%.  经标准物质和实际样品验证, 该方法可靠, 适合钼矿中伴生Li,Ga和稀土元素的测定.  相似文献   
6.
Hydrogen energy and polymer electrolyte membrane (PEM) fuel cells become concerned issues in recent years. Nevertheless, the construction of hydrogen refueling infrastructure and hydrogen storage and transportation constrains the commercial development of fuel cells. In this review, sources, production, storage, transportation, and purification methods of hydrogen are extensively reviewed and compared. The advantages of utilizing industrial by-product hydrogen and steam reforming gas in PEM fuel cell systems are analyzed. Using industrial wasted hydrogen can significantly reduce the cost of hydrogen. Also, it is indicated that the onboard hydrogen generation by steam methanol reforming can solve the difficulties of efficient storage and transportation of gaseous hydrogen, which means that methanol has great potential to be a convenient carrier of hydrogen. The effects of impurities contained in the reformate gas are generally introduced. After the methanol steam reforming and pretreatment purification processes, the reformate gas can be fed to PEM fuel cells. Thus, a fuel cell system integrated with onboard hydrogen production and impure hydrogen treatment subsystems is introduced, and key technologies therein for pretreatment purification and in-situ poisoning mitigation methods are reviewed. Finally, suggestions are proposed for further studies.  相似文献   
7.
Water balance in cathode catalyst layer (CCL) is crucial for proton exchange membrane fuel cells (PEMFCs). Herein, we report a novel strategy to develop a Janus few layered graphene particles (FLGP) with asymmetric wettability by varying the carbon precursors in the chemical vapor deposition (CVD) process. Using the Janus FLGP supported Pt with asymmetric wettability as the cathode of a PEMFC, a peak power density of 632 mW cm−2 was achieved, which was about two-folds of the hydrophobic FLGP and three-folds of hydrophilic FLGP based cathode, respectively. The enhanced performance could be ascribed to the well-constructed three-phase boundary in an anti-flooding cathode, leading to enlarged electrochemical active surface area and facilitated mass transfer. This work may provide new clues for improving water management in PEMFCs.  相似文献   
8.
针对影响和制约膜分离技术大规模推广应用的关键材料与技术瓶颈,中国科学院过程工程研究所"生化工程介质与设备"创新团队经过多年自主创新,在高性能分离膜材料、膜过程强化关键技术和高效膜分离装备等方面取得了系列科研成果,部分成果在调味品、水处理、中药等行业实现了产业化应用,创造了显著的经济效益和社会效益,为提高我国膜工业研发与应用水平,缩短我国膜分离行业与国外先进水平之间的差距,促进膜分离技术的大规模工业化应用做出了贡献。  相似文献   
9.
10.
This research provides a new insight into designing next-generation filtration materials for Nano-pollutants removal from wastewater, and potentially for gas/solid or liquid/solid separation in corrosive environment. Considering the high corrosion and oxidation resistance, Ti–40Al–10Nb–10Cr porous alloy was prepared by powder metallurgy and used as a mechanical support with a pore size of around 10 ?μm. Subsequently, metallic Zn nanoparticles was coated on the Ti–40Al–10Nb–10Cr porous framework by means of chemical vapor deposition, obtaining a novel microfiltration membrane with three-dimensional reticular architecture. Furthermore, the influence of Zn coating on surface morphology, pore feature, and filtration capability of Ti–40Al–10Nb–10Cr porous alloy was investigated. It is of note that the as-prepared microfiltration membrane exhibits an excellent Nano-pollutants filtration efficiency of greater than 99.989% from wastewater. Most importantly, such a three-dimensional reticular architecture provides excellent structural stability, allowing the reutilization of the microfiltration membrane for at least 200 filtration cycles of wastewater treatment.  相似文献   
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