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国家自然科学基金(51172005)

作品数:8 被引量:22H指数:2
发文基金:国家自然科学基金北京市自然科学基金国家重点基础研究发展计划更多>>
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Advance in the chemical synthesis and magnetic properties of nanostructured rare-earth-based permanent magnets被引量:13
2013年
Rare-earth-based permanent magnets are one of the most important magnets in both scientific and industrial fields. With the development of technology, nanostructured rare-earth-based permanent magnets with high energy products are highly required. In this article, we will review the progress in chemical synthetic strategies of nanostructured rare-earth-based permanent magnets.
Ce YangYang-Long Hou
关键词:纳米稀土磁学性质
Surface modification of magnetic nanoparticles in biomedicine被引量:2
2015年
Progress in surface modification of magnetic nanoparticles(MNPs)is summarized with regard to organic molecules,macromolecules and inorganic materials.Many researchers are now devoted to synthesizing new types of multi-functional MNPs,which show great application potential in both diagnosis and treatment of disease.By employing an ever-greater variety of surface modification techniques,MNPs can satisfy more and more of the demands of medical practice in areas like magnetic resonance imaging(MRI),fluorescent marking,cell targeting,and drug delivery.
储鑫余靓侯仰龙
关键词:磁性纳米粒子表面改性技术磁性纳米颗粒有机分子
Highly Reversible Li–Se Batteries with Ultra-Lightweight N,S-Codoped Graphene Blocking Layer被引量:4
2018年
The desire for practical utilization of rechargeable lithium batteries with high energy density has motivated attempts to develop new electrode materials and battery systems. Here, without additional binders we present a simple vacuum filtration method to synthesize nitrogen and sulfur codoped graphene(N,S-G) blocking layer, which is ultra-lightweight, conductive, and free standing. When the N,S-G membrane was inserted between the catholyte and separator, the lithium–selenium(Li–Se)batteries exhibited a high reversible discharge capacity of 330.7 mAh g^(-1) at 1 C(1 C = 675 mA g^(-1)) after 500 cycles and high rate performance(over 310 mAh g^(-1) at 4 C) even at an active material loading as high as ~5 mg cm^(-2). This excellent performance can be ascribed to homogenous dispersion of the liquid active material in the electrode, good Li^+-ion conductivity, fast electronic transport in the conductive graphene framework, andstrong chemical confinement of polyselenides by nitrogen and sulfur atoms. More importantly, it is a promising strategy for enhancing the energy density of Li–Se batteries by using the catholyte with a lightweight heteroatom doping carbon matrix.
Xingxing GuLingbao XinYang LiFan DongMin FuYanglong Hou
关键词:GRAPHENEULTRA-LIGHTWEIGHT
Magnetic nanoparticle-based cancer nanodiagnostics
2013年
Diagnosis facilitates the discovery of an impending disease. A complete and accurate treatment of cancer depends heavily on its early medical diagnosis. Cancer, one of the most fatal diseases world-wide, consistently affects a larger number of patients each year. Magnetism, a physical property arising from the motion of electrical charges, which causes attraction and repulsion between objects and does not involve radiation, has been under intense investigation for several years. Magnetic materials show great promise in the application of image contrast enhancement to accurately image and diagnose cancer. Chelating gadolinium (Gd Ⅲ) and magnetic nanoparticles (MNPs) have the prospect to pave the way for diagnosis, operative management, and adjuvant therapy of different kinds of cancers. The potential of MNP-based magnetic resonance (MR) contrast agents (CAs) now makes it possible to image portions of a tumor in parts of the body that would be unclear with the conventional magnetic resonance imaging (MRI). Multiple functionalities like variety of targeting ligands and image contrast enhancement have recently been added to the MNPs. Keeping aside the additional complexities in synthetic steps, costs, more convoluted behavior, and effects in-vivo, multifunctional MNPs still face great regulatory hurdles before clinical availability for cancer patients. The trade-off between additional functionality and complexity is a subject of ongoing debate. The recent progress regarding the types, design, synthesis, morphology, characterization, modification, and the in-vivo and in-vitro uses of different MRI contrast agents, including MNPs, to diagnose cancer will be the focus of this review. As our knowledge of MNPs' characteristics and applications expands, their role in the future management of cancer patients will become very important. Current hurdles are also discussed, along with future prospects of MNPs as the savior of cancer victims.
Muhammad Zubair Yousafa余靓侯仰龙高松
关键词:磁性纳米粒子癌症治疗图像对比度增强癌症患者
Nanomagnetism:Principles,nanostructures,and biomedical applications
2014年
Nanomagnetism is the origin of many unique properties in magnetic nanomaterials that can be used as building blocks in information technology, spintronics, and biomedicine. Progresses in nanomagnetic principles, distinct magnetic nanostructures, and the biomedical applications of nanomagnetism are summarized.
杨策侯仰龙高松
关键词:生物医学应用磁性纳米材料自旋电子学纳米磁性
Chemical synthesis of magnetic nanocrystals:Recent progress
2013年
Colloidal chemical synthesis of various types of magnetic nanocrystals is discussed with regard to recent discoveries.We first outline the chemical preparation of single-component magnetic nanocrystals with controlled size,shape,and uniformity based on several solution-phase methods,especially thermal decomposition and/or reduction method.Then we discuss the synthetic strategies of multi-component nanocrystals incorporating at least one magnetic component by manipulating heterogeneous nucleation and growth process.Toward the end,approaches for preparing hollow/porous magnetic nanocrystals are highlighted.We believe that the summarized chemical synthesis will pave the way for the future development of extraordinary magnetic nanocrystals.
刘飞朱静菡侯仰龙高松
关键词:纳米晶体磁性元件化学合成化学制备单组分
Magnetic nanoparticle-based cancer therapy被引量:2
2013年
Nanoparticles(NPs) with easily modified surfaces have been playing an important role in biomedicine.As cancer is one of the major causes of death,tremendous efforts have been devoted to advance the methods of cancer diagnosis and therapy.Recently,magnetic nanoparticles(MNPs) that are responsive to a magnetic field have shown great promise in cancer therapy.Compared with traditional cancer therapy,magnetic field triggered therapeutic approaches can treat cancer in an unconventional but more effective and safer way.In this review,we will discuss the recent progress in cancer therapies based on MNPs,mainly including magnetic hyperthermia,magnetic specific targeting,magnetically controlled drug delivery,magnetofection,and magnetic switches for controlling cell fate.Some recently developed strategies such as magnetic resonance imaging(MRI) monitoring cancer therapy and magnetic tissue engineering are also addressed.
余靓黄冬雁Muhammad Zubair Yousaf侯仰龙高松
关键词:磁性纳米粒子癌症治疗生物医学表面改性肿瘤治疗
阴离子对氮掺杂石墨烯修饰金属双氢氧化合物结构与赝电容性能的影响(英文)被引量:1
2015年
超级电容器因为具有充放电时间短的特点引起了人们的广泛关注.然而,由于电极表面的电荷积聚和化学反应,电容器的比电容及能量密度大大降低,限制了超级电容器的实际应用.本文提出了一种新颖的合成方法用以制备基于镍钴双氢氧化物的复合材料,该复合材料作为超级电容器的电极具有优异的电化学性能.利用氮掺杂石墨烯的缺陷,金属氢氧化物纳米结构在氮掺杂石墨烯表面生长,形成复合结构.通过调节并优化镍钴的元素比以及卤素离子、碳酸根离子的含量,能够改善材料的孔隙度、提高材料结构的稳定性以及促进电化学反应.金属氢氧化物的形成由钴离子的氧化反应引导,并通过定向生长方式形成一维结构.氮掺杂石墨烯有效保护镍钴双氢氧化物的纳米结构,使其在电化学测试中不被破坏,同时,氮掺杂石墨烯还能够提高电极的导电性,利于物质及离子传输.电化学测试表明,该复合材料在电流密度为1Ag-1时,比电容高达2925Fg-1,并且在高电流密度下(16Ag-1)展现出了优异的循环稳定性,在10,000次循环后比电容仍然保持在90%.在16Ag-1的电流密度下,材料的能量密度和功率密度分别达到了52Whkg-1和3191Wkg-1.该合成方法为制备基于金属氢氧化物、氧化物、硫化物等高性能超级电容器电极提供了新的途径.
Nasir MahmoodMuhammad TahirAsif Mahmood杨文龙古兴兴曹传宝张亚文侯仰龙
关键词:DHEDLC金属
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