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A procedure for the photochemical chlorination of nanodiamond by molecular chlorine in the liquid phase was proposed. This process was studied quantitatively for the first time. Hydrolytic stability of the chlorinated nanodiamond surface in air and in a 0.05 M solution of NaOH was determined. A possibility of disintegration of the initial aggregates (<60 μm) to finer aggregates (<200 nm) was shown. The reactions of a series of C-nucleophiles (organolithium reagents, CN ion) with the chlorinated surface were carried out. Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 12, pp. 2130–2137, December, 2006.  相似文献   
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SURFACE MODIFICATION AND DISPERSION OF NANODIAMOND IN CLEAN OIL   总被引:1,自引:0,他引:1  
The effect of different kinds of surfactants on the size distribution of nanodiamond particles in clean oil was studied.Results show that the dispersing stability of nanodiamond modified with surfactangts YS-1 and SB-18 simulta-neously is much better than those modified with either of them because of synergism of the surfactangts.And the particle size distribution in the system can be improved remarkably after the adoption of hyperdispersants such as SA-E and SA-F.Anchoring groups of those hyperdispersants can be bonded with the particle surface by chemical and/or hydrogen bonding and their soluble chains are well compatible with the dispersion media.As a result,the particles are uniformly distrbuted in the system owing to the steric stabilization.A very stable clean-oil based nanodiamond suspension with an average particle size of around 53.2 nm was prepared.  相似文献   
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The fabrication of nanodiamond (ND)‐based drug carriers for tumor‐targeted drug delivery is described. The ND clusters with an average size of 52.84 nm are fabricated using a simple fluidic device combined with a precipitation method and then conjugated with folic acid (FA) and doxorubicin (Dox) via carbodiimide chemistry to obtain FA/Dox‐modified ND (FA/Dox‐ND) clusters. Cell culture experiments revealed that KB (folate receptor‐positive) cells are preferentially ablated by FA/Dox‐ND clusters compared to A549 (folate receptor‐negative) cells. In vivo results revealed that FA/Dox‐ND clusters are specifically accumulated in tumor tissues after intravenous injection into tumor‐bearing mice, effectively reducing the volume of tumor. Based on these results, this study suggests that FA/Dox‐ND clusters can be a good candidate as tumor‐targeted nanovehicles for delivery of antitumor drug.

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KONG Xiang-Lei 《中国化学》2008,26(10):1811-1815
作为一种新的,易于实现的快速分析方法,纳米金刚石被应用基于基质隔离激光解吸附电离质谱的非共价相互作用的研究中。表面覆盖有“饵分析物”的纳米金刚石被加入到含有“目标分析物”的溶液中,通过离心的方法进行分离,并用水清洗后再利用基质隔离激光解吸附电离质谱进行分析。同时,通过比较加入纳米金刚石前后的溶液的质谱图,亦可得到相关信息。这种平台可应用于分子间非共价相互作用的研究,并可进一步应用于选择性增强的基质隔离激光解吸附电离质谱分析中,一个例子就是表面覆盖聚赖氨酸的纳米金刚石在磷酸化多肽的质谱分析的应用。  相似文献   
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通过电导返滴定法测定经强酸氧化后的荧光纳米钻石(FND, 约140 nm)表面羧基含量为126 μmol/g, 占表面原子数的29.7%. 对FND物理吸附人转铁蛋白(hTf)进行了研究, 其吸附行为符合Langmuir等温吸附, 在PBS(pH 7.4)中最大吸附量为(176.46±2.13) μg/mg, 同时研究了pH对FND吸附hTf的影响, 发现在pH等于hTf的等电点附近有最大吸附. 利用激光共聚焦和流式细胞仪对FND和FND-hTf内吞到人肝癌细胞(HepG2)的差异进行了定性和定量分析, 结果得到FND-hTf比FND容易内吞到细胞中, 利于胞内成像.  相似文献   
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The synthesis of a new class of fluorescent carbon nanomaterials, carbon‐dot‐decorated nanodiamonds (CDD‐ND), is reported. These CDD‐NDs are produced by specific acid treatment of detonation soot, forming tiny rounded sp2 carbon species (carbon dots), 1–2 atomic layers thick and 1–2 nm in size, covalently attached to the surface of the detonation diamond nanoparticles. A combination of nanodiamonds bonded with a graphitic phase as a starting material and the application of graphite intercalated acids for oxidation of the graphitic carbon is necessary for the successful production of CDD‐ND. The CDD‐ND photoluminescence (PL) is stable, 20 times more intense than the intrinsic PL of well‐purified NDs and can be tailored by changing the oxidation process parameters. Carbon‐dot‐decorated DNDs are shown to be excellent probes for bioimaging applications and inexpensive additives for PL nanocomposites.  相似文献   
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纳米金刚石具有优异的机械性能、导热性、生物相容性和结构可调性,在复合材料、电化学、催化、医学等领域的研究被不断开拓,工业上通过爆轰法实现纳米金刚石的大批量生产为其应用提供了基础。由于纳米金刚石表面结构复杂,需要精准调控以实现目标性能,对其表面功能化的研究具有重要的实际意义。本文首先介绍了对纳米金刚石进行各种表面修饰的方法,然后着重阐述其表面功能化研究对纳米金刚石在机械性能、催化性能和生物医学领域应用的影响,最后对纳米金刚石未来的研究方向进行了展望。  相似文献   
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