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91.
吉林大学化学学科自建立伊始,以创新型化学及相关交叉学科人才为根本目标,历经1993年开始的国家理科基础科学研究和教学人才培养基地建设、2009年开始的“基础学科拔尖学生培养试验计划”实施、2020年的“基础学科拔尖学生培养计划2.0基地”建设与基础学科招生改革试点(强基计划)的实施,通过近30年化学基地的持续建设,形成了具有吉大特色的以“厚基础、强能力、会创新”的化学创新人才培养模式。围绕基地持续建设过程中如何针对学科发展以及学生知识结构的变化,不断推进拔尖班、强基班的教学管理模式与课程体系建设,打造高水平师资队伍、加大优质课程建设、探索国家化培养模式等进行介绍。 相似文献
92.
94.
利用流式细胞法、细胞计数试剂盒(CCK-8)法、实时细胞功能分析(RTCA)法分别检测分选前后细胞的活性,综合比较了3种方法的检测原理、操作特点等。结果显示,流式细胞法测得的分选后细胞凋亡率为(3.85 ± 0.008)%,分选前细胞凋亡率为(14.09 ± 0.021)%,分选后细胞凋亡率低于分选前,具有统计学差异(P < 0.05);分选前后的活细胞比例显示,分选后活细胞比例高于分选前,具有显著性统计学差异(P < 0.001)。CCK-8法测得的分选后细胞活性高于分选前,具有显著性统计学差异(P < 0.001);RTCA法测得的分选后细胞连续增殖活性明显高于分选前,具有极显著性统计学差异(P < 0.000 1)。结果显示,相较于CCK-8法和流式细胞法,RTCA法的细胞用量少、可回收,操作简便,无需标记,检测灵敏度高,可获得实时动态的细胞生长曲线,适合研究分选后细胞长效动态的活性变化,可为基础和临床分选后活细胞的功能研究提供检测手段。 相似文献
95.
建立了同时快速检测地下水中102种酸性、碱性和中性有机污染物的气相色谱-质谱(GC-MS)分析方法,所建方法涉及苯酚、苯胺、苯基醚、多氯萘、联苯等10类污染物。考察了酸性、碱性和中性有机污染物的同时提取条件,结果显示采用先中性、再酸性、后碱性三步液液萃取方式可以改善污染物的提取回收率,提高分析准确度和精密度。在优化条件下,除五氯苯酚外,101种目标物在各自的质量浓度范围内呈良好线性关系,相关系数(r)为0.995 0~0.999 9。地下水样品在低、中、高3个浓度水平的加标回收率分别为47.2%~126%、43.0%~117%、38.8%~120%,相对标准偏差(RSD,n = 7)分别为1.1%~27%、2.6%~33%、2.9%~30%,方法检出限为1.8~19.7 ng/L(五氯苯酚、邻苯二甲酸二异丁酯、邻苯二甲酸二丁酯、邻苯二甲酸二(2-乙基)己酯除外)。方法应用于山西、河南等部分典型污染场地的地下水样品筛查,检出苯酚、苯胺、多环芳烃及其衍生物等24种酸、碱和中性有机污染物,点位检出率达到46.7%,水质明显呈点源污染特征。该方法灵敏、准确、简单、快速,可实现多目标物同时检测,有助于地下水中有机污染物快速筛查。 相似文献
96.
石油磺酸盐中活性组分的识别对于磺化原料油的选择和磺酸盐产品界面活性的稳定具有重要的指导意义.开展石油磺酸盐关键活性物质结构的确定与活性检测研究,可以提升高品质石油磺酸盐生产的可控性.采用液相色谱制备技术,结合质谱分析和界面张力测试评价,从长庆石油磺酸盐样品中成功分离制备出了具有优异界面活性的关键活性组分.试验结果表明,其活性组分占总石油磺酸盐含量的7.3%,可以将油水界面张力快速降至超低(<1.0×10^(-3) mN/m),且具有广泛的油相普适性,对于正己烷~正十六烷油相以及多种油田来源原油,均可将油水界面张力降至超低.此外,活性组分以单磺酸盐为主,平均相对分子质量为414(不含Na^(+)),相对分子质量分布范围在380~450之间,主要组成是以多种同分异构体结构形式存在的十七烷基苯磺酸盐和十八烷基苯磺酸盐混合物. 相似文献
97.
MWCNTs-Co(II) and Pd(II) were prepared through grafting silylated-salicylaldimine Pd(II) and Co(II) on multiwalled carbon nanotubes(MWCNTs) for ethylene oligomerization. The structures of the two MWCNTs-supported catalysts were characterized by means of scanning electron microscopy(SEM), X-ray diffraction(XRD), Fourier transform infrared(FTIR) spectroscopy, thermogravimetric analyses(TGA) and nitrogen adsorption and desorption. And the influence of the supported pattern on the catalytic properties for ethylene oligomerization was investigated. The results revealed that the silylated-salicylaldimine complexes were grafted on the inner and outer surfaces of the carbon nanotubes and the pore size and BET surface area of MWCNTs decreased. Compared with the homogeneous catalysts, the two MWCNTs-supported catalysts had higher selectivity for hexene and 1-hexene in the presence of diethylaluminum chloride(DEAC) with a small molecule size due to confinement effect. MWCNTs-Pd exhi-bited higher activity and higher selectivity for C8+ olefin compared to MWCNTs-Co due to electronic factors. The catalytic activities of MWCNTs-Pd and MWCNTs-Co decreased from 24.18×105g·(mol Pd·h)–1 and 20.57×105g·(mol Co·h)–1 to 19.79×105g·(mol Pd·h)–1 and 13.14×105g·(mol Co·h)–1 after the third recycle reaction, respectively. 相似文献
98.
WU Liting XIN Yujia GUO Zhaoyang GAO Wei ZHU Yanpeng br WANG Yinsong RAN Ruixue YANG Xiaoying 《高等学校化学研究》2022,38(2):562-571
Combining photothermal therapy and radiotherapy(PTT-RT) with reducing tumor hypoxia acts as an important antitumor modality. However, it is a great challenge to realize photothermal therapy, radiotherapy and exogenous oxygen supply in one nanosystem. To realize a combination of the three functions, we fabricated a red blood cell membrane(RBCm)-camouflaged, red blood cell content(RBCc) and the copper sulfide(CuS) co-loaded dendritic large pore mesoporous silica nanoparticle(DLMSN/CuS/RBCc/ RBCm). The cell membrane coating endowed the nanoparticles with good stability in the physiological environment, and CuS allowed the nanoparticle exhibiting good photothermal and radiosensitization properties. RBCc loaded nanoparticle DLMSN/CuS/RBCc enhanced superior anti-tumor effect than DLMSN/CuS during combined PTT-RT therapy because the introduction of RBCc increased the exogenous oxygen supply. The in vitro study further demonstrated that the combination of photothermal therapy and radiotherapy induced superior antitumor efficacy than single therapy. Our work thus presents a unique multifunctional nanoscale platform favorable for combined PTT and RT. 相似文献
99.
Drug carrier materials need to possess good biological safety. Presently, most biosafety evaluation studies use rodent animal models, including rats and rabbits. However, the cost of raising these animals is relatively high and the experimental period is long. Caenorhabditis elegans(C. elegans) presents an ideal toxicological evaluation model due to its simple structure, easy cultivation, short life cycle, and evolutionary conservation. In this paper, we used C. elegans to test the biological safety of our pH-responsive carrier system(FFPFF self-assembling into a nanosphere structure, FFPFF Nps), which was designed for anti-tumor drug delivery. Our results showed that exposure to high doses of FFPFF Nps did not have a significant impact on the survival rate, growth, development, movement, and reproduction of C. elegans. The preliminary evaluation of the overall biological model of C. elegans shows that FFPFF Nps has good biological safety and warrants further study. 相似文献
100.
As the most abundant transition metal element in mammals, iron(Fe) plays a vital role in life activities. It is of great significance to study the variation of Fe3+ level in living organisms. In virtue of the advantages of high sensitivity, good selectivity and low damage to living systems, the fluorescence detection of Fe3+ has attracted much attention. Compared with the intensity-based fluorescent probe, the ratiometric fluorescent probe has less interference of environmental and can realize quantitative detection. In this study, four ratiometric Fe3+ fluorescent probes, R1, R2, R3 and R4, were designed and synthesized using fluorescence resonance energy transfer(FRET) mechanism to achieve quantitative detection of Fe3+. In the FRET systems, 1,8-naphthalimide fluorophore derivatives were adopted as donors while rhodamine B derivatives were selected as receptors. The connection sites of the donor and acceptor in R3 and R4 are different from those in R1 and R2. All the four probes showed good response and selectivity to Fe3+. The energy transfer efficiencies of R3 and R4 were obviously higher than those of R1 and R2. This work provided a promising strategy for the development of fluorescent ratiometic Fe3+sensors. 相似文献