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91.
Three-dimensional (3D) heterostructured molybdenum disulfide (MoS2) is used as base materials for aniline monomer in situ polymerization on its surface. It is found that the aniline addition has a remarkable effect on the energy storage of the final compounds due to the improvement of the conductivity and structure stability combined with the synergistic effect between the two types of species. The optimal compound of PANI@MoS2-150 not only shows a high capacitance value of 801.4 F ⋅ g−1 at a current density of 0.5 A ⋅ g−1 but also provides a high retention rate of 77.4 % after 10,000 cycles. The capacitance fading may be due to the increase of the internal resistance analyzed by EIS. Furthermore, a flexible symmetric supercapacitor based on PANI@MoS2-150 has also been fabricated and the specific capacitance reaches 105 F ⋅ g−1 at a current density of 1 A ⋅ g−1. Impressively, the capacitance retention is larger than 100 % undergoing 10,000 cycles. Besides, the highest energy density of 21 Wh ⋅ kg−1 was obtained. Additionally, the fabricated symmetric supercapacitor demonstrates excellent flexibility.  相似文献   
92.
Over the recent decades, due to the special electronic characteristics and diverse reactivities, N-heterocyclic carbene (NHC) has received significant interest in organocatalyzed reactions. The formation of Breslow intermediates by NHC can convert into acyl anion equivalent, enolates, homoenolate, acyl azolium, and vinyl enolate etc., and the cycloaddition reactions of these species has attracted lots of attention. In this review, we focus on the summry of the development of NHC-activation of carbonyl carbon (or imine carbon) in situ, α-, β-, γ-, and beyond, and the cycloaddition reaction of these species.  相似文献   
93.
Molecular imprinted colorimetric sensors can realize visual semi-quantitative analysis without the use of any equipment. With the advantages of low cost, fast response, ease of handling, and excellent recognition ability, the molecular imprinted colorimetric sensor shows great application potential in the field of sample rapid assay. Molecular imprinted colorimetric sensors can be prepared in various forms to meet the needs of different sample determination, such as film, hydrogel, strip, and adsorption coating. In this review, the preparation methods for various types of molecularly imprinted colorimetric sensors are systematically introduced. Their applications in the field of on-site biological sample detection, drug detection, disease treatment, chiral substance detection and separation, environmental analysis, and food safety detection are introduced. The limitations encountered in the practical application are presented, and the future development directions prospect.  相似文献   
94.
An open tubular capillary electrochromatography column covalently bonded with polystyrene sulfonate was prepared via in situ polymerization using functionalized Azo-initiator 4,4′-Azobis(4-cyanopentanoyl chloride). Scanning electron, fluorescence, and atomic force microscopy techniques showed the formation of a relatively rough layer of polymer. In addition, –CN and C = O stretching vibrations from infrared spectroscopy proved the successful immobilization of the azo-initiator through covalent bonding and X-ray photoelectron spectroscopy confirmed the elemental composition of the formed polymer layer. The prepared column was found to be appropriate for small and medium-sized molecules separation. Compared to bare fused silica capillary column higher selectivity and resolution were obtained for the separation of alkaloids, sulfonamides, and peptides as a result of the electrostatic and pi-pi stacking interactions between the small organic molecules and the coated column without compromising the electroosmotic flow mobility. Separation efficiency was also increased compared to the bare capillary for the separation of alkaloids (about 1.5 times). Moreover, intraday, inter-day, intra-batch, and inter-batch relative standard deviation values of retention time and peak area of peptides were within 2% and 10%, respectively, indicating good repeatability of the column preparation procedure. The developed method for the covalent bonding of polymers through a functionalized azo-initiator could represent a promising stable method for the preparation of an open tubular column.  相似文献   
95.
Chemotherapy drugs continue to be the main component of oncology treatment research and have been proven to be the main treatment modality in tumor therapy. However, the poor delivery efficiency of cancer therapeutic drugs and their potential off-target toxicity significantly limit their effectiveness and extensive application. The recent integration of biological carriers and functional agents is expected to camouflage synthetic biomimetic nanoparticles for targeted delivery. The promising candidates, including but not limited to red blood cells and their membranes, platelets, tumor cell membrane, bacteria, immune cell membrane, and hybrid membrane are typical representatives of biological carriers because of their excellent biocompatibility and biodegradability. Biological carriers are widely used to deliver chemotherapy drugs to improve the effectiveness of drug delivery and therapeutic efficacy in vivo, and tremendous progress is made in this field. This review summarizes recent developments in biological vectors as targeted drug delivery systems based on microenvironmental stimuli-responsive release, thus highlighting the potential applications of target drug biological carriers. The review also discusses the possibility of clinical translation, as well as the exploitation trend of these target drug biological carriers.  相似文献   
96.
硼石膏近些年在水泥、沥青混合材料等领域应用广泛,其主要成分为CaSO4·2H2O和B2O3以及其他杂质,因此准确、快速测定石膏样品中的硼元素对石膏的应用、资源综合利用等方面具有重要意义。而国家标准GB/T 5484-2012《石膏分析方法》中并没有硼元素的化学分析方法,且相关文献报道也很少。目前测定硼元素主要采用电感耦合等离子体质谱法(ICP-MS),样品前处理多采用酸溶法,而碱熔法应用不多,主要原因是碱熔后溶液中产生大量盐分影响等离子体焰的稳定性,而732型阳离子交换树脂能吸附大量的钠离子,同时吸附了钙、镍、铁及稀土等阳离子,减少盐分干扰。基于此原理,本文采用氢氧化钠碱熔-732型阳离子交换树脂交换分离,在线加入铑内标的方式,建立了ICP-MS法测定石膏中硼的方法,同时由于石膏国家标准物质不包含硼元素的含量,采用高纯硫酸钙分别与岩石标准物质、水系沉积物国家标准物质和土壤国家标准物质混合配置成人工标准物质,并讨论了熔矿体系、阳离子加入量与吸附时间、清洗液、同位素的选择等实验条件。本方法的检出限为0.76μg/g,精密度(RSD,n=7)为0.9%~1.7%,相对误差为1.56%~3.96%,加标回收率在97.5%~102%,该方法快速、准确,记忆效应小,适合石膏中硼元素的测定。  相似文献   
97.
以配体菲咯啉取代苷脲(L), 分别与CoCl2·6H2O、CuCl2·2H2O进行配位反应, 得到2个配合物{[Co(L)(H2O)3]Cl2·2H2O}n(1)和[Cu2(L)2Cl4]·3C2H5OH(2)。并用元素分析、FTIR和X-射线单晶衍射进行了表征。晶体结构表明:配合物1属于正交晶系, P212121空间群, 每个Co(Ⅱ)的配位环境为扭曲的八面体, 分别与1个配体上菲咯啉单元的2个氮原子、另外1个配体的羰基氧原子和3个水分子配位, 配合物中每个配体 L 表现为三齿配体分别与2个Co(Ⅱ)离子配位桥联形成一维链状结构。配合物2属于单斜晶系, P21/n空间群, Cu(Ⅱ)的配位环境为扭曲的四方锥形, 分别与配体上菲咯啉单元的2个氮原子和3个氯原子配位, 3个氯原子中有2个氯原子同时和2个Cu(Ⅱ)离子配位, 从而使配合物2形成双核配合物。  相似文献   
98.
标题化合物C26H26O5以2,3-萘二甲醛和5-甲基-1,3-环己二酮为原料,在醋酸溶剂中,室温下经搅拌多组分一锅法合成得到.其结构通过单晶X-射线衍射法确定,晶体属单斜晶系,空间群P21,相对分子质量Mr=418.47,晶胞参数a=0.990 04(8) nm,b=1.090 98(9)nm,c=1.042 46(11) nm,V=1.087 53(17) nm3,Z=2,晶胞密度Dc=1.278 g/cm3,吸收系数μ=0.088mm-1,单胞中电子的数目F(000) =444.晶体结构用直接法解出,经全矩阵最小二乘法对原子参数进行修正,最终的偏离因子为R1 =0.053 3,wR2=0.129 3.在晶体结构中新形成的吡喃环为半椅式构象,而茚中五元环则为信封式构象.  相似文献   
99.
自增强高分子材料是一种特殊的多相体系,其基体相与增强相的化学结构相同但物理性质不同,因其界面具有良好的相容性与粘结强度而具有较大的应用价值,同时,也非常有利于材料的回收利用。本文总结了自增强高分子材料的一系列制备方法,并将其分为非原位成型法与原位成型法,具体包括纤维热压法、绷紧纤维过热法、薄膜嵌入热压法、口模拉伸、辊筒拉伸和旋转挤出法等成型方法,并着重介绍其制备工艺及存在的缺陷。最后对自增强高分子材料的前景进行了展望。  相似文献   
100.
采用浸渍法制备了负载型高分散纳米Ru催化剂,利用X射线衍射、X射线光电子能谱、透射电子显微镜、N2吸附-脱附实验对催化剂进行了表征,结果显示,Ru以高分散金属态存在,其平均粒径在5nm左右。考察了不同酸碱介质、催化剂与底物物质的量的比、反应温度、H2压力和反应时间对对苯二酚收率的影响。结果表明,以盐酸为反应介质,以5%Ru/AC为催化剂,nRu/AC∶n对苯醌=1∶100,反应温度30℃,H2压力3.0MPa,反应时间30min,对苯二酚的收率可达97.5%。  相似文献   
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