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81.
N-Heterocyclic carbene-catalyzed 1,6-addition of aromatic aldehydes to para-quinone methides has been developed. This method could efficiently furnish α,α′-diarylated ketones with good to high yields, which contain various functional groups.  相似文献   
82.
Xia Zhao  Tianjiao Li  Bo Yang  Di Qiu  Kui Lu 《Tetrahedron》2017,73(22):3112-3117
Triphenylphosphine-mediated metal-free trifluoromethylthiolation and difluoromethylthiolation of thiols by CF3SO2Cl and CHF2SO2Cl to synthesize trifluoromethyl disulfides and difluoromethyl disulfides, respectively, was achieved at room temperature. Iodine generated in situ from iodide facilitated this reaction via the formation of iodotriphenylphosphonium iodide which could serve as a reducing agent in this transformation. Readily available reagents and mild reaction conditions without transition-metals allow this protocol to be more practical than traditional methods.  相似文献   
83.
An efficient and thermally induced reaction of diazoamide with isatin under mild reaction conditions is described, which provides a complementary approach to the 3,3′-bioxindole in high yields with excellent diastereoselectivity. In comparison to the metal-catalyzed versions, this is the only example under catalyst-free conditions via a non-carbene reaction pathway.  相似文献   
84.
The authors describe an oligonucleotide-based lateral flow test for visual detection of Ag(I). The assay is based on cytosine-Ag(I)-cytosine [C-Ag(I)-C] coordination chemistry to capture gold nanoparticle (AuNP) tags in the test zone. A thiolated C-rich oligonucleotide probe was immobilized on the AuNPs via gold-thiol chemistry, and a biotinylated C-rich oligonucleotide probe was immobilized on the test zone. The AuNPs labelled with C-rich oligonucleotides are captured by Ag(I) ions in the test zone through the C-Ag(I)-C coordination. The resulting accumulation of AuNPs produces a readily visible red band in the test zone. Under optimized conditions, the test is capable of visually detecting 1.0 ppb of Ag(I) which is 50 times lower than the maximum allowable concentration as defined by the US Environmental Protection Agency for drinking water. Hence, the test is inexpensive and highly sensitive. It was applied to the detection of Ag(I) in spiked samples of tap water and river water. In our perception, the test is a particularly valuable tool in limited resource settings.
Graphical abstract Graphical Abstract
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85.
In this work, the isothermal and nonisothermal crystallization kinetics of three novel biobased poly(ethylene succinate-co-ethylene sebacate) (PESSe) copolymers was systematically investigated with differential scanning calorimetry under different crystallization conditions from the amorphous state. For the isothermal cold crystallization kinetics study, the Avrami equation could well describe the crystallization process of PESSe at various crystallization temperatures. All three PESSe copolymers crystallized through the same crystallization mechanism; moreover, the overall isothermal cold crystallization rate of PESSe decreased with increasing ethylene sebacate (ESe) comonomer content. The nonisothermal cold crystallization kinetics of PESSe was also studied at different heating rates. With increasing ESe content or heating rate, the nonisothermal cold crystallization exotherm of PESSe copolymers shifted to high temperature range. Both the crystallization rate parameter and crystallization rate coefficient of PESSe copolymers decreased with increasing ESe content, indicating that PESSe copolymer with higher ESe content crystallized more slowly than that with lower ESe content. The Ozawa equation was used to analyze the nonisothermal cold crystallization kinetics of PESSe copolymers, which was found to fit the crystallization process very well.  相似文献   
86.
The novel coronavirus disease (2019-nCoV) has been affecting global health since the end of 2019, and there is no sign that the epidemic is abating. Targeting the interaction between the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike protein and the human angiotensin-converting enzyme 2 (ACE2) receptor is a promising therapeutic strategy. In this study, surface plasmon resonance (SPR) was used as the primary method to screen a library of 960 compounds. A compound 02B05 (demethylzeylasteral, CAS number: 107316-88-1) that had high affinities for S-RBD and ACE2 was discovered, and binding affinities (KD, μM) of 02B05-ACE2 and 02B05-S-RBD were 1.736 and 1.039 μM, respectively. The results of a competition experiment showed that 02B05 could effectively block the binding of S-RBD to ACE2 protein. Furthermore, pseudovirus infection assay revealed that 02B05 could inhibit entry of SARS-CoV-2 pseudovirus into 293T cells to a certain extent at nontoxic concentration. The compoundobtained in this study serve as references for the design of drugs which have potential in the treatment of COVID-19 and can thus accelerate the process of developing effective drugs to treat SARS-CoV-2 infections.  相似文献   
87.
食品接触性塑料制品、可再生资源、汽车尾气中含有低浓度铅。铅等重金属体内蓄积严重影响机体健康,但机体长期暴露于铅环境的代谢依然未知。以低剂量含铅细颗粒物暴露为场景,探讨其在大鼠体内的生物转运及体内分布。通过比较每日吸入染毒(7.05±0.83)μg/m~3及经口染毒0.42μg/d,连续染毒28d。结果显示含铅细颗粒物入血的速度比经口途径快,在肺内蓄积浓度达(4.2±0.67)μg/g,与经口染毒组比较有显著统计学差异(P0.01);排泄方面,吸入含铅细颗粒物以粪便、尿液形式排出为主,与经口染毒组比较具有体内蓄积量大、排泄慢、在股骨和肋骨内蓄积量大的特点。因此,吸入含铅细颗粒物暴露体内蓄积量大,代谢速度慢,暴露危害比经口途径更大。  相似文献   
88.
Low-cost and high-efficiency production of silicon-based material is the key to improve the energy density of lithium-ion batteries. Herein, we propose a novel structure of FeSi2–Si eutectic nanoparticles protected by the SiOx shell. FeSi2, as a buffer phase can improve the electrochemical stability of the electrode. A SiOx shell is formed on the surface of the nanoparticles through the passivation process. SiOx encapsulated FeSi2–Si eutectic nanoparticles exhibit excellent capacity of 674.9 mAh/g after 500 charge/discharge cycles. The capacity retention rate is above 90% after the stabilization process. This work provides a new nanomaterial design for high performance silicon-based anode materials of lithium-ion batteries.  相似文献   
89.
仇旸  谢小红  李文震  邵玉艳 《催化学报》2021,42(12):2094-2104
阴离子交换膜(AEM)燃料电池因具有使用非贵金属作为催化剂的优点而受到广泛关注.然而,在碱性体系中,AEM燃料电池中氢氧化反应(HOR)的反应动力学比在酸性介质中的慢两个数量级.针对HOR在碱中动力学缓慢的问题,有两种主要的理论来解释,(1)pH相关的氢结合能作为主要影响因素来控制HOR动力学的理论;(2)质子和氢氧根离子的吸附共同作为影响因子来控制HOR在碱性条件下的动力学的双功能理论.本文首先讨论了在碱性电解质中可能的HOR反应机理及其Tafel性能变化.除了传统的Tafel-Volmer和Heyrovsky-Volmer-HOR机理外,还讨论了最新提出的氢氧根离子吸附参与的HOR机理来说明在酸性和碱性介质中HOR机理的差异.然后,总结了具有代表性的碱性HOR催化剂(如贵金属、合金、金属间化合物、镍基合金、碳化物、氮化物等),简要介绍了它们相应的HOR反应机理,从而进一步理解在碱性介质中不同基元反应步骤给HOR性能带来的差异.最后,提出了一种未来设计HOR碱性催化剂的可行性方案,为今后碱性环境下的HOR催化剂设计提供参考.  相似文献   
90.
陈杰林  程明攀  王佳伟  仇得辉  David Monchaud  Jean-Louis Mergny  鞠熀先  周俊 《催化学报》2021,42(7):1102-1107,中插7-中插11
DNA酶中的G-四链体-血红素(G4-hemin)DNA酶结构具有较高的设计性和化学稳定性,因此格外受研究者关注.G-平面作为辅酶因子hemin的结合位点,不仅提供大π平面与hemin结合,而且其平面上的G碱基还可以充当近端配位基团与hemin进行配位.因此,研究G-平面完整性在G4-DNA酶体系中的作用具有重要意义.本文设计了一系列含有空位的G4(G-vacancy,GV)及G-三链体,通过“鸟嘌呤类似物插入”策略实现G-平面完整性以及DNA酶催化活性的恢复.结果表明,末端G-平面完整性是G4-DNA酶具有催化活性的必要条件,且其能够充当近端配位基团与末端碱基协同激活G4-DNA酶.考虑到hemin会选择性地结合于G4的3’-端平面,本文以含有3’-端空位的G4以及G-三链体为模型进行DNA酶的构建.结果表明,相较于末端完整的G4-hemin DNA酶,末端不完整的G4结构所形成的DNA酶催化活性很低.为了进一步验证该平面完整性的重要性,本文提出了“鸟嘌呤衍生物插入”策略,即将鸟嘌呤衍生物(无环鸟苷和鸟苷)插入G-空位以恢复G-平面的完整性.通过圆二色光谱和紫外熔解实验,发现末端平面完整性的缺失会使圆二色特征峰信号和G4结构热稳定性下降,而鸟嘌呤碱基类似物的加入则可以使特征峰信号以及热稳定性得到一定程度的恢复,表明鸟嘌呤碱基类似物的加入确实使G-平面完整性得到恢复.与此同时,随着鸟嘌呤碱基类似物浓度的增加,G4-hemin DNA酶活性逐渐增强,最终恢复至与完整G4一样的活性.在以G-三链体为模型的实验中,本文通过另一条富G序列与G-三链体进行结合,形成复合的(3+1)型G4结构,最终实现了DNA酶活性的恢复.同时,在3’-G-平面末端增加了激活碱基(dA或dTC),结果表明,即使G-平面不完整,末端碱基依旧能够激活DNA酶,但酶活性整体弱于完整G4时的活性.同样,“鸟嘌呤衍生物插入”策略可以使酶活性得到恢复.本文系列实验充分说明了末端碱基可与G-平面形成协同作用,与hemin的铁中心共同形成六配位关系,加速催化中间体生成,进而增强催化活性.有趣的是,通过设计Holliday junction结构研究发现,“鸟嘌呤衍生物插入”策略仅适用于平行G4结构.G-空位的存在不仅降低了G4结构的稳定性,而且降低了其与hemin间的亲和力,二者均是造成G4-DNA酶催化能力下降的主要因素.总之,本文证明了3’-端G-平面的完整性是G4-DNA酶实现其催化能力必不可少的因素,对理解末端G-平面在G4-DNA酶中的作用具有重要的参考意义.  相似文献   
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