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141.
The carbon nanotubes supported palladium(Pd/CNT)nanocatalysts were modified by cerium oxides/ hydroxides and their catalytic performances for methanol oxidation were evaluated.Electrochemical measurements indicate that the introduction of cerium remarkably improves the catalytic activity of Pd/CNT catalysts towards methanol oxidation.X-Ray photoelectron spectra results reveal an interaction between palladium and cerium oxides.It is also observed that cerium-modified catalysts have excellent poison resistances,which is attributed to the poison-removal ability of cerium oxides/hydroxides.The highly oxidized cerium oxides/hydroxides have a strong ability to inhibit the accumulation of carbonaceous intermediates on the active sites of Pd catalysts.  相似文献   
142.
Various Higgs factories are proposed to study the Higgs boson precisely and systematically in a model- independent way. In this study, the Particle Flow Network and ParticleNet techniques are used to classify the Higgs decays into multicategories, and the ultimate goal is to realize an "end-to-end" analysis. A Monte Carlo simulation study is performed to demonstrate the feasibility, and the performance looks rather promising. This result could be the basis of a "one-stop" analysis to measure all the branching fractions of the Higgs decays simultaneously.  相似文献   
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能源危机和环境恶化是当今社会面临的巨大挑战. 燃料电池作为一种高效、清洁的发电装置,受到了社会各界特别是新能源行业的高度关注. 尤其是, 日本丰田推出Mirai燃料电池汽车量产上市计划, 把燃料电池及其关键技术发展推向了一个新的发展纪元. 然而, 制约燃料电池走向大规模商业化的核心问题依然是其综合性能不具竞争力. 其中, 氧电极的缓慢动力学以及贵金属Pt的有限资源、高昂成本等是关键所在, 因此, 亟待实现高性能非贵金属催化剂的突破.近年来, 大量研究表明, Fe-Nx掺杂的碳催化剂具有极大的代Pt潜力, 研究者们尝试各种手段进行开发,如: 调控Fe化合物及N前驱体的类型与添加量, 改变温度、压力等合成条件, 采用轴向配位体连接、共价接枝、球磨等非热解路线, 构建核壳、有序介孔碳、阵列、类石墨烯薄片、多孔碳等碳纳米结构, 制备石墨烯/碳纳米管、石墨烯/碳黑、碳纳米带/碳纳米管、碳纳米颗粒/碳纤维、碳球/碳纳米管/石墨烯等复合材料, 进行酸洗、造孔、二次加热等后处理, 调控不同类型Fe物种相生成等. 此外, EXAFS及M?ssbauer等谱学技术已经证实Fe-Nx特别是Fe-N4为强活性位点. 因此, 有待提出合理策略以促进非贵金属碳催化剂中Fe-Nx强活性位点的高密度掺杂.本文提出了一种碳模板诱导Fe-Nx活性位点生长的方法即通过高温热解含有Fe盐的三聚氰胺前驱体混合物, 成功制备 了Fe-Nx掺杂的碳催化剂, 并结合多种表征技术证实了碳模板对制备碳催化剂结构组成及电化学性能的影响. 形貌结果说明, 碳模板的引入有利于Fe、N化合物的均匀吸附以至于Fe基纳米颗粒的均一成核, 促使竹状碳纳米管在碳模板表面以及中间均一生长; 氮气吸脱附及孔径分布曲线显示, 引入碳模板形成的复合材料较单一的碳纳米管和碳黑材料具有提高的比表面积和总孔体积, 说明复合材料中存在两种单体的有效协同; M?ssbauer、XPS及XRD测试数据证实, 碳模板可以调控Fe、N两种元素的耦合方式, 能够抑制金属Fe和Fe碳化物等非活性Fe物种的生成、诱导Fe-N4和其它Fe氮化物等强活性Fe-Nx物种的生长. 电化学测试数据表明, 复合材料具有提升的面积活性和质量活性, 且TOF值明显提高, 说明碳模板的引入增强了Fe-Nx位点的本征活性; 此外, 复合材料的氧还原过程为高效的4e-途径, 且较商业Pt/C催化剂表现出了优异的循环稳定性和甲醇耐受性.  相似文献   
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用混合法制备了工业乙苯脱氢催化剂,考察了新鲜催化剂和使用34个月后的催化剂的催化性能,并应用多种表征手段详细研究了所制备的工业催化剂在使用前后体相和表面的变化情况.活性测试结果发现,催化剂使用34个月后,活性下降12%,消炭后催化剂活性有所提高,但很快又恢复到失活后的水平.表征结果发现,积炭、钾的流失和催化剂活性相的烧结都不是导致催化剂失活的根本原因,而助催化剂钾的不均匀分布和催化剂活性相中Fe3 的还原可能是催化剂失活的主要原因.  相似文献   
147.
Large Stokes shift (LSS) red fluorescent proteins (RFPs) are highly desirable for bioimaging advances. The RFP mKeima, with coexisting cis- and trans-isomers, holds significance as an archetypal system for LSS emission due to excited-state proton transfer (ESPT), yet the mechanisms remain elusive. We implemented femtosecond stimulated Raman spectroscopy (FSRS) and various time-resolved electronic spectroscopies, aided by quantum calculations, to dissect the cis- and trans-mKeima photocycle from ESPT, isomerization, to ground-state proton transfer in solution. This work manifests the power of FSRS with global analysis to resolve Raman fingerprints of intermediate states. Importantly, the deprotonated trans-isomer governs LSS emission at 620 nm, while the deprotonated cis-isomer's 520 nm emission is weak due to an ultrafast cis-to-trans isomerization. Complementary spectroscopic techniques as a table-top toolset are thus essential to study photochemistry in physiological environments.  相似文献   
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The extraction of high‐purity proteins from the washing solution (WS) of rubber particles (also termed latex‐producing organelles) from laticifer cells in rubber tree for proteomic analysis is challenging due to the low concentration of proteins in the WS. Recent studies have revealed that proteins in the WS might play crucial roles in natural rubber biosynthesis. To further examine the involvement of these proteins in natural rubber biosynthesis, we designed an efficiency method to extract high‐purity WS proteins. We improved our current borax and phenol‐based method by adding reextraction steps with phenol (REP) to improve the yield from low protein concentration samples. With this new method, we extracted WS proteins that were suitable for proteomics. Indeed, compared to the original borax and phenol‐based method, the REP method improved both the quality and quantity of isolated proteins. By repeatedly extracting from low protein concentration solutions using the same small amount of phenol, the REP method yielded enough protein of sufficiently high‐quality from starting samples containing less than 0.02 mg of proteins per milliliter. This method was successfully applied to extract the rubber particle proteins from the WS of natural rubber latex samples. The REP‐extracted WS proteins were resolved by 2DE, and 28 proteins were positively identified by MS. This method has the potential to become widely used for the extraction of proteins from low protein concentration solutions for proteomic analysis.  相似文献   
150.
Methods for the site‐specific modification of proteins are useful for introducing biological probes into proteins and engineering proteins with novel activities. Herein, we genetically encode a novel noncanonical amino acid (ncAA) that contains an aryl isothiocyanate group which can form stable thiourea crosslinks with amines under mild conditions. We show that this ncAA (pNCSF) allows the selective conjugation of proteins to amine‐containing molecular probes through formation of a thiourea bridge. pNCSF was also used to replace a native salt bridge in myoglobin with an intramolecular crosslink to a proximal Lys residue, leading to increased thermal stability. Finally, we show that pNCSF can form stable intermolecular crosslinks between two interacting proteins.  相似文献   
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