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Recent Progresses in Synthesis of Cyclic Polymers in Large-scale and Some Functionalized Composites
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作者 QU Kairu GUO Lyuzhou +3 位作者 WANG Wenbin YAN Xuzhou CAO Xuezheng YANG Zhenzhong 《高等学校化学学报》 北大核心 2026年第1期42-57,共16页
Among various architectures of polymers,end-group-free rings have attracted growing interests due to their distinct physicochemical performances over the linear counterparts which are exemplified by reduced hydrodynam... Among various architectures of polymers,end-group-free rings have attracted growing interests due to their distinct physicochemical performances over the linear counterparts which are exemplified by reduced hydrodynamic size and slower degradation.It is key to develop facile methods to large-scale synthesis of polymer rings with tunable compositions and microstructures.Recent progresses in large-scale synthesis of polymer rings against single-chain dynamic nanoparticles,and the example applications in synchronous enhancing toughness and strength of polymer nanocomposites are summarized.Once there is the breakthrough in rational design and effective large-scale synthesis of polymer rings and their functional derivatives,a family of cyclic functional hybrids would be available,thus providing a new paradigm in developing polymer science and engineering. 展开更多
关键词 Cyclic polymer Large-scale synthesis single-chain nanoparticle Performance Composite
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Batch and continuous-flow asymmetric synthesis of d-pantothenic acid precursor enabled by immobilized ketoreductase mutant
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作者 Pan Hu Xiaofan Wu +6 位作者 Yi An Xianjing Zheng Liang Gao Yuan Tao Yajiao Zhang Zedu Huang Fener Chen 《Chinese Chemical Letters》 2026年第2期471-476,共6页
We report an immobilized enzyme-catalyzed batch and continuous-flow synthesis of optically pure ethyl(R)-pantothenate((R)-PaOEt),the direct precursor of d-pantothenic acid.Firstly,a ketoreductase mutant designated as ... We report an immobilized enzyme-catalyzed batch and continuous-flow synthesis of optically pure ethyl(R)-pantothenate((R)-PaOEt),the direct precursor of d-pantothenic acid.Firstly,a ketoreductase mutant designated as M2,carrying two-point mutations of F97L and M242F relative to the wild-type SSCR,was constructed by site-directed mutagenesis,exhibited simultaneously improved activity toward ethyl 2′-ketopantothenate(K-PaOEt)and isopropanol,and could effectively catalyze the stereoselective reduction of K-PaOEt to(R)-PaOEt by using isopropanol as the sacrificial co-substrate to regenerate NADPH.After screening six commercially available carriers,an amino resin LXTE-700 was identified as the best solid support for the immobilization of M2 via the glutaraldehyde activation method.Upon optimization of the immobilization process and reaction conditions,the fabricated immobilized enzyme M2@amino resin demonstrated excellent recyclability and reusability,with the complete conversion of K-PaOEt to(R)-PaOEt being still realized after 12 cycles of reuse.Finally,M2@amino resin-catalyzed synthesis of(R)-PaOEt was successfully implemented in continuous-flow,accomplishing a 6.3 times higher space-time yield than that with the batch synthesis(529.2 versus 84 g L^(-1) d^(-1)).Our developed flow biocatalysis system also features an outstanding operational stability,as evidenced by the 100%conversion rate achieved after 15 consecutive days of operation. 展开更多
关键词 Asymmetric synthesis Continuous flow synthesis Enzyme immobilization KETOREDUCTAsE D-Pantothenic acid
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Total synthesis of ADPr-ATP and evaluation of the antiviral activity of pRib-AMP prodrug
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作者 Tiantian Zhang Hanbo Liu +1 位作者 Junbiao Chang Yonggang Meng 《Chinese Chemical Letters》 2026年第2期419-423,共5页
ADPr-ATP is a natural nucleotide with three sugar rings and five pentavalent phosphorus,and can be produced through TIR-catalyzed ADP-ribosylation reactions for plant immunity.Here,we report the first total synthesis ... ADPr-ATP is a natural nucleotide with three sugar rings and five pentavalent phosphorus,and can be produced through TIR-catalyzed ADP-ribosylation reactions for plant immunity.Here,we report the first total synthesis of ADPr-ATP(1)with a total yield of 6.4%through 14 steps,featuring late-stage P(V)−N activation reaction of pyrophosphate(4)and 5′-phosphoromorpholidate(25).The protected adenosine 5′-phosphoromorpholidate(24)was prepared on the basis of a scalable to adenosine 5′′-monophosphate(2).The construction of P(V)−N bond in phosphoramidate is esteemed as a critical step as they are sufficiently stable in deprotection reactions.The chemical synthesis of ADPr-ATP can offer an appealing alternative to traditional enzymatic synthesis and fractionation methods.Furthermore,the pRib-AMP and its prodrug are also synthesized to evaluate cytotoxicity and anti-influenza activity in vitro. 展开更多
关键词 ADPr-ATP NUCLEOTIDE IMMUNITY Total synthesis ANTI-INFLUENZA
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Synthesis of transition metal nitride nanomaterials for electrocatalytic applications
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作者 Shuai Zhang Yiming Wang +2 位作者 Jiezhou Wang Xixi Wang Yiyao Ge 《Science China Materials》 2026年第3期1291-1316,共26页
Transition metal nitrides(TMNs)have been considered as promising alternative catalysts to noble metals in various electrocatalytic applications due to their noble metal-like electronic structures,high conductivity,low... Transition metal nitrides(TMNs)have been considered as promising alternative catalysts to noble metals in various electrocatalytic applications due to their noble metal-like electronic structures,high conductivity,low cost,as well as strong chemical stability,which could resist corrosion and oxidation in harsh operation conditions.Therefore,the rational design and controlled synthesis of TMNs with distinct structures play a vital role in developing highly efficient electrocatalysts toward electrochemical applications.This review provides a comprehensive summary of representative synthetic strategies for TMNs,such as direct nitridation,solidstate reaction,sol-gel assisted reaction,and wet-chemical reaction,presents the distinct structural characterizations,and demonstrates their advances in the electrochemical applications.Finally,we propose the remaining challenges and the future research directions on the exploration of TMNs with well-defined structures for electrocatalytic applications,which could shed light on the future development of high-performance electrocatalysts. 展开更多
关键词 ELECTROCATALYsTs transition metal nitrides controlled synthesis NANOMATERIALs
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Enantioconvergent reductive amidation of benzyl ammonium salts for synthesis of α-chiral amides
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作者 Saima Perveen Xicheng Wang +6 位作者 Tao Li Linghua Wang Shuai Zhang Yizhao Ouyang Xue Zhao Liang Xu Pengfei Li 《Chinese Chemical Letters》 2026年第1期300-305,共6页
α-Chiral amides are common in pharmaceuticals,agrochemicals,natural products,and peptides,prompting the need for new synthetic methods.Here,we introduce a nickel-catalyzed asymmetric reductive amidation method to syn... α-Chiral amides are common in pharmaceuticals,agrochemicals,natural products,and peptides,prompting the need for new synthetic methods.Here,we introduce a nickel-catalyzed asymmetric reductive amidation method to synthesizeα-chiral amides from benzyl ammonium salts and isocyanates.The key to success is using a chiral 2,2-bipyridine ligand(-)-Ph-SBpy,enabling high yield(up to 95%)and enantiomeric ratio(up to 98:2 er)under mild conditions.Addition of phenol prevents isocyanate polymerization by reversibly forming a carbamate intermediate,enhancing selectivity and efficiency.The synthetic utility is showcased through transformations of the enantioenriched amides,and the mechanism and enantioselectivity are supported by experimental and computational studies. 展开更多
关键词 α-Chiral amide AMIDATION Asymmetric synthesis Bipyridine ligand Nickel catalysis
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Scalable and rapid liquid synthesis of PtNi electrocatalyst for hydrogen evolution reaction
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作者 Liming Li Yanchang Liu +7 位作者 Peng Kang Donghui Feng Yuguang Zhang Hangxing Ren Jianrong Zeng He Zhu Qiang Li Xiaoya Cui 《Chinese Chemical Letters》 2026年第2期517-522,共6页
Structural engineering of Pt-based nanoalloys is crucial for the rational design and manufacturing of high-performance and low-cost electrocatalysts for hydrogen evolution reaction(HER).Here,we reported PtNi nanoparti... Structural engineering of Pt-based nanoalloys is crucial for the rational design and manufacturing of high-performance and low-cost electrocatalysts for hydrogen evolution reaction(HER).Here,we reported PtNi nanoparticles with a refined size of 2.71 nm and regular strains loaded on carbon black,synthesized using the high-temperature liquid shock(HTLS)method.This approach offers significant advantages over conventional synthesis methods,including high scalability,rapid reaction rates,and precise control over the size and shape of nanocrystals.Importantly,the synthesized PtNi electrocatalysts demonstrate outstanding catalytic activity and long-term stability for HER,achieving low overpotentials of 19 and 203 mV at current densities of 10 and 1000 mA/cm^(2),respectively.The superior performance can be attributed to the combination of a refined particle size,lattice strains,and synergistic effects between Pt and Ni.This rapid liquid-state synthesis demonstrated here holds great potential for scalable and industrial manufacturing of micro-/nano-catalysts. 展开更多
关键词 Hydrogen evolution reaction High-temperature liquid shock Pt-based nanocatalysts Rapid synthesis ELECTROCATALYsT
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Precise synthesis of ortho-deuterated aromatic derivatives:An arylthianthrenium salt-based platform approach
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作者 Yunhao Guan Xia Peng +3 位作者 Rong Fan Xiaoying Feng Hongguang Du Jiajing Tan 《Chinese Chemical Letters》 2026年第1期259-265,共7页
The deuterium labeling has garnered significant interest in drug discovery due to its critical role on improving pharmacokinetic and metabolic properties.However,despite its pharmaceutical value,the general and rapid ... The deuterium labeling has garnered significant interest in drug discovery due to its critical role on improving pharmacokinetic and metabolic properties.However,despite its pharmaceutical value,the general and rapid syntheses of aromatic scaffolds that contains deuterium remain an important yet elusive task.State-of-the-art approaches mainly relied on the transition metal-catalyzed C-H deuteration via the assistance of directing groups(DGs),which often suffered from over-deuteration and lengthy step counts required for installation and/or removal of DG.Herein,we report a generalizable synthetic linchpin strategy for the facile preparation of the ortho-deuterated aromatic core.Through capture of aryne-derived 1,3-zwitterion with heavy water,we synthesized an array of ortho-deuterated aryl sulfonium salts.These novel linchpins not only participated the transition metal catalyzed cross-coupling reaction as nucleophiles,but also served as aryl radical reservoirs under photochemical or electrochemical conditions,enabling facile and precise access to structurally diverse deuterated aromatics.Moreover,we have disclosed a novel EDA complex enabled direct arylation of phosphines under visible-light irradiation,further expanding the utility of our platform approach. 展开更多
关键词 Deuterium labeling Thianthrenium salts Precise synthesis Linchpin strategy Aryne chemistry Organosulfur chemistry
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Effects of changing assimilate supply on starch synthesis in maize kernels under high temperature stress
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作者 Teng Li Shumei Wang +5 位作者 Qing Liu Xuepeng Zhang Lin Chen Yuanquan Chen Wangsheng Gao Peng Sui 《Journal of Integrative Agriculture》 2026年第2期639-647,共9页
High temperature stress (HT) significantly reduces maize yield by impairing starch accumulation in kernels.However,the mechanism by which HT affects starch synthesis remains controversial-whether through reduced assim... High temperature stress (HT) significantly reduces maize yield by impairing starch accumulation in kernels.However,the mechanism by which HT affects starch synthesis remains controversial-whether through reduced assimilate supply or direct inhibition on kernel metabolism.To clarify these mechanisms,a heat-sensitive maize hybrid,Xianyu 335 (XY),was exposed to 30℃/20℃ (maximum/minimum temperature,control) and 40℃/30℃ for seven consecutive days during the seed setting stage.Synchronous pollination (SP),apical pollination (AP),and shading treatments were applied to manipulate the inherent source–sink ratio in maize plants.Results showed that apical kernel weight decreased by 11.9%under 40℃ in the SP treatment.The ^(13)C content,starch accumulation,and cell-wall invertase (CWIN) activity also declined by 15.9,36.7,and 16.4%,respectively,under HT.In the shading treatment,40℃/30℃ caused even greater reductions in^(13)C content,starch accumulation,and CWIN activity due to diminished assimilate supply.Conversely,in the AP treatment,starch content and CWIN activity increased by 22.0 and 18.5%,respectively,under 40℃/30℃,resulting in kernel weight and ^(13)C content similar to those in SP and shading treatments regardless of temperature.Consistent with apical kernels under AP,HT did not negatively affect middle kernels in either SP or shading treatments,as kernel weight and starch content remained unchanged under HT.Although all kernels were exposed to the same HT or control environment,their responses varied a lot.The impaired starch synthesis in apical kernels under HT was rescued by increasing carbon supply via AP treatment.The contrasting performance among middle kernels,apical kernels under AP,and apical kernels under SP or shading indicates that reduced carbon supply is a critical factor underlying inhibited starch accumulation.Our findings provide a theoretical basis for further understanding kernel abortion under HT. 展开更多
关键词 high temperature stress MAIZE seed setting stage cell wall invertase starch synthesis
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A comprehensive review on oxygen vacancies modified catalysts:Synthesis,characterization,and crucial role in catalytic ozonation
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作者 Fengchen Wang Yujia Xiang +9 位作者 Yuqi Zhang Xin Zhou Jing Zhang Chuanshu He Heng Zhang Zhaokun Xiong Peng Zhou Hongyu Zhou Yang Liu Bo Lai 《Chinese Chemical Letters》 2026年第2期253-262,共10页
Among various advanced oxidation processes(AOPs),heterogeneous catalytic ozonation has garnered extensive attention in wastewater treatment owing to its broad pH range applicability and the elimination of the need for... Among various advanced oxidation processes(AOPs),heterogeneous catalytic ozonation has garnered extensive attention in wastewater treatment owing to its broad pH range applicability and the elimination of the need for additional energy input.Enhancing catalyst activity by introducing oxygen vacancies has been used extensively in heterogeneous catalytic ozonation.This paper reviews prevalent methods for the construction and characterization of oxygen vacancies.Based on a thorough examination of existing research,the role of oxygen vacancies is categorized according to their primary mechanisms of action in heterogeneous catalytic ozonation.For example,modulation of the catalyst electronic structure to enhance electron transfer;participation in the reaction as an active site to generate radicals and non-radicals;and exposure of more metal sites to enhance the reaction.Lastly,the paper delineates the limitations and future research directions concerning the role of oxygen vacancies in catalytic ozonation.This review addresses the gap in existing literature concerning the role of oxygen vacancies in catalytic ozone systems,establishes a comprehensive theoretical framework to aid in the design of efficient ozone catalysts,and delves into the functionality of oxygen vacancies in heterogeneous catalytic ozone reactions. 展开更多
关键词 Catalytic ozonation Bulk defects surface defects Oxygen vacancies Degradation mechanism synthesis and characterization
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Chemical synthesis of the highly functionalized O-antigen repeating unit from Pseudomonas aeruginosa serotype O3 for glycoconjugate vaccine development
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作者 Guochao Lv Guangzong Tian +7 位作者 Guodong Chen Shengyong Zhu Jialong Bao Chunjun Qin Xiaopeng Zou Jing Hu Peter H.Seeberger Jian Yin 《Chinese Chemical Letters》 2026年第2期379-385,共7页
Pseudomonas aeruginosa is an opportunistic pathogen responsible for severe nosocomial infections.This multidrug-resistant bacterium can cause pneumonia and cystic fibrosis,both of which are associated with high morbid... Pseudomonas aeruginosa is an opportunistic pathogen responsible for severe nosocomial infections.This multidrug-resistant bacterium can cause pneumonia and cystic fibrosis,both of which are associated with high morbidity and mortality rates.The lipopolysaccharide of P.aeruginosa serves as an attractive target for the development of effective glycoconjugate vaccines.In this article,we report the first chemical synthesis of the highly challenging tetrasaccharide repeating unit of the P.aeruginosa serotype O3 O-antigen using a two-directional[1+(2+1)]glycosylation strategy.The synthesis is particularly challenging due to the poor nucleophilicity of the axial C4 hydroxyl group of l-galactose and the steric hindrance imposed by the 3S-hydroxybutyryl(Hb)chain.Furthermore,the presence of an acetyl group at the ortho position relative to the glycosylation site on l-galactose can lead to undesirable acetyl migration.Additionally,it is noteworthy that the selective removal of a 2-naphthylmethyl ether(Nap)during the late stages of synthesis,particularly in the presence of multiple benzyl groups,can be somewhat challenging to predict.Through the careful selection of synthetic strategies,building blocks,and optimized reaction conditions,we achieved the stereoselective glycosylations,selective oxidation of primary alcohols,remarkable enhancement of acceptor activity,and efficient introduction of the 3S-Hb group.The synthetic methodology presented in this work serves as a valuable reference for the preparation of structurally related oligosaccharides.By incorporating an aminopropyl linker,the target tetrasaccharide facilitates glycan microarray preparation and in vivo immunological assessments,thereby accelerating progress toward a synthetic glycoconjugate vaccine for P.aeruginosa. 展开更多
关键词 Chemical synthesis Pseudomonas aeruginosa Lipopolysaccharide steric hindrance Poor nucleophilicity Acetyl migration Glycoconjugate vaccines
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Beyond origin:multimodal AI synthesis to resolve cancers of unknown primary
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作者 Hongru Shen Xiangchun Li 《Cancer Biology & Medicine》 2026年第1期21-29,共9页
For decades,the central dogma of oncology has been that a cancer’s identity is inextricably linked to its anatomical origin.This principle underpins the entire diagnostic and therapeutic framework,from histology-base... For decades,the central dogma of oncology has been that a cancer’s identity is inextricably linked to its anatomical origin.This principle underpins the entire diagnostic and therapeutic framework,from histology-based classification to site-specific treatment guidelines.Yet,this framework catastrophically fails for a substantial population of patients diagnosed with cancer of unknown primary(CUP).These patients present metastatic disease,yet their primary tumors remain elusive despite exhaustive clinical workup1.CUP,accounting for 1%-3%of all cancer diagnoses,is an enigma with devastating consequences;the median overall survival is only 2-12 months2-4.The inability to pinpoint an origin forces clinicians to rely on broad-spectrum empirical chemotherapy,such as taxane-carboplatin regimens,which have limited efficacy and exclude patients from the promise of targeted therapies and clinical trials5.CUP is not only a diagnostic challenge but also an indictment of the siloed approach to understanding malignancy:this cancer highlights the limitations of origin-based diagnostic frameworks.However,the confluence of high-dimensional biological data and advanced artificial intelligence(AI)is now poised to address this long-standing diagnostic limitation and to herald a new era for not only CUP but also oncology as a whole(Figure 1). 展开更多
关键词 central dogma oncology cancer unknown primary high dimensional biological data clinical trials diagnostic framework artificial intelligence targeted therapies multimodal AI synthesis
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Advances and challenges in the synthesis of N-fluoroalkyl compounds
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作者 Lvqi Jiang Wenbin Yi 《Science China Chemistry》 2026年第2期535-538,共4页
The incorporation of small fluorinated functional groups,including CF_(3),CF_(2)H,and CFH_(2),into small molecules represents a crucial strategy for modulating their physical,chemical,and biological characteristics[1,... The incorporation of small fluorinated functional groups,including CF_(3),CF_(2)H,and CFH_(2),into small molecules represents a crucial strategy for modulating their physical,chemical,and biological characteristics[1,2].Consequently,organofluorine compounds are frequently encountered in pharmaceuticals and agrochemicals.Significant advances have been made in the introduction of fluoroalkyl groups into small molecules since the beginning of the 21st century. 展开更多
关键词 introduction fluoroalkyl groups incorporation small fluorinated functional groupsincluding synthesis N fluoroalkyl compounds fluoroalkyl compounds fluorinated functional groups CF H small molecules
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积石山M_(S)6.2、乌什M_(S)7.1地震前后地电场变化特征研究
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作者 范莹莹 安张辉 +1 位作者 吴优 林毅 《地震工程学报》 北大核心 2026年第1期197-204,共8页
利用积石山M_(S)6.2地震和乌什M_(S)7.1地震震中周围的地电场台站观测数据,研究地震发生前后地电场能谱值变化。结果表明:(1)在积石山M_(S)6.2地震发生前,武胜驿、松山和平凉等台观测到地电场低频成分能谱值有显著增大的现象;(2)乌什M_(... 利用积石山M_(S)6.2地震和乌什M_(S)7.1地震震中周围的地电场台站观测数据,研究地震发生前后地电场能谱值变化。结果表明:(1)在积石山M_(S)6.2地震发生前,武胜驿、松山和平凉等台观测到地电场低频成分能谱值有显著增大的现象;(2)乌什M_(S)7.1地震发生前,乌什、温泉和乌鲁木齐等台均观测到地电场低频成分能谱值先增大后降低的明显变化;(3)初步分析认为,地震前地电场异常现象主要是由于震源孕育过程中激发的低频电磁辐射传播至台站所致。然而,测区地下介质的形变也可能激发局部区域的低频电磁辐射,这一因素同样不容忽视。 展开更多
关键词 积石山M_(s)6.2地震 乌什M_(s)7.1地震 地电场 能谱 变化特征
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2022年云南红河M_(S)5.0地震震源参数测定
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作者 李姣 姜金钟 +1 位作者 顾慧冬 叶泵 《地震研究》 北大核心 2026年第2期177-189,共13页
针对2022年云南红河M_(S)5.0地震震源深度测定结果存在显著差异的问题,基于云南地震台网记录的宽频带数字波形和区域一维速度模型,利用CAP方法反演了红河地震序列中M_(S)5.0和M_(S)3.5两次地震的震源机制解和最佳震源深度,然后采用sPL... 针对2022年云南红河M_(S)5.0地震震源深度测定结果存在显著差异的问题,基于云南地震台网记录的宽频带数字波形和区域一维速度模型,利用CAP方法反演了红河地震序列中M_(S)5.0和M_(S)3.5两次地震的震源机制解和最佳震源深度,然后采用sPL深度震相进一步测定其震源深度,最后综合震源深度、震源机制解和区域构造地质情况初步探讨了此次地震的发震机理。结果表明:2022年红河M_(S)5.0地震是以右旋走滑型为主、兼具少量逆冲分量的地震,最佳双力偶机制解为节面Ⅰ:33°/75°/18°,节面Ⅱ:298°/73°/164°,震源深度为3~4 km;M_(S)3.5地震最佳双力偶机制解为节面Ⅰ:31°/83°/7°,节面Ⅱ:300°/83°/173°,震源深度为7~8 km。综合此次M_(S)5.0主震震源深度较浅,以及红河断裂带南段断层构造相对北段较为简单等因素,初步分析认为是上地壳断层浅部区域应力积累导致M_(S)5.0主震的发生,主震后的应力调整导致了较深处的M_(S)3.5余震的发生,同时,由于震源区断层构造较为平直简单、应力积累区域较为集中,两次较大地震发生后余震很少。 展开更多
关键词 红河M_(s)5.0地震 震源深度 震源机制解 sPL震相 构造意义
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考虑气热动态特性的P2G-CCS综合能源优化调度
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作者 张涛 王金 +3 位作者 孟衡 刘文丽 司诚真 熊鸣之 《太阳能学报》 北大核心 2026年第1期253-262,共10页
提出考虑气热动态特性的电转气-碳捕集(P2G-CCS)综合能源调度策略。首先,将气热能流特性方程转化至s域,得到二端口传递函数模型,利用卷积定理对其进行Laplace逆变换,从而得到任意时间断面的时域动态模型。其次,在动态模型基础上建立包含... 提出考虑气热动态特性的电转气-碳捕集(P2G-CCS)综合能源调度策略。首先,将气热能流特性方程转化至s域,得到二端口传递函数模型,利用卷积定理对其进行Laplace逆变换,从而得到任意时间断面的时域动态模型。其次,在动态模型基础上建立包含P2G-CCS的IES园区,结合碳交易机制减少碳排放。最后以IEEE-39-20-6为例,建立电-气-热能源系统,通过设置不同调度场景进行对比分析。结果表明,所建动态模型和策略有效提高气热网潮流计算效率的同时,降低碳排放,提高系统调度经济性。 展开更多
关键词 综合能源 P2G-CCs 奖惩阶梯碳交易 气热s域模型
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Java+SSM架构高校教材征订系统开发
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作者 曾雪松 尚光龙 张龙龙 《福建电脑》 2026年第1期80-85,共6页
为提升高校教材征订管理的专业化水平与工作效率,本文设计并开发了一款基于Java+SSM架构的高校教材征订管理系统。系统采用B/S结构,利用Java语言与SSM框架开发,结合MySQL数据库,实现了用户管理、教材征订及统计分析等功能。应用实践表明... 为提升高校教材征订管理的专业化水平与工作效率,本文设计并开发了一款基于Java+SSM架构的高校教材征订管理系统。系统采用B/S结构,利用Java语言与SSM框架开发,结合MySQL数据库,实现了用户管理、教材征订及统计分析等功能。应用实践表明,该系统能够将教材征订周期缩短50%以上,错误率降至1%以下,为高校教材管理提供了高效、可靠的数字化解决方案。 展开更多
关键词 JAVA语言 ssM架构 教材征订 管理系统 B/s结构
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SrTiO_(3)的合成及应用研究进展
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作者 周杰 石祥辉 +1 位作者 王璐 朱蓓蓓 《化工新型材料》 北大核心 2026年第2期60-65,71,共7页
作为一种新型钙钛矿材料,SrTiO_(3)具有稳定性好、光电性能优异等显著优点,日益受到科学界的追捧。重点综述了SrTiO_(3)的主要合成方法,包括水热法、溶剂热法、固相法、熔盐法、声化学法和溶胶-凝胶法等,并探讨了SrTiO_(3)在光催化、储... 作为一种新型钙钛矿材料,SrTiO_(3)具有稳定性好、光电性能优异等显著优点,日益受到科学界的追捧。重点综述了SrTiO_(3)的主要合成方法,包括水热法、溶剂热法、固相法、熔盐法、声化学法和溶胶-凝胶法等,并探讨了SrTiO_(3)在光催化、储能、传感和燃料电池等领域的应用,指出目前研究中存在的主要问题,并对未来的发展方向进行了展望。 展开更多
关键词 钛酸锶 钙钛矿 合成 应用 进展
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抗高血压1类新药——221s(2,9)的纯化工艺
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作者 余丽丽 李明阳 +4 位作者 马瑞龙 杨宽 胡娅琪 刘少静 秦蓓 《当代化工》 2026年第1期79-83,共5页
为了获取抗高血压药物221s(2,9)的快速纯化工艺条件,采用加压柱层析法、砂芯漏斗快速柱层析法以及连续的减压柱层析法对粗产物予以初步分离,且联合重结晶法开展进一步纯化操作。结果表明:当样品硅胶质量比为1∶10时,加压柱层析法分离度... 为了获取抗高血压药物221s(2,9)的快速纯化工艺条件,采用加压柱层析法、砂芯漏斗快速柱层析法以及连续的减压柱层析法对粗产物予以初步分离,且联合重结晶法开展进一步纯化操作。结果表明:当样品硅胶质量比为1∶10时,加压柱层析法分离度良好,与重结晶结合可达成一定纯化成效,然而其效率及纯化产率偏低;砂芯漏斗快速柱层析法虽效率较高,但分离效果欠佳,即便后续进行二次重结晶亦无法实现纯化目的;连续的减压柱层析法在样品硅胶质量比达1∶12时,回收率可达83.5%,粗分离纯度为93.2%,仅通过一次重结晶即可实现纯化目标。经优化后的纯化方法可快速且高效地纯化221s(2,9),为后续中试工艺研究奠定了坚实基础。 展开更多
关键词 221s(2 9) 纯化 工艺 优化 分离 药物 结晶
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基于C#和S7-1200 PLC的立体仓库控制系统设计
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作者 晏华成 芮庆忠 龙涛元 《自动化技术与应用》 2026年第1期6-11,共6页
针对触摸屏监控系统不能满足大中型立体仓库对数据进行存储和处理的功能需求,在Visual Studio 2019集成开发环境中,采用C#语言开发一套立体仓库上位机控制系统。以多线程的方式实时读取库位信息;以S7-1200 PLC作为主控制器,设计产品的... 针对触摸屏监控系统不能满足大中型立体仓库对数据进行存储和处理的功能需求,在Visual Studio 2019集成开发环境中,采用C#语言开发一套立体仓库上位机控制系统。以多线程的方式实时读取库位信息;以S7-1200 PLC作为主控制器,设计产品的自动入库和自动出库程序流程,采用SCL语言设计了库位先进先出的控制程序。C#和S7-1200 PLC之间采用S7通信的方式控制立体仓库的出入库操作和库位信息采集,3年的现场运行情况表明,整个系统能在上位机上对立体仓库进行手动控制和自动控制,能精确快速地进行入库出库操作,运行平稳,上位机上能正确实时显示库位信息,达到了预期的结果。 展开更多
关键词 C# 立体仓库 上位机 多线程 s7-1200 PLC s7通信
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基于改进YOLOv5s的水稻秸秆量识别检测方法
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作者 葛宜元 孙修涵 +3 位作者 孟庆祥 梁秋艳 马浏轩 杜爽 《农机化研究》 北大核心 2026年第2期116-123,共8页
水稻秸秆腐解周期是衡量秸秆还田效果的重要指标。为提升水稻秸秆腐解效果,准确测量留于田间的秸秆量,将水稻收割后的田间秸秆状态分为铺放于田间的堆叠秸秆和根茎留于原位的留茬秸秆两种,并提出了一种基于改进YOLOv5s的水稻秸秆量识别... 水稻秸秆腐解周期是衡量秸秆还田效果的重要指标。为提升水稻秸秆腐解效果,准确测量留于田间的秸秆量,将水稻收割后的田间秸秆状态分为铺放于田间的堆叠秸秆和根茎留于原位的留茬秸秆两种,并提出了一种基于改进YOLOv5s的水稻秸秆量识别算法。采用色彩追踪算法结合HSV模型,对堆叠秸秆量进行检测;通过深度学习算法、OpenCV算法结合HSV模型和注意力模块,对留茬秸秆进行检测;引入CBAM注意力模块,同时通过非极大值抑制去除重叠锚定框,以消除重复计数的影响,从而实现对秸秆量的精准检测。通过训练模块对2174张水稻秸秆图片进行深度学习,识别精确率可达92.092%,召回率为96.144%,目标检测损失值为2.397%。实际田间秸秆检测时,正确检出率可达85.85%。改进后的算法可有效检出留茬秸秆并通过串口返回秸秆数量,为秸秆腐解剂的精量施放和还田模式的建立提供更为精确的数据支持。 展开更多
关键词 水稻秸秆量识别 改进YOLOv5s 注意力机制 图像处理 非极大值抑制
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