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Food Engineering Principle课程校企协同教学的创新探索
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作者 周然 蔡紫晨 +1 位作者 余克志 沈恒 《中国现代教育装备》 2026年第1期138-141,共4页
本文探讨了在Food Engineering Principle课程中实施校企协同教学模式的必要性和优势。面对留学生教育中实践教学的挑战,提出了通过高校与企业的合作,引入企业技术人员参与教学,培养留学生的实践能力和理论知识应用能力。校企协同教学... 本文探讨了在Food Engineering Principle课程中实施校企协同教学模式的必要性和优势。面对留学生教育中实践教学的挑战,提出了通过高校与企业的合作,引入企业技术人员参与教学,培养留学生的实践能力和理论知识应用能力。校企协同教学模式充分发挥高校教师和企业教师各自优势,优化实践教学,提高了教学质量。实践证明,这种教学模式提高了留学生的培养水平,有利于提高我国的国际影响力。 展开更多
关键词 校企协同 留学生 Food engineering Principle 食品工程原理
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Synthetic metabolic engineering of functional crops:Boosting nutrition and human health 被引量:3
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作者 Nan Chai Jie Xu +12 位作者 Ruixiang Zhang Guangzhou Li Jun Wen Liying Su Yang Xue Tie Li Jialin Liu Dongchang Zeng Jiantao Tan Jiaqi Huang Letian Chen Yao-Guang Liu Qinlong Zhu 《The Crop Journal》 2026年第1期8-21,共14页
A growing global population and the increasing prevalence of diet-related health issues such as“hidden hunger”,obesity,hypertension,and diabetes necessitate a fundamental rethinking of crop design and breeding.Synth... A growing global population and the increasing prevalence of diet-related health issues such as“hidden hunger”,obesity,hypertension,and diabetes necessitate a fundamental rethinking of crop design and breeding.Synthetic metabolic engineering offers a method to modify and redesign metabolic pathways to increase the nutritional value of crops.We summarize recent advances in the biofortification of key nutrients including provitamin A,vitamin C,vitamin B9,iron,zinc,anthocyanins,flavonoids,and unsaturated fatty acids.We discuss the potential of multi-gene stacking,gene editing,enzyme engineering,and artificial intelligence in synthetic metabolic engineering.We propose future research directions and potential solutions centered on leveraging AI-driven systems biology,precision gene editing,enzyme engineering,agrobacterium-mediated genotype-independent transformation,and modular metabolic engineering strategies to develop next-generation nutritionally enhanced super crops and transform global food systems. 展开更多
关键词 Synthetic biology Synthetic metabolism engineering Functional crops Multigene stacking and gene editing Artificial intelligence
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基于PIE-Engine的长江干流水体提取方法与水质监测分析
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作者 杜建超 王鼎力 +1 位作者 白晋颖 李婷婷 《地理空间信息》 2026年第1期79-84,共6页
利用遥感影像研究长江流域的水资源状况,对于长江流域的生态环境保护具有重要意义。基于2014—2023年30 m分辨率Landsat8遥感影像,利用PIE-Engine Studio平台和NDWI反演模型提取了长江干流的水体并计算了水域面积;通过计算叶绿素a浓度... 利用遥感影像研究长江流域的水资源状况,对于长江流域的生态环境保护具有重要意义。基于2014—2023年30 m分辨率Landsat8遥感影像,利用PIE-Engine Studio平台和NDWI反演模型提取了长江干流的水体并计算了水域面积;通过计算叶绿素a浓度、水体透明度和悬浮泥沙浓度分析了长江干流水质。结果表明,长江水域面积的最大、最小值分别在2019年、2014年;叶绿素a浓度的最大、最小值分别在2021年、2014年;水体透明度的最大、最小值分别在2023年、2014年;悬浮泥沙浓度的最大、最小值分别在2021年、2022年。长江上游的水量小、水质好,沿着流域向下长江干流水量增大、水质变差;随着对长江流域的治理,干流水质呈逐年变好的趋势。 展开更多
关键词 水体提取 遥感影像处理 水质分析 长江 PIE-engine
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聚力食品工程前沿ENGINEERING Foods正式起航
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《中国食品学报》 北大核心 2026年第1期439-439,共1页
2026年1月27日,中国工程院在北京召开Engineering刊群建设与发展会议,正式发布了以旗舰主刊Engineering为核心、19个专业领域子刊的“1+19”工程科技期刊集群新体系,擘画出构建世界一流工程科技期刊群的宏伟蓝图。在此背景下,Engineerin... 2026年1月27日,中国工程院在北京召开Engineering刊群建设与发展会议,正式发布了以旗舰主刊Engineering为核心、19个专业领域子刊的“1+19”工程科技期刊集群新体系,擘画出构建世界一流工程科技期刊群的宏伟蓝图。在此背景下,Engineering系列子刊的新成员——ENGINEERING Foods应运而生(ISSN2097-7778)。 展开更多
关键词 期刊集群 中国工程院 engineERING Foods engineERING
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一种基于Unreal Engine 5的虚拟校园系统设计
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作者 辛昊宇 《鞋类工艺与设计》 2026年第6期173-175,共3页
随着虚拟现实与数字媒体的发展,传统校园宣传与信息可视化方式在沉浸感和交互性上存在不足。虚拟校园也因此受到关注,并成为提升校园展示与服务体验的重要方向。本文基于Unreal Engine 5设计并实现了一套虚拟校园系统,该系统既能完整呈... 随着虚拟现实与数字媒体的发展,传统校园宣传与信息可视化方式在沉浸感和交互性上存在不足。虚拟校园也因此受到关注,并成为提升校园展示与服务体验的重要方向。本文基于Unreal Engine 5设计并实现了一套虚拟校园系统,该系统既能完整呈现校园整体风貌,又支持用户在第一人称和第三人称视角下自由漫游;同时可通过交互式窗口获取校园信息,实现场景展示与信息服务的结合。本研究验证了UE5在建筑可视化与校园导览中的优势与应用潜力,也为后续基于UE5的沉浸式系统设计提供了参考。 展开更多
关键词 Unreal engine 5 虚拟校园 建筑可视化 交互设计 信息可视化
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Flow combustion characteristics and performance of Al powder-fueled water ramjet engine under different injection schemes
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作者 Shixuan HUI Xi HUANG +6 位作者 Xile QIAN Zhentao JI Tao WANG Tao YAN Kejing XU Hui QI Pingan LIU 《Chinese Journal of Aeronautics》 2026年第2期162-177,共16页
Powder-Fueled Water Ramjet Engine(PFWRE)is the most promising powerplant in underwater high-speed propulsion.However,the effect of powder injection mode on its performance and the mechanism of this effect are not well... Powder-Fueled Water Ramjet Engine(PFWRE)is the most promising powerplant in underwater high-speed propulsion.However,the effect of powder injection mode on its performance and the mechanism of this effect are not well understood.In this paper,a computational framework for multiphase combustion flow is developed and validated.Further,the effects of different injection schemes on flow combustion characteristics and engine performance are evaluated via simulation.Our findings indicate that the dominant recirculation zone in front of the primary water inlet delivers water vapor to the combustor head,providing the necessary oxidant for the ignition and combustion of Al particles.Changing the injection parameters directly affects the flame zone distribution and the ability of the recirculation zone to deliver water vapor,leading to variations in particle ignition delay.The engine combustion efficiency and specific impulse efficiency exhibit a negative correlation with injection height,peaking before declining with increased injection angle.It is shown that particle mixing degree and particle dispersion degree are closely related to engine performance.Enhanced particle mixing in front of the primary water inlet and particle dispersion behind the secondary water inlet are considered favorable approaches to improve engine performance,which promotes the particle combustion process and improves the heat-work conversion efficiency. 展开更多
关键词 engine performance Injection scheme Multiphase combustion Numerical simulation Powder-fueled water ramjet engine
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Tests and Refinement of a Mini-Power Plant with a Piston Engine Powered by Propane-Butane Blend and Syngas
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作者 Leonid Plotnikov Leonid Osipov +2 位作者 Danil Davydov Dmitry Krasilnikov Alexander Ryzhkov 《Energy Engineering》 2026年第4期492-504,共13页
The use of alternative fuels to generate mechanical and thermal energy in engines is a promising and sought-after technological area with its own unique advantages and characteristics.Consequently,enhancing the techni... The use of alternative fuels to generate mechanical and thermal energy in engines is a promising and sought-after technological area with its own unique advantages and characteristics.Consequently,enhancing the technical,economic,and environmental efficiency of gas engines fueled by propane-butane mixture and syngas through optimized operating cycle parameters(including valve timing,ignition timing angle,fuel mixture composition,and compression ratio)is a pressing imperative for scientific and energy sectors.The aim of the study was to investigate and compare the performance of an engine with different compression ratios running on a propane-butane mixture and laboratory syngas.The research’s primary originality lies in its joint study of syngas production technology and the evaluation of the efficiency of a mini power plant fueled by the resulting gas and conventional gas.This article presents a description of the experimental setup,data on measuring instruments,technical characteristics of the mini-power plant,the process for obtaining laboratory syngas,the properties of the gaseous fuels used,and experimental methods.Data on air and fuel consumption,as well as engine efficiency at different compression ratios when running on a propane-butane mixture and syngas,were obtained and analyzed.Converting an engine from a propane-butane mixture to syngas results in a reduction in power of almost 30% and efficiency by 13%–33%.Increasing the compression ratio by 0.9 units causes a rise in maximum efficiency from 0.177 to 0.235 for an engine running on a propane-butane mixture and an increase in maximum efficiency from 0.136 to 0.161 for a syngas engine.It has been confirmed that the compression ratio significantly impacts the technical and economic performance of an engine running on gaseous fuel.The obtained results can be used to modernize existing engines for operation on alternative fuels(syngas)and to design new mini-power plants with promising technical,economic,and environmental characteristics. 展开更多
关键词 Mini-power plant piston engine syngas production propane-butane mixture SYNGAS engine testing operating cycle fine-tuning power and efficiency
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De novo production of lacto-N-neotetraose by metabolic engineering of Saccharomyces cerevisiae as a cell factory
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作者 Han Liu Yingjie Liu +4 位作者 Haitao Hu Chenlu Zhu Shuang Zhang Xiaomei Lyu Ruijin Yang 《Food Science and Human Wellness》 2026年第2期608-622,共15页
Lacto-N-neotetraose(LNn T)is a crucial neutral core human milk oligosaccharide(HMO).In this study,we established a LNn T-producing Saccharomyces cerevisiae cell factory through comprehensive metabolic engineering.Spec... Lacto-N-neotetraose(LNn T)is a crucial neutral core human milk oligosaccharide(HMO).In this study,we established a LNn T-producing Saccharomyces cerevisiae cell factory through comprehensive metabolic engineering.Specifically,the de novo biosynthetic pathway of LNn T was assembled by heterologously expressing the lactose permease(lac12)from Kluyveromyces lactis and the glycosyltransferase from Neisseria meningitidis in S.cerevisiae.Subsequently,carbon source regulation based on the glucose-sensitive GAL regulatory system was employed to optimize the expression time of heterologous genes,achieving a production of 15.61 mg/L of LNn T in shake-flask fermentation.In addition,the key rate-limiting steps involved in LNn T synthesis pathway were identified and the corresponding genes were overexpressed to enhance LNn T production,resulting in an 8-fold increase in LNn T titer compared to that of parental strain.To our knowledge,this is the first report on LNn T biosynthesis in S.cerevisiae,opening up the possibility of green production of LNn T using food-safe microorganisms. 展开更多
关键词 Lacto-N-neotetraose Saccharomyces cerevisiae GAL system Modular engineering
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Boron‑Insertion‑Induced Lattice Engineering of Rh Nanocrystals Toward Enhanced Electrocatalytic Conversion of Nitric Oxide to Ammonia
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作者 Peng Han Xiangou Xu +13 位作者 Weiwei Chen Long Zheng Chen Ma Gang Wang Lei Xu Ping Gu Wenbin Wang Qiyuan He Zhiyuan Zeng Jinlan Wang Dong Su Chongyi Ling Zhengxiang Gu Ye Chen 《Nano-Micro Letters》 2026年第3期85-102,共18页
Electrocatalytic nitric oxide(NO)reduction reaction(NORR)is a promising and sustainable process that can simultaneously realize green ammonia(NH3)synthesis and hazardous NO removal.However,current NORR performances ar... Electrocatalytic nitric oxide(NO)reduction reaction(NORR)is a promising and sustainable process that can simultaneously realize green ammonia(NH3)synthesis and hazardous NO removal.However,current NORR performances are far from practical needs due to the lack of efficient electrocatalysts.Engineering the lattice of metal-based nanomaterials via phase control has emerged as an effective strategy to modulate their intrinsic electrocatalytic properties.Herein,we realize boron(B)-insertion-induced phase regulation of rhodium(Rh)nanocrystals to obtain amorphous Rh_(4)B nanoparticles(NPs)and hexagonal close-packed(hcp)RhB NPs through a facile wet-chemical method.A high Faradaic efficiency(92.1±1.2%)and NH_(3) yield rate(629.5±11.0μmol h^(−1) cm^(−2))are achieved over hcp RhB NPs,far superior to those of most reported NORR nanocatalysts.In situ spectro-electrochemical analysis and density functional theory simulations reveal that the excellent electrocatalytic performances of hcp RhB NPs are attributed to the upshift of d-band center,enhanced NO adsorption/activation profile,and greatly reduced energy barrier of the rate-determining step.A demonstrative Zn-NO battery is assembled using hcp RhB NPs as the cathode and delivers a peak power density of 4.33 mW cm−2,realizing simultaneous NO removal,NH3 synthesis,and electricity output. 展开更多
关键词 Lattice engineering of nanomaterials Phase engineering of nanomaterials Wet-chemical synthesis Metal nanocatalysts Nitric oxide reduction reaction Electrocatalytic ammonia synthesis
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Engineered bacterial drugs in cancer and IBD therapy:challenges and future perspectives
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作者 Ru-Ying Zhan Jin Hai Zheng 《Biomedical Engineering Communications》 2026年第3期1-3,共3页
Tumor immunotherapy has been recognized by Science as the most promising therapeutic approach for tumor eradication,with engineered bacteria emerging as a particularly promising modality.As a novel drug delivery platf... Tumor immunotherapy has been recognized by Science as the most promising therapeutic approach for tumor eradication,with engineered bacteria emerging as a particularly promising modality.As a novel drug delivery platform,the engineered bacterial therapeutics demonstrate exceptional targeting precision and favorable safety profiles.Through attenuation and programmable control strategies,these systems enable highly specific drug delivery,showing significant therapeutic potential in oncology and inflammatory bowel disease(IBD). 展开更多
关键词 drug delivery platformthe engineered bacterial therapeutics engineered bacteria tumor immunotherapy attenuation programmable control strategiesthese inflammatory bowel disease drug delivery platform
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Defect engineering of TiO_(2) for efficient photocatalytic transfer hydrogenation with palladium as cocatalyst and water as a hydrogen source
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作者 En Zhao Jingyuan Su +6 位作者 Hehe Fan Bing Nan Lina Li Haifeng Qi Weiwei Fang Wenjun Zhang Zupeng Chen 《Green Energy & Environment》 2026年第2期557-564,共8页
Photocatalytic transfer hydrogenation using water as the proton source has emerged as an attractive and green approach for the catalytic reduction of unsaturated bonds.Herein,we report an oxygen-defective TiO_(2)-supp... Photocatalytic transfer hydrogenation using water as the proton source has emerged as an attractive and green approach for the catalytic reduction of unsaturated bonds.Herein,we report an oxygen-defective TiO_(2)-supported palladium catalyst(Pd-TiO_(2)-Ov)for efficient photocatalytic water-donating transfer hydrogenation of anethole towards 4-n-propylanisole in a high yield of 99.9%,which is significantly higher compared to the pristine TiO_(2)-supported palladium catalyst(Pd-TiO_(2),74%).The enhanced performance is ascribed to the presence of oxygen vacancies,which facilitate light absorption and suppress the recombination of photogenerated electron-hole pairs.Furthermore,the Pd-TiO_(2)-Ov is versatile in hydrogenating various alkene substrates including those with hydroxyl,ether,fluoride,and chloride functional groups in full conversion,thus offering a green method for transfer hydrogenation of alkenes.This study provides new insights and advances in current hydrogenation technology with water as the proton source. 展开更多
关键词 PHOTOCATALYSIS Transfer hydrogenation PALLADIUM Defect engineering Water splitting
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Research and Practice of a New Training Model for Software Engineering Courses Based on Generative AI and OBE Concepts
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作者 Shengshai Zhang Xiaodong Yu +1 位作者 Jianhui Jiang Lixiao Zhang 《计算机教育》 2026年第3期139-147,共9页
With the advent of the AI era,how can students effectively utilize generative AI large models to assist in course learning?At the same time,how can teachers utilize generative AI tools and the teaching concept of OBE ... With the advent of the AI era,how can students effectively utilize generative AI large models to assist in course learning?At the same time,how can teachers utilize generative AI tools and the teaching concept of OBE to stimulate students’innovative consciousness and teamwork ability,enabling students to identify some problems in a certain industry or field and creatively propose feasible solutions,and truly achieve the cultivation of new models in software engineering course teaching with the assistance of generative AI tools?This paper presents research and practice on a new model for cultivating software engineering courses that integrates generative AI and OBE,introduces the specific process of teaching reform and practice,and finally explains the achievements of teaching reform. 展开更多
关键词 Generative AI OBE Software engineering Teaching reform
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Band engineering and recombination mechanisms in lead-free perovskite solar cells
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作者 Wei Liu Tingxue Zhou +1 位作者 Liang Chu Xing’ao Li 《Chinese Physics B》 2026年第2期703-712,共10页
All-inorganic lead-free perovskite solar cells have emerged as environmentally benign candidates;however,their device performance is still constrained by pronounced carrier recombination losses in the bulk and at inte... All-inorganic lead-free perovskite solar cells have emerged as environmentally benign candidates;however,their device performance is still constrained by pronounced carrier recombination losses in the bulk and at interfaces.By combining energy band alignment analysis with detailed modeling of recombination mechanisms,a systematic strategy for optimizing hole transport layers is developed.The results reveal that a negative valence band offset produces a cliff-like interface,which facilitates hole extraction while also accounting for the observed variations in open-circuit voltage.Furthermore,short-circuit current losses are quantitatively attributed to different recombination pathways,modeled by incorporating radiative,Shockley–Read–Hall,Auger,and interface recombination processes.This comprehensive approach not only clarifies the correlation between energy level alignment and recombination dynamics but also highlights the competing roles of band offset and interface defects in determining device performance.The optimized device architecture,based on Ge-based lead-free perovskites,achieves a power conversion efficiency of 25.1%,with an open-circuit voltage of 1.29 V,a short-circuit current density of 22.5 mA·cm^(-2),and a fill factor of 86.3%.These findings provide theoretical guidance for designing stable,high-performance,and environmentally friendly lead-free perovskite solar cells. 展开更多
关键词 perovskite solar cells LEAD-FREE band engineering recombination
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Recent advances and perspectives in interface engineering of high-performance alloys
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作者 Yuan Zhu Tongbo Jiang +7 位作者 Honghui Wu Faguo Hou Xiaoye Zhou Feiyang Wang Shuize Wang Junheng Gao Haitao Zhao Chaolei Zhang 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期53-67,共15页
High-performance alloys are indispensable in modern engineering because of their exceptional strength,ductility,corrosion resistance,fatigue resistance,and thermal stability,which are all significantly influenced by t... High-performance alloys are indispensable in modern engineering because of their exceptional strength,ductility,corrosion resistance,fatigue resistance,and thermal stability,which are all significantly influenced by the alloy interface structures.Despite substantial efforts,a comprehensive overview of interface engineering of high-performance alloys has not been presented so far.In this study,the interfaces in high-performance alloys,particularly grain and phase boundaries,were systematically examined,with emphasis on their crystallographic characteristics and chemical element segregations.The effects of the interfaces on the electrical conductivity,mechanical strength,toughness,hydrogen embrittlement resistance,and thermal stability of the alloys were elucidated.Moreover,correlations among various types of interfaces and advanced experimental and computational techniques were examined using big data analytics,enabling robust design strategies.Challenges currently faced in the field of interface engineering and emerging opportunities in the field are also discussed.The study results would guide the development of next-generation high-performance alloys. 展开更多
关键词 interface engineering crystallographic boundary chemical boundary alloy design
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Inorganic Interface Engineering for Stabilizing Zn Metal Anode
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作者 Shuguo Yuan Wenqi Zhao +6 位作者 Zihao Song Hai Lin Xiangyang Zhao Zhenxing Feng Zhichuan JXu Hongjin Fan Qingli Zou 《Nano-Micro Letters》 2026年第4期449-466,共18页
Aqueous zinc(Zn)metal batteries(AZMBs)have distinct advantages in terms of safety and cost-effectiveness.However,the industrial application of AZMBs is currently not ready due to challenges of Zn dendrite growth and t... Aqueous zinc(Zn)metal batteries(AZMBs)have distinct advantages in terms of safety and cost-effectiveness.However,the industrial application of AZMBs is currently not ready due to challenges of Zn dendrite growth and the side reactions such as hydrogen evolution reaction(HER)on the Zn anodes.In this review,we discuss how inorganic interfaces impact the Zn^(2+)plating/stripping reaction and overall cell performance.The discussion is categorized based on the types of inorganic materials,including metal oxides,other metal compounds,and inorganic salts.The proposed protection mechanisms for Zn metal anodes are highlighted,with a focus on the dendrite and HER inhibition mechanisms facilitated by various inorganic materials.We also provide our perspective on the rational design of advanced interfaces to enable highly reversible Zn^(2+)plating/stripping reactions toward highly stable AZMBs,paving the way for their practical implementation in energy storage. 展开更多
关键词 Zn metal batteries Interface engineering Aqueous electrolytes Dendrite-free
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Chain architecture-engineered artesunate nanoassemblies target LONP1 to induce oxidative damage for enhanced anti-tumor therapy
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作者 Yupeng Wang Xinxin Sun +5 位作者 Jianbin Shi Zhixiao Zhang Jin Sun Cong Luo Zhonggui He Shenwu Zhang 《Chinese Chemical Letters》 2026年第1期497-502,共6页
Despite demonstrating significant anti-tumor potential as an artemisinin derivative,artesunate faces delivery efficiency challenges due to low water solubility and insufficient targeting specificity.To improve the del... Despite demonstrating significant anti-tumor potential as an artemisinin derivative,artesunate faces delivery efficiency challenges due to low water solubility and insufficient targeting specificity.To improve the delivery efficiency,we engineered three artesunate(ART) derivatives,AC_(15)-L(linear),AC_(15)-B(branched),and AC_(15)-C(cyclic) with distinct aliphatic chain architectures.Unexpectedly,we observed that AC_(15)-C exhibited superior cytotoxicity against 4T1 breast cancer cells,and had the highest binding affinity for Lon protease 1(LONP1)(-72.6 kcal/mol).Subsequently,disulfide bond-containing lipid-PEG(DSPESS-PEG2K) modified chain architecture-engineered ART derivatives nanoassemblies(NAs) were developed to mitigate solubility-related limitations while enhancing targeting precision.Molecular docking and experimental validation demonstrated that ART derivatives inhibited LONP1 through hydrophobic interactions while preserved Fe^(2+)-mediated Fenton-like reaction activity.In vitro and in vivo evaluations demonstrated that AC_(15)-C NAs outperformed free ART and other NAs,suppressing 4T1 tumor growth via dual action:LONP1-directed mitochondrial proteostasis collapse and reactive oxygen species(ROS) amplification through Fe^(2+)-ART interactions.This study elucidated a novel anti-tumor mechanism of ART through the rational design of derivatives with spatially configured aliphatic chains,and developed reductionresponsive NAs to provide an advanced delivery strategy. 展开更多
关键词 Chain architecture engineering ART LONP1 NANOASSEMBLIES Cancer therapy
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Engineered Radiative Cooling Systems for Thermal-Regulating and Energy-Saving Applications
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作者 Leqi Lei Ting Wu +8 位作者 Shuo Shi Yifan Si Chuanwei Zhi Kaisong Huang Jieqiong Yang Xinshuo Liang Shanshan Zhu Jinping Qu Jinlian Hu 《Nano-Micro Letters》 2026年第1期509-544,共36页
Radiative cooling systems(RCSs)possess the distinctive capability to dissipate heat energy via solar and thermal radiation,making them suitable for thermal regulation and energy conservation applications,essential for... Radiative cooling systems(RCSs)possess the distinctive capability to dissipate heat energy via solar and thermal radiation,making them suitable for thermal regulation and energy conservation applications,essential for mitigating the energy crisis.A comprehensive review connecting the advancements in engineered radiative cooling systems(ERCSs),encompassing material and structural design as well as thermal and energy-related applications,is currently absent.Herein,this review begins with a concise summary of the essential concepts of ERCSs,followed by an introduction to engineered materials and structures,containing nature-inspired designs,chromatic materials,meta-structural configurations,and multilayered constructions.It subsequently encapsulates the primary applications,including thermal-regulating textiles and energy-saving devices.Next,it highlights the challenges of ERCSs,including maximized thermoregulatory effects,environmental adaptability,scalability and sustainability,and interdisciplinary integration.It seeks to offer direction for forthcoming fundamental research and industrial advancement of radiative cooling systems in real-world applications. 展开更多
关键词 Radiative cooling systems engineered materials Thermal-regulating ENERGY-SAVING Smart applications
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Micropatterned Scintillator Films With Engineered Cs_(3)Cu_(2)I_(5)/CsCu_(2)I_(3) Nanocrystals for Low-Crosstalk X-Ray Imaging at Clinically Relevant Tube Voltage
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作者 Atanu Jana Sunjung Park +4 位作者 Deblina Das Sourav Mal Seoyoung Kwak Sungwoo Kim Sangeun Cho 《Energy & Environmental Materials》 2026年第2期528-539,共12页
The spatial resolution of X-ray imaging is often limited by radioluminescence scattering,which is exacerbated in thick scintillators and unpatterned films due to lateral light spreading.Commercial scintillators such a... The spatial resolution of X-ray imaging is often limited by radioluminescence scattering,which is exacerbated in thick scintillators and unpatterned films due to lateral light spreading.Commercial scintillators such as cesium iodide and gadolinium oxysulfide,although hundreds of micrometers thick to ensure efficient X-ray absorption,still suffer from optical crosstalk,complicated fabrication,and high production costs.To overcome these challenges,we report a novel micropatterned lead-free green and sustainable 1D Cu-based perovskite nanocrystals scintillator film.Specifically,polyethylene glycol-coated CsCu_(2)I_(3) nanocrystals are used to achieve improved quantum yield and precise thickness control,facilitated by the flexibility and compatibility of polyethylene glycol with the Cu-based nanocrystals.During polyethylene glycol treatment,zero-dimensional Cs_(3)Cu_(2)I_(5) nanocrystals transform into 1D CsCu_(2)I_(3) nanocrystals,occurring,accompanied by a pronounced redshift in emission,enabling the fabrication of yellow-emitting scintillator films.Further,photolithographic techniques are used to fabricate patterned substrates with varying pattern sizes and thicknesses,which were subsequently filled with polyethylene glycol-coated CsCu_(2)I_(3) nanocrystals via a hot-press method.The optimized micropatterned scintillator film effectively suppressed optical crosstalk and delivered enhanced spatial resolution under a clinically relevant tube voltage(80 kVp),outperforming unpatterned counterparts.X-ray imaging at such high voltage conditions has rarely been demonstrated using copper halide materials.This strategy highlights a practical route toward clinically relevant,scalable,and high-resolution scintillator films for advanced X-ray imaging. 展开更多
关键词 Cu-based scintillator dimensional engineering lithography patterned film Xray imaging
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Exploring Reform Strategies for Software Engineering Talent Development Models in the AI Era
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作者 Linying Jiang Guibing Guo +1 位作者 Jianzhe Zhao Xiaochun Yang 《计算机教育》 2026年第3期95-100,共6页
The rapid development of artificial intelligence(AI)has placed significant pressure on universities to rethink how they train software engineering students.Tools like GitHub Copilot can now generate basic code in seco... The rapid development of artificial intelligence(AI)has placed significant pressure on universities to rethink how they train software engineering students.Tools like GitHub Copilot can now generate basic code in seconds.This raises important questions:What is the value of traditional programming education?What role should instructors play when AI becomes a powerful teaching assistant?How should the goals of software engineering programs change as companies increasingly use AI to handle coding tasks?This paper explores the key challenges AI brings to software engineering education and proposes practical strategies for updating talent development models to meet these changes. 展开更多
关键词 Artificial intelligence Software engineering education Talent development Reform strategies
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Buried surface engineering for efficient and stable back-contacted bifacial perovskite solar cells
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作者 Hailong Liu Yuan Yu +5 位作者 Dalin Li Nianqiao Liu Delong Han Yue Zhao Ning Li Zhaolai Chen 《Journal of Energy Chemistry》 2026年第3期528-535,共8页
Back-contacted perovskite solar cells(PSCs)have been demonstrated with merits of low material cost and weak ion migration,while the inferior buried surface restricts their performance and bifacial response.Herein,poly... Back-contacted perovskite solar cells(PSCs)have been demonstrated with merits of low material cost and weak ion migration,while the inferior buried surface restricts their performance and bifacial response.Herein,polyvinylidene fluoride(PVDF)with similar thermal expansion coefficient to perovskites and low tensile modulus is introduced at the substrate/crystal interface to release interface lattice strain and enhance crystallinity.Besides,PVDF can release free fluoride ions to interact with bare Pb^(2+)ions,reducing interface charge trap density and nonradiative recombination.As a result,an impressive efficiency of 13.37%is obtained,setting a new efficiency benchmark for back-contacted PSCs.Moreover,the PVDF-modified devices retain 100%of their initial efficiency after 1,200 h of maximum power point tracking at 60℃.Finally,a high bifaciality factor of 0.96 is obtained,leading to obvious increase of power output under simulated circumstance with reflected light. 展开更多
关键词 Back-contacted perovskite photovoltaics Strain engineering Defect passivation Bifacial response
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