COPPER

作品数:2049被引量:3537H指数:18
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相关领域:理学更多>>
相关作者:钟伟王俊姜宏谢俊霞沈志强更多>>
相关机构:中国石油化工集团公司中南大学清华大学哈尔滨工业大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金广东省自然科学基金更多>>
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Enhanced Conductivity of Multilayer Copper-Carbon Nanofilms via Plasma Immersion Deposition
《Nano-Micro Letters》2025年第6期112-127,共16页Haotian Weng Xiwu Zhang Xuan Liu Yunhui Tang Hewei Yuan Yang Xu Kun Li Xiaolu Huang 
support from the National Natural Science Foundation of China(61574091);National Natural Science Foundation of China Key Program(50730008).
Although room-temperature superconductivity is still difficult to achieve,researching materials with electrical conductivity significantly higher than that of copper will be of great importance in improving energy eff...
关键词:Copper-carbon nanofilms Plasma immersion Carbon layer deposition Electron mobility 
Biocompatible copper single-atom site nanozyme for parallel tumor therapy
《Nano Research》2025年第4期337-345,共9页Haining Zhou Hui Peng Yugui Lian Ting Sun Chang Su Zhiyuan Wang 
supported by the Foundation for Distinguished Young Scholars of medical science and technology innovation in Henan Province(No.YXKC2022033);Fund for Scientific Research and Innovation Team of The First Affiliated Hospital of Zhengzhou University(No.QNCXTD2023018);Scientific Research Projects of colleges and universities in Henan Province(No.24A320055).
Reasonable design and construction of artificial enzymes with excellent catalytic activity,good stability and superior biocompatibility is essential for tumor therapy.Single-atom site catalysts(SAs)with well-defined a...
关键词:single copper atom catalysts nanozyme reactive oxygen species photothermal therapy TUMOR 
Role of copper in central nervous system physiology and pathology
《Neural Regeneration Research》2025年第4期1058-1068,共11页Martina Locatelli Cinthia Farina 
Copper is a transition metal and an essential element for the organism,as alterations in its homeostasis leading to metal accumulation or deficiency have pathological effects in several organs,including the central ne...
关键词:ASTROCYTES central nervous system COPPER CUPRIZONE multiple sclerosis MYELIN neurodegenerative disorders 
Enhanced spray cooling on patterned perforated micromesh surface
《Science China(Technological Sciences)》2025年第4期24-33,共10页Yongyan HU Xiuliang LIU Ronggui YANG 
supported by the National Natural Science Foundation of China(Grant No.52036002)。
The increasing power density in applications such as aerospace,nuclear power,laser weapons,and phased array radar has led to a growing demand for efficient thermal management technologies.Spray cooling,known for its h...
关键词:spray cooling high heat flux bubble departure perforated surface copper micromesh 
Effect of copper/tungsten heterophase interface on radiation resistance: Insights from atomistic simulations
《Chinese Physics B》2025年第4期501-508,共8页Wen Chen Min Li Bao-Qin Fu Tun Chen Jie-Chao Cui Qing Hou 
Project supported by the National Natural Science Foundation of China(Grant No.12105194);the Natural Science Foundation of Sichuan Province of China(Grant Nos.2022NSFSC1251 and 2022NSFSC1265).
Nanostructured materials have demonstrated superior radiation-damage tolerance compared to their coarse-grained counterparts,contributing to the extended lifespan of nuclear materials.However,the mechanisms underlying...
关键词:molecular dynamics Cu/W nano-multilayers interstitial transfer mechanism radiation resistance 
Integrative analysis of cuproptosis-related IncRNAs:Unveiling prognostic significance,immune microenvironment,and copper-induced mechanisms in prostate cancer
《Cancer Pathogenesis and Therapy》2025年第1期48-59,共12页Haitao Zhong Yiming Lai Wenhao Ouyang Yunfang Yu Yongxin Wu Xinxin He Lexiang Zeng Xueen Qiu Peixian Chen Lingfeng Li Jie Zhou Tianlong Luo Hai Huang 
supported by grants from the National Natural Science Foundation of China(Nos.82372912,81802527,81972471,82073408,81974395,and 82173036);National Key Research and Development Program of China(Nos.2022YFC3602900 and 2022YFC3602904);BeijingBethune CharitableFoundation(Nos.mnzl202001 and mnzl202026);Guangzhou Science and Technology Project(Nos.202206010078 and 202201020574);Sun Yat-sen University Clinical Research 5010 Program(Nos.2018007 and 2019005);Sun Yat-sen Clinical Research Cultivating Program(No.SYS-C-201801);Guangdong Medical Science and Technology Program(No.A2020558);Tencent Charity Foundation(No.7670020025);Scientific Research Launch Project of Sun Yat-sen Memorial Hospital(No.YXQH202209);GuangdongBasicand AppliedBasicResearchFoundation(No.2019A1515011437);International Science and Technology Cooperation Project Plan of Guangdong Province(No.2021A0505030085);Guangzhou Science and Technology Key R&D Project(No.202206010117);Beijing CSCO Clinical Oncology Research Foundation(No.Y-tongshu2021/ms-0162);Guangdong Provincial Clinical Research Center for Urological Diseases(No.2020B1111170006);Guangdong Science and Technology Department(No.2020B1212060018);open research funds from the Sixth Affiliated Hospital of Guangzhou Medical University,Qingyuan People's Hospital.
Background:Long non-coding ribonucleic acids(lncRNAs)regulate messenger RNA(mRNA)expression and influence cancer development and progression.Cuproptosis,a newly discovered form of cell death,plays an important role in...
关键词:Prostate cancer Cuproptosis Deep learning IncRNAs 
Distorted Nanotwins Unlock the Catalytic Potential of Copper for Hydrogen Evolution
《cMat》2025年第1期9-11,共3页Guangbo Chen Tierui Zhang 
fundings from the National Key R&D Program of China(Nos.2023YFA1507201 and 2024YFA1510700).
The escalating energy crisis and worsening environmental challenges underscore the urgent need for sustainable energy alternatives to replace fossil fuels.Molecular hydrogen(H2)has emerged as a promising energy carrie...
关键词:COPPER replace CATALYTIC 
Co-assembly of chiral copper(Ⅰ)complexes and achiral polymer for enhanced circularly polarized luminescence
《Science China Chemistry》2025年第3期935-942,共8页Ting Liu Muxin Yu Yangxingyu Ye Yunfang Zhao Zhijia Li Zhiyuan Wu Feilong Jiang Lian Chen Maochun Hong 
supported by the National Key Research and Development Program of China (2018YFA0704502 and 2019YFA0210402);National Natural Science Foundation of China (22271280,22101047,and 21921001);the Natural Science Foundation of Fujian Province (2020J05064)。
Circularly polarized luminescence(CPL)has attracted growing attention for their promising applications in chiral functional devices.Achieving CPL materials with both high luminescence dissymmetry factors(g_(lum))and e...
关键词:metal-organic complexes circularly polarized luminescence achiral polymer chiral film chirality transfer 
GSH-activatable copper-elsinochrome off-on photosensitizer for combined specific NIR-Ⅱ two-photon photodynamic/chemodynamic therapy
《Chinese Chemical Letters》2025年第3期322-327,共6页Zekun Gao Xiuli Zheng Weimin Liu Jie Sha Shuaishuai Bian Haohui Ren Jiasheng Wu Wenjun Zhang Chun-Sing Lee Pengfei Wang 
supported by the project of the National Key Research and Development Program of China(No.2022YFA1207600);the National Natural Science Foundation of China(Nos.62005294,62375272);TIPC Director’s Fund.
The complexity of cancer therapy has led to the emergence of combination therapy as a promising approach to enhance treatment efficacy and safety.The integration of glutathione(GSH)-activatable two-photon photodynamic...
关键词:GSH activation Copper-elsinochrome photosensitizer Reactive oxygen species NIR-Ⅱtwo-photon photodynamic therapy Chemodynamic therapy 
Insight into catalytic performance and reaction mechanism for toluene total oxidation over Cu-Ce supported catalyst
《Journal of Environmental Sciences》2025年第3期476-487,共12页Xuan Liang Jin Zhang Juntai Tian Zenghua Xie Yue Liu Peng Liu Daiqi Ye 
supported by the Science and Technology Program of Guangzhou,China(No.202002020020);the National Natural Science Foundation of China(Nos.51878292 and 42002035).
Herein,three supported catalysts,CuO/Al_(2)O_(3),CeO_(2)/Al_(2)O_(3),and CuO-CeO_(2)/Al_(2)O_(3),were synthesized by the convenient impregnation method to reveal the effect of CeO_(2)addition on catalytic performance ...
关键词:Cu-Ce supported catalyst Copper-cerium interaction Oxygen vacancies Toluene oxidation Reaction mechanism 
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