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检索条件:"关键词=Graphdiyne "
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Graphdiyne(C_(n)H_(2n-2)based CuI-GDY/ZnAl LDH double S-scheme heterojunction proved with in situ XPS for efficient photocatalytic hydrogen production被引量:5
《Journal of Materials Science & Technology》2023年第24期132-141,共10页Tian Wang Zhiliang Jin 
financially supported by the Innovative team for transforming waste cooking oil into clean energy and high valueadded chemicals,China and Ningxia lowgrade resource high value utilization and environmental chemical integration technology innovation team project.
The photocatalytic performance can be significantly improved by constructing suitable heterojunction photocatalysts.It is well known that graphdiyne possesses a unique conjugated carbon network nanostructure,which giv...
关键词:Conjugated carbon network Graphdiyne S-scheme heterojunction Hydrogen evolution 
Recovery and in-situ reduction of precious metals by graphdiyne and graphdiyne oxide for antibacterial use
《Rare Metals》2024年第4期1747-1757,共11页Ming-Ji Jiang Ya-Na Zhang Ling-Shen Meng Jing Kang Yong-Jun Li Alideertu Dong 
financially supported by the National Natural Science Foundation of China(Nos.22062017 and 22164015);Inner Mongolia Autonomous Region Program for Key Science and Technology(No.2020GG0161);Ordos City Program for Key Science and Technology(No.2022YY003);the Program of Higher-Level Talents of Inner Mongolia University(No.10000-22311201/035);the Research Program of science and technology at Universities of Inner Mongolia Autonomous Region(No.NJZZ23091);the Program for Innovative Research Team in Universities of Inner Mongolia Autonomous Region(No.NMGIRT2210)。
Based on the in-situ self-reduction and chemical stability,graphdiyne(GDY)and graphdiyne oxide(GDYO)are used as trapping agents to investigate the ability for recovering Au^(3+),Ag^+,and Pd^(2+)under different pH valu...
关键词:Graphdiyne In-situ reduction RECOVERY Precious metals ANTIBACTERIAL 
Introducing hydroxyl groups to tailor the d-band center of Ir atom through side anchoring for boosted ORR and HER
《Journal of Energy Chemistry》2024年第3期144-151,I0005,共9页Qing Lv Meiping Li Xiaodong Li Xingru Yan Zhufeng Hou Changshui Huang 
supported by the National Natural Science Foundation of China(22172090,21790051);the National Key Research and Development Project of China(2022YFA1204500,2022YFA1204501);the Natural Science Foundation of Shan-dong Province(ZR2021MB015);the Open Funds of the State Key Laboratory of Electroanalytical Chemistry(SKLEAC202202);the Young Scholars Program of Shandong University。
Tuning the coordination atoms of central metal is an effective means to improve the electrocatalytic activity of atomic catalysts.Herein,iridium(Ir) is proposed to be asymmetrically anchored by sp-N and pyridinic N of...
关键词:Oxygen reduction reaction D-band center Graphdiyne Hydroxyl group ELECTROCATALYSIS 
Advances of graphdiyne-supported metal catalysts in thermocatalytic reactions被引量:1
《Nano Research》2024年第4期2223-2233,共11页Jia Yu Yida Yang Yuliang Li Changyan Cao Weiguo Song 
We thank the National Key R&D Program of China(Nos.2018YFA0208504 and 2018YFA0703503);the National Natural Science Foundation of China(Nos.92161112,21932006,and 22272181);the Youth Innovation Promotion Association of CAS(No.Y2017049)for financial support.
Supported metal catalysts are widely used in the modern chemical industry.The electronic interaction between supports and active components is of great significance for heterogeneous catalysis.Graphdiyne(GDY),a new ty...
关键词:graphdiyne metal catalysts thermocatalytic reactions heterogeneous catalysis 
Denitration of Nitroarenes Under Ambient Physiological Conditions Catalyzed by Graphdiyne-Supported Palladium
《CCS Chemistry》2024年第3期641-651,共11页Endong Zhang Yanyan Chen Fengting Lv Zicheng Zuo Feng He Yongjun Li Yiming Huang Yuliang Li Shu Wang 
support from the National Natural Science Foundation of China(grant nos.22021002,22020102005,and 22022705);the CAS-Croucher Funding Scheme for Joint Laboratories.
The direct cleavage of C–NO_(2)bonds for reductive denitration of nitroarenes remains a challenging transformation in synthetic organic chemistry.Herein,we report a biocompatible palladium-deposited graphdiyne nanoca...
关键词:3-NITROTYROSINE artificial nanaocatalysts reductive denitration palladium-deposited graphdiyne repairing nitrated protein 
新型石墨炔电化学传感器制备及其对Pb^(2+)的检测被引量:1
《闽南师范大学学报(自然科学版)》2021年第3期91-97,共7页杨浩 胡世荣 张武翔 刘艳坤 杨潇 
福建省自然科学基金项目(2019J01060336)。
本文通过改良的制备石墨炔方法,制得纳米片层状的石墨炔(GDY),采用扫描电子显微镜、透射电镜、红外光谱和拉曼光谱等手段对其结构进行表征.确定了其具有特定的形貌结构、丰富的sp杂化的炔键和sp^(2)杂化的苯环外延扩展的结构特性,将其...
关键词:石墨炔 电化学传感器 铅(Ⅱ)离子 检测 
Electronic perturbation of Cu nanowire surfaces with functionalized graphdiyne for enhanced CO_(2)reduction reaction
《National Science Review》2024年第12期22-31,共10页Haiyuan Zou Dongfang Cheng Chao Tang Wen Luo Huatian Xiong Hongliang Dong Fan Li Tao Song Siyan Shu Hao Dai Ziang Cui Zhouguang Lu Lele Duan 
supported by the National Natural Science Foundation of China(22179057,L.D.;92372114,Z.L.);the start-up package from Westlake University(L.D.).
Electronic perturbation of the surfaces of Cu catalysts is crucial for optimizing electrochemical CO_(2)reduction activity,yet still poses great challenges.Herein,nanostructured Cu nanow ires(NW)w ith fine-tuned surfa...
关键词:CO_(2)reduction reaction copper nanowire group-functionalized graphdiyne surface electronic perturbation 
Lithiated Graphdiyne Quantum Dots for Stable Lithium Metal Anodes
《CCS Chemistry》2024年第5期1300-1311,共12页Han Shen Congying Song Fan Wang Guoxing Li Yuliang Li 
supported by the National Key Research and Development Project of China(grant nos.2022YFA1204500 and 2022YFA1204503);the National Natural Science Foundation of China(grant nos.52072222 and 22279073);the Natural Science Foundation of Shandong Province(grant no.ZR2022ZD35);the Taishan Scholar Project of Shandong Province of China(grant no.62460082061017).
Here,a facile strategy is proposed for the preparation of lithiated graphdiyne quantum dots(GDY-Li QDs)with conjugated sp-and sp2-hybridized carbons by the self-assembly technique ofπ–πstacking of lithiated hexaeth...
关键词:graphdiyne quantum dots LITHIATION lithium metal anodes ion distribution 
Graphdiyne(C_(n)H_(2n-2))as an"electron transfer bridge"boosting photocatalytic hydrogen evolution over Zn_(0.5)Co_(0.5)S/MoS_(2)S-scheme heterojunction
《Rare Metals》2024年第5期1999-2014,共16页Mei Li Jing-Zhi Wang Zhi-Liang Jin 
supported by the National Natural Science Foundation of China(No.22062001)。
In the process of photocatalytic water cracking,the migration rate and utilization rate of photogenerated charges determine the hydrogen evolution performance of the catalyst.In this paper,a carbon isotope superconduc...
关键词:Graphdiyne S-scheme heterojunction Electron transfer bridge Hydrogen production 
Few-Atom Copper Catalyst for the Electrochemical Reduction of CO to Acetate:Synergetic Catalysis between Neighboring Cu Atoms被引量:1
《CCS Chemistry》2023年第5期1176-1188,共13页Weifeng Rong Haiyuan Zou Sha Tan Enyuan Hu Fan Li Chao Tang Hao Dai Shuting Wei Yongfei Ji Lele Duan 
supported by the National Natural Science Foundation of China(grant nos.21771098,21903016,and 21901110);Shenzhen R&D Fund(grant no.KQTD20180411143418361);Stable Support Plan Program of Shenzhen Natural Science Fund(grant no.20200925152742003);and Educational Commission of Guangdong Province(grant no.2020KTSCX121);S.T.and E.H.are supported by the Assistant Secretary for Energy Efficiency and Renewable Energy,Vehicle Technology Office of the US Department of Energy(DOE)through the Advanced Battery Materials Research(BMR)Program under contract no.DE-SC0012704.
Single-atom catalysts(SACs)are gaining increasing recognition because of their superior catalytic properties for various reactions.However,the performance of SACs is often limited by the lack of neighboring metal cent...
关键词:CO electroreduction synergetic catalysis few-atom catalyst graphdiyne ACETATE 
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