PLATINUM

作品数:924被引量:1081H指数:12
导出分析报告
相关作者:李运泉王慧深陈国桢李淑娟覃有振更多>>
相关机构:中山大学附属第一医院中国人民解放军总医院中国科学院上海戏剧学院更多>>
相关期刊:更多>>
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国家高技术研究发展计划更多>>
-

检索结果分析

结果分析中...
选择条件:
  • 期刊=Chinese Chemical Lettersx
条 记 录,以下是1-10
视图:
排序:
Pt nanocluster-catalyzed hydrogen evolution reaction:Recent advances and future outlook
《Chinese Chemical Letters》2025年第3期52-69,共18页Hongliang Zeng Yuan Ji Jinfeng Wen Xu Li Tingting Zheng Qiu Jiang Chuan Xia 
the National Key Research and Development Program of China(No.2022YFB4102000);the National Natural Science Foundation of China(NSFC,Nos.22102018 and 52171201);the Huzhou Science and Technology Bureau(No.2022GZ45);the Hefei National Research Center for Physical Sciences at the Microscale(No.KF2021005);the China Postdoctoral Science Foundation-Funded Project(No.2022M710601);the Huzhou Science and Technology Bureau(No.2023GZ02);the Natural Science Foundation of Sichuan Province(No.24NSFSC5779)。
As hydrogen energy technologies gain momentum,the role of renewable energy in facilitating sustainable hydrogen production is becoming increasingly critical.As a hydrogen production method,water electrolysis has attra...
关键词:PLATINUM NANOCLUSTERS Electronic interaction Hydrogen evolution Active sites 
Interfacial Pt-N coordination for promoting oxygen reduction reaction
《Chinese Chemical Letters》2025年第2期481-485,共5页Jialin Cai Yizhe Chen Ruiwen Zhang Cheng Yuan Zeyu Jin Yongting Chen Shiming Zhang Jiujun Zhang 
supported by the National Natural Science Foundation of China(Nos.22272105 and 22002110);Natural Science Foundation of Shanghai(No.23ZR1423900)。
Nitrogen-doping of carbon support(N-C)for platinum(Pt)nanoparticles to form Pt/N-C catalyst represents an effective strategy to promote the electrocatalysis of cathodic oxygen reduction reaction(ORR)in proton exchange...
关键词:Oxygen reduction reaction N-doped carbon PLATINUM Pt-N Theoretical calculations 
Shape and composition evolution of Pt and Pt_(3)M nanocrystals under HCl chemical etching
《Chinese Chemical Letters》2024年第9期403-407,共5页Lian Sun Honglei Wang Ming Ma Tingting Cao Leilei Zhang Xingui Zhou 
financially supported by Nature Science Foundation of Hunan Province(No.51502343);the National Key R&D Program of China(No.2018YFB1900603)。
Controlling the shape and composition of Pt-based nanocrystals is essential to improve electrocatalytic performance.In this work,we have carefully investigated the evolution process of morphology and composition for P...
关键词:ELECTROCATALYSTS NANOCRYSTALS PLATINUM Oxygen reduction reaction DFT calculation 
Luminescence-activated Pt(Ⅳ)prodrug for in situ triggerable cancer therapy
《Chinese Chemical Letters》2024年第7期383-387,共5页Huijie An Chen Yang Zhihui Jiang Junjie Yuan Zhongming Qiu Longhao Chen Xin Chen Mutu Huang Linlang Huang Hongju Lin Biao Cheng Hongjiang Liu Zhiqiang Yu 
supported by the National Natural Science Foundation of China(Nos.32201171 and 82372115);the Science and Technology Program of Guangzhou(No.202102021266)。
Anticancer platinum prodrugs that can be controllably activated are highly desired for personalized precision medicine and patient compliance in cancer therapy.However,the clinical application of platinum(Ⅳ)prodrugs(...
关键词:Tumor microenvironment Endogenous luminescence Platinum(Ⅳ)prodrug Activation strategy ANTITUMOR BIOSAFETY 
Improving the electrocatalytic performances of Pt-based catalysts for oxygen reduction reaction via strong interactions with single-CoN_(4)-rich carbon support
《Chinese Chemical Letters》2024年第5期265-271,共7页Jin Long Xingqun Zheng Bin Wang Chenzhong Wu Qingmei Wang Lishan Peng 
financially supported by the Natural Science Foundation of China(Nos.22169005,22209186,22068009 and 22262006);the Science and Technology Support Project of Guizhou Provincial Science and Technology Department(Nos.ZK[2023]050 and[2023]403);the Open Project of Institute of Dualcarbon and New Energy Technology Innovation and Development of Guizhou Province(No.DCRE-2023-06);Youth Innovation Promotion Association,CAS(No.2023343);Self-deployed Projects of Ganjiang Innovation Academy,CAS(No.E355F006).
Developing platinum-group-metal(PGM)catalysts possessing strong metal-support interaction and controllable PGM size is urgent for the sluggish oxygen reduction reaction(ORR)in proton-exchange membrane fuel cells.Herei...
关键词:Fuel cells Oxygen reduction reaction PLATINUM Single-CoN_(4)-rich carbon support Metal-substrate interaction 
Machine learning accelerated DFT research on platinum-modified amorphous alloy surface catalysts被引量:1
《Chinese Chemical Letters》2023年第5期645-649,共5页Xi Zhang Kangpu Li Bo Wen Jiang Ma Dongfeng Diao 
the National Natural Science Foundation(Nos.52275565 and 62104155)of China;Natural Science Foundation of Guangdong Province(No.2022A1515011667);Guangdong Kangyi Special Fund(No.2020KZDZX1173)。
Pt-modified amorphous alloy(Pt@PdNiCuP)catalyst exhibits excellent electro-catalytic activity and high experimental durability for hydrogen evolution reaction(HER).However,the physical origin of the catalytically acti...
关键词:Hydrogen evolution reaction Amorphous alloy Density functional theory Machine learning 
General synthesis of Pt and Ni co-doped porous carbon nanofibers to boost HER performance in both acidic and alkaline solutions
《Chinese Chemical Letters》2023年第2期263-267,共5页Jiaqi Xu Mengxiao Zhong Na Song Ce Wang Xiaofeng Lu 
financially supported by the National Natural Science Foundation of China (Nos. 5197307, 219875084);the Project of the Education Department of Jilin Province, China (No. JJKH20211047KJ)。
It is essential to develop efficient electrocatalysts to generate hydrogen from water electrolysis for hydrogen economy. In this work, platinum(Pt) and nickel(Ni) co-doped porous carbon nanofibers(Pt/NiPCNFs) with low...
关键词:ELECTROSPINNING PLATINUM Nickel Porous carbon nanofibers Hydrogen evolution reaction 
Degradation of platinum electrocatalysts for methanol oxidation by lead contamination
《Chinese Chemical Letters》2023年第2期610-612,共3页Zihao Li Xianggui Zhou Subhash Singh Xiaoming Wei Chunlei Guo Weishan Li 
financially supported by Bill & Melinda Gates Foundation (No. OPP1119542);South China Normal University for the financial support for his visit to University of Rochester。
Platinum exhibits high electrocatalytic activity toward various reactions but might be poisoned by some species. This communication reports a new finding that the electrocatalytic activity of platinum for methanol oxi...
关键词:Activity degradation Platinum electrocatalyst Lead contamination Methanol oxidation Binding energy 
A GSH-depleted platinum(Ⅳ) prodrug triggers ferroptotic cell death in breast cancer
《Chinese Chemical Letters》2022年第10期4595-4599,共5页Dachuan Qi Lei Xing Lijun Shen Wenshuang Sun Cheng Cai Chunhua Xue Xuwei Song Hua Yu Hulin Jiang Chengjun Li Qingri Jin Zhiqi Zhang 
financially supported by the Priority Academic Program Development of Jiangsu Higher Education Institutions and Double First-classUniversity Projects(No.CPU2018GY06);Six Talent Peaks Projectin Jiangsu Province(No.WSW-112);Zhejiang province basic public welfare research project(No.LGN20C180001);Wenzhou Engineering Research Center of Pet(No.WP02)。
Cisplatin is the first-line drug for treatment of various solid tumors including breast cancer due to the broad anti-tumor spectrum and strong anti-tumor effect.However,serious side effects and long-term medication of...
关键词:CISPLATIN Ferroptosis Cancer therapy Glutathione depletion Tetravalent platinum prodrug 
Insight into the role of iron in platinum-based bimetallic catalysts for selective hydrogenation of cinnamaldehyde被引量:1
《Chinese Chemical Letters》2022年第8期3757-3761,共5页Ying Zhang Jinfang Su Junnan Chen Chengshan Dai Bingsen Zhang 
the financial support provided by the National Natural Science Foundation of China(No.21773269,22072164,21761132025,51932005);LiaoNing Revitalization Talents Program(No.XLYC1807175)。
Selective hydrogenation of cinnamaldehyde(CAL)toward cinnamyl alcohol(COL)is an extremely important and challenging reaction.Herein,a series of Pt_(x)Fe_(y)-Al_(2)O_(3) bimetallic catalysts with varied Pt to Fe ratios...
关键词:Pt_(x)Fe_(y)NPs CINNAMALDEHYDE HYDROGENATION CHEMOSELECTIVE IL-TEM 
检索报告 对象比较 聚类工具 使用帮助 返回顶部