期刊文献+
共找到7篇文章
< 1 >
每页显示 20 50 100
化学“101计划”基础化学实验课程建设的思考与实践
1
作者 俞寿云 章文伟 +11 位作者 邓顺柳 李维红 任艳平 李一峻 淳远 李厚金 马荔 赵发琼 曾秀琼 张树永 孟长功 张剑荣 《大学化学》 CAS 2024年第10期52-57,共6页
化学“101计划”基础化学实验课程适用于拔尖学生培养计划2.0基地学校化学类专业低年级学生,是培养化学基础研究创新人才的高阶基础入门实验课程。本课程可以激发学生化学实验的兴趣,具备继续从事化学后续课程学习和化学研究的基本实验... 化学“101计划”基础化学实验课程适用于拔尖学生培养计划2.0基地学校化学类专业低年级学生,是培养化学基础研究创新人才的高阶基础入门实验课程。本课程可以激发学生化学实验的兴趣,具备继续从事化学后续课程学习和化学研究的基本实验素养。通过以合成和测量为载体的单元实验或小综合实验,服务于基础单元操作学习、基础技能训练,或成为合成化学实验和化学测量学实验等课程学习必要的先导内容,为后续实验课程学习打基础。 展开更多
关键词 化学“101计划” 基础化学实验
在线阅读 下载PDF
High-energy fiber-shaped calcium-ion batteries enable integrated wearable electronics for human body monitoring
2
作者 Yanyan Liu Bing He +7 位作者 Jie Pu Minxing Yu Yifu Zhang changgong meng Qichong Zhang Jian Wu Lei Wei Zhenghui Pan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第12期661-670,共10页
Electronic textiles hold the merits of high conformability with the human body and natural surrounding,possessing large market demand and wide application foreground in smart wearable and portable devices.However,thei... Electronic textiles hold the merits of high conformability with the human body and natural surrounding,possessing large market demand and wide application foreground in smart wearable and portable devices.However,their further application is largely hindered by the shortage of flexible and stable power sources with multifunctional designability.Herein,a free-standing ZnHCF@CF electrode(ZnHCF grown on carbon nanotube fiber)with good mechanical deformability and high electrochemical performance for aqueous fiber-shaped calcium ion battery(FCIB)is reported.Benefiting from the unique Ca^(2+)/H^(+)co-insertion mechanism,the ZnHCF@CF cathode can exhibit great ion storage capability within a broadened voltage window.By pairing with a polyaniline(PANI)@CF anode,a ZnHCF@CF//PANI@CF FCIB is successfully fabricated,which exhibits a desirable volumetric energy density of 43.2mWh cm^(-3)and maintains superior electrochemical properties under different deformations.Moreover,the high-energy FCIB can be harmoniously integrated with a fiber-shaped strain sensor(FSS)to achieve real-time physiological monitoring on knees during long-running,exhibiting great promise for the practical application of electronic textiles. 展开更多
关键词 Human body monitoring Wearable electronics Calcium-ion battery High volumetric energy density Strain sensors
在线阅读 下载PDF
Tailoring NH_(4)^(+)storage by regulating oxygen defect in ammonium vanadate
3
作者 Yanyan Liu Ziyi Feng +3 位作者 Hanmei Jiang Xueying Dong changgong meng Yifu Zhang 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第7期1171-1182,共12页
Defect engineering is an effective strategy for modifying the energy storage materials to improve their electrochemical performance.However,the impact of oxygen defect and its content on the electrochemical performanc... Defect engineering is an effective strategy for modifying the energy storage materials to improve their electrochemical performance.However,the impact of oxygen defect and its content on the electrochemical performances in the burgeoning aqueous NH_(4)^(+)storage field remains explored.Therefore,for the first time in this work,an oxygen-defective ammonium vanadate[(NH_(4))_(2)V_(10)O_(25)·8H_(2)O,denoted as Od-NHVO]with a novel 3D porous flower-like architecture was achieved via the reduction of thiourea in a mild reaction condition,which is a facile method that can realize the intention to regulate the oxygen defect content,with the capability of mass-production.The as-prepared Od_M-NHVO with moderate oxygen defect content can deliver a stable specific capacitance output(505 F g^(-1),252 mAh g^(-1)at 0.5 A g^(-1)with~80% capacitance retention after 10,000 cycles),which benefits from extra active sites,unimpeded NH_(4)^(+)-migration path and relatively high structure integrity.In contrast,low oxygen defect content will lead to the torpid electrochemical reaction kinetics while too high content of it will reduce the chargestorage capability and induce structural disintegration.The superior NH_(4)^(+)-storage behavior is achieved with the reversible intercalation/deintercalation process of NH_(4)^(+)accompanied by forming/breaking of hydrogen bond.As expected,the assembled flexible OdM-NHVO//PTCDI quasi-solid-state hybrid supercapacitor(FQSS HSC)also exhibits high areal capacitance,energy density and reliable flexibility.This work provides a new avenue for developing materials with oxygen-deficient structure for application in various aqueous non-metal cation storage systems. 展开更多
关键词 Ammonium vanadate Oxygen defect Ammonium-ion storage Hybrid supercapacitors Electrochemical performance
在线阅读 下载PDF
创一流:应用化学专业建设的改革与实践 被引量:9
4
作者 纪敏 孟长功 +2 位作者 姜文凤 吴硕 赵艳秋 《大学化学》 CAS 2021年第5期118-122,共5页
大连理工大学应用化学专业经历30多年的发展与建设,已经形成了鲜明的专业特色和优势。本文全面介绍了专业在人才培养模式、改革课程教学体系、提升专业教学条件、加强师资队伍建设、完善教育管理机制等方面的举措和实施成效。
关键词 专业建设 应用化学 改革与实践
在线阅读 下载PDF
中英高校无机化学课程比较研究 被引量:4
5
作者 焦扬 朱亚先 +3 位作者 孟长功 王颖霞 韩喜江 胡涛 《大学化学》 CAS 2023年第10期30-36,共7页
对7所英国罗素大学集团高校本科阶段无机课程的课程设置、教学内容、考核方式等进行了调研和分析,通过比较两国无机化学课程特点和教法的异同,为我国高校无机化学课程教学改革提供一些参考。
关键词 无机化学 中英高校比较 课程内容 教学改革
在线阅读 下载PDF
Quench-tailored Al-doped V_(2)O_(5) nanomaterials for efficient aqueous zinc-ion batteries 被引量:1
6
作者 Hanmei Jiang Wenbin Gong +8 位作者 Yifu Zhang Xin Liu Moaz Waqar Jingjing Sun Yanyan Liu Xueying Dong changgong meng Zhenghui Pan John Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第7期52-58,I0003,共8页
Rechargeable aqueous zinc-ion batteries(ZIBs)are regarded as a promising competition to lithium-ion batteries as energy storage devices,owing to their high safety and low cost.However,the development of high-performan... Rechargeable aqueous zinc-ion batteries(ZIBs)are regarded as a promising competition to lithium-ion batteries as energy storage devices,owing to their high safety and low cost.However,the development of high-performance ZIBs is largely hindered by the shortage of ideal cathode materials with high-rate capability and long-cycle stability.Herein,we address this bottleneck issue by the quenching-tailored surface chemistry of V_(2)O_(5) cathode nanomaterial.By rapid quenching from high temperatures,Al ions are doped into V_(2)O_(5) lattice(Al-V_(2)O_(5))and abundant oxygen vacancies are formed on the surface/nearsurface,which facilitate the desired rapid electron transfers.Our density functional theory(DFT)simulations elucidate that the doping of Al ions into V_(2)O_(5) remarkably reduces the Zn^(2+)-diffusion barriers and improves the electrical conductivity of V_(2)O_(5).As a proof-of-concept application,the thus-optimized AlV_(2)O_(5) cathode delivers a superior specific capacity of 532 m Ah g^(-1) at 0.1 A g^(-1) and a long-cycling life with76%capacity retention after 5000 cycles,as well as a good rate performance.This work provides not only a novel strategy for tuning the surface chemistry of V_(2)O_(5) to boost the Zn^(2+)storage but also a general pathway of modifying metal oxides with improved electrochemical performance. 展开更多
关键词 Quenching-tailored V_(2)O_(5) Aqueous zinc-ion batteries Surface chemistry Long-cycle stability High-rate capability
在线阅读 下载PDF
In situ confined vertical growth of Co_(2.5)Ni_(0.5)Si_(2)O_(5)(OH)_(4)nanoarrays on rGO for an efficient oxygen evolution reaction 被引量:1
7
作者 Yang Mu Xiaoyu Pei +5 位作者 Yunfeng Zhao Xueying Dong Zongkui Kou Miao Cui changgong meng Yifu Zhang 《Nano Materials Science》 EI CAS CSCD 2023年第4期351-360,共10页
Rational design of oxygen evolution reaction(OER)catalysts at low cost would greatly benefit the economy.Taking advantage of earth-abundant elements Si,Co and Ni,we produce a unique-structure where cobalt-nickel silic... Rational design of oxygen evolution reaction(OER)catalysts at low cost would greatly benefit the economy.Taking advantage of earth-abundant elements Si,Co and Ni,we produce a unique-structure where cobalt-nickel silicate hydroxide[Co_(2.5)Ni_(0.5)Si_(2)O_(5)(OH)_(4)]is vertically grown on a reduced graphene oxide(rGO)support(CNS@rGO).This is developed as a low-cost and prospective OER catalyst.Compared to cobalt or nickel silicate hydroxide@rGO(CS@rGO and NS@rGO,respectively)nanoarrays,the bimetal CNS@rGO nanoarray exhibits impressive OER performance with an overpotential of 307 mV@10 mA cm^(-2).This value is higher than that of CS@rGO and NS@rGO.The CNS@rGO nanoarray has an overpotential of 446 mV@100 mA cm^(-2),about 1.4 times that of the commercial RuO_(2)electrocatalyst.The achieved OER activity is superior to the state-of-the-art metal oxides/hydroxides and their derivatives.The vertically grown nanostructure and optimized metal-support electronic interactions play an indispensable role for OER performance improvement,including a fast electron transfer pathway,short proton/electron diffusion distance,more active metal centers,as well as optimized dualatomic electron density.Taking advantage of interlay chemical regulation and the in-situ growth method,the advanced-structural CNS@rGO nanoarrays provide a new horizon to the rational and flexible design of efficient and promising OER electrocatalysts. 展开更多
关键词 Co_(2.5)Ni_(0.5)Si_(2)O_(5)(OH)_(4)@rGO Vertical grown nanoarrays Geometric and electronic structure regulation Metal-support interactions Oxygen evolution reaction
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部