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| 1 | High strength and high conductivity Cu alloys: A review显示文摘High strength and high conductivity(HSHC) Cu alloys are widely used in many fields,such as high-speed electric railway contact wires and integrated circuit lead frames. Pure Cu is well known to have excellent electrical conductivity but rather low strength. The main concern of HSHC Cu alloys is how to strengthen the alloy efficiently. However,when the Cu alloys are strengthened by a certain method,their electrical conductivity will inevitably decrease to a certain extent. This review introduces the strengthening methods of HSHC Cu alloys. Then the research progress of some typical HSHC Cu alloys such as Cu-Cr-Zr,Cu-Ni-Si,Cu-Ag,Cu-Mg is reviewed according to different alloy systems. Finally,the development trend of HSHC Cu alloys is forecasted. It is pointed out that precipitation and micro-alloying are effective ways to improve the performance of HSHC Cu alloys. At the same time,the production of HSHC Cu alloys also needs to comply with the large-scale,low-cost development trend of industrialization in the future. | YANG HuiYa MA ZiChao LEI ChenHui MENG Liang FANG YouTong LIU JiaBin WANG HongTao | 2020 | Science China(Technological Sciences)2020,63,12: | 7 |
| 2 | Trace bis-(3-sulfopropyl)-disulfide enhanced electrodeposited copper foils显示文摘Smooth and strong copper foils are highly required for the development of printed circuit boards and Li-ion batteries.Adding additives is an efficient and low-cost method to enhance electrodeposited copper foils.Here we chose Bis-(3-sulfopropyl)-disulfide(SPS)as the additive and investigated its concentration on the surface roughness and tensile strength of the electrodeposited copper foils.A copper foil with the smoothest surface(Rz=2.1μm)and the highest tensile strength(~338 MPa)was prepared with1.5 mg/L SPS.The contact angle on the copper foil decreased with the reduction of surface roughness.The enhancing mechanism of the SPS was investigated by scanning electron microscopy and X-ray diffraction.The refined grain and enhanced(220)texture were considered to be the radical reason for the smooth and strong copper foils.The electrochemical results prove the suppressing effect is related to the SPS adsorption. | Lingling Liu Yeqiang Bu Yue Sun Jianfeng Pan Jiabin Liu Jien Ma Lin Qiu Youtong Fang | 2021 | Journal of Materials Science & Technology2021,,15: | 6 |
| 3 | High-entropy spinel ferrites MFe_(2)O_(4)(M=Mg,Mn,Fe,Co,Ni,Cu,Zn)with tunable electromagnetic properties and strong microwave absorption显示文摘Ferrites are the most widely used microwave absorbing materials to deal with the threat of electromagnetic(EM)pollution.However,the lack of sufficient dielectric loss capacity is the main challenge that limits their applications.To cope with this challenge,three high-entropy(HE)spineltype ferrite ceramics including(Mg_(0.2)Mn_(0.2)Fe_(0.2)Co_(0.2)Ni_(0.2))Fe_(2)O_(4),(Mg_(0.2)Fe_(0.2)Co_(0.2)Ni_(0.2)Cu_(0.2))Fe_(2)O_(4),and(Mg_(0.2)Fe_(0.2)Co_(0.2)Ni_(0.2)Zn_(0.2))Fe_(2)O_(4)were designed and successfully prepared through solid state synthesis.The results show that all three HE MFe_(2)O_(4) samples exhibit synergetic dielectric loss and magnetic loss.The good magnetic loss ability is due to the presence of magnetic components;while the enhanced dielectric properties are attributed to nano-domain,hopping mechanism of resonance effect and HE effect.Among three HE spinels,(Mg_(0.2)Mn_(0.2)Fe_(0.2)Co_(0.2)Ni_(0.2))Fe_(2)O_(4)shows the best EM wave absorption performance,e.g.,its minimum reflection loss(RL_(min))reaches-35.10 dB at 6.78 GHz with a thickness of 3.5 mm,and the optimized effective absorption bandwidth(EAB)is 7.48 GHz from 8.48 to 15.96 GHz at the thickness of 2.4 mm.Due to the easy preparation and strong EM dissipation ability,HE MFe_(2)O_(4) are promising as a new type of EM absorption materials. | Jiabin MA Biao ZHAO Huimin XIANG Fu-Zhi DAI Yi LIU Rui ZHANG Yanchun ZHOU | 2022 | Journal of Advanced Ceramics2022,11,5: | 4 |
| 4 | Ultrafast presodiation of graphene anodes for high-efficiency and high-rate sodium-ion storage显示文摘The low initial Coulombic efficiency(ICE)is a significant problem hindering the practical uses of carbon anodes in sodium-ion batteries(SIBs),especially for the carbons with large surface area.Presodiation is an effective way to solve the above problem,but it always needs complicated operations and cannot suppress the unavoidable electrolyte decomposition in the assembled battery.Herein,we develop an ultrafast chemical presodiation method for reduced graphene oxide(rGO)using sodium naphthalene(Na-Nt)dissolved in dimethoxyethane(DME)solvent as a presodiation reagent.The presodiation effectively improves the ICE of rGO to 96.8%and forms an artificial solid electrolyte interphase(SEI)on its surface due to the decomposition of the formed complex between Na+and DME.The formed artificial SEI suppresses the excessive decomposition of electrolytes in the assembled battery,leading to a formation of uniform and inorganic component–rich SEI on rGO surface,which enables a rapid interfacial ion transfer.Therefore,the presodiated rGO showed excellent rate performance with a high capacity of 198.5 mAh g^(-1) at 5 A g^(-1).Moreover,excellent cycle stability indicated by the high capacity retention of 68.4%over 1000 cycles was also achieved,showing the poten-tial to promote the practical uses of high-rate rGO anode in SIBs. | Ganyu Zheng Qiaowei Lin Jiabin Ma Jun Zhang Yan-Bing He Xian Tang Feiyu Kang Wei Lv Quan-Hong Yang | 2021 | InfoMat2021,3,12: | 4 |
| 5 | Progress and perspective of the cathode/electrolyte interface construction in all-solid-state lithium batteries显示文摘Security risks of flammability and explosion represent major problems with the use of conventional lithium rechargeable batteries using a liquid electrolyte.The application of solid-state electrolytes could effectively help to avoid these safety concerns.However,integrating the solid-state electrolytes into the all-solid-state lithium batteries is still a huge challenge mainly due to the high interfacial resistance present in the entire battery,especially at the interface between the cathode and the solid-state electrolyte pellet and the interfaces inside the cathode.Herein,recent progress made from investigations of cathode/solid-state electrolyte interfacial behaviors including the contact problem,the interlayer diffusion issue,the space-charge layer effect,and electrochemical compatibility is presented according to the classification of oxide-,sulfide-,and polymer-based solid-state electrolytes.We also propose strategies for the construction of ideal next-generation cathode/solid-state electrolyte interfaces with high room-temperature ionic conductivity,stable interfacial contact during long cycling,free formation of the space-charge region,and good compatibility with high-voltage cathodes. | Shiming Su Jiabin Ma Liang Zhao Kui Lin Qidong Li Shasha Lv Feiyu Kang Yan-Bing He | 2021 | Carbon Energy2021,3,6: | 3 |
| 6 | Progress and perspective of Li_(1+x)Al_(x)Ti_(2-x)(PO_(4))_(3) ceramic electrolyte in lithium batteries显示文摘The replacement of liquid organic electrolytes with solid-state electrolytes(SSEs)is a feasible way to solve the safety issues and improve the energy density of lithium batteries.Developing SSEs materials that can well match with high-voltage cathodes and lithium metal anode is quite significant to develop high-energy-density lithium batteries.Li_(1+x)Al_(x)Ti_(2-x)(PO_(4))_(3)(LATP)SSE with NASICON structure exhibits high ionic conductivity,low cost and superior air stability,which enable it as one of the most hopeful candidates for all-solidstate batteries(ASSBs).However,the high interfacial impedance between LATP and electrodes,and the severe interfacial side reactions with the lithium metal greatly limit its applications in ASSBs.This review introduces the crystal structure and ion transport mechanisms of LATP and summarizes the key factors affecting the ionic conductivity.The side reaction mechanisms of LATP with Li metal and the promising strategies for optimizing interfacial compatibility are reviewed.We also summarize the applications of LATP including as surface coatings of cathode particles,ion transport network additives and inorganic fillers of composite polymer electrolytes.At last,this review proposes the challenges and the future development directions of LATP in SSBs. | Ke Yang Likun Chen Jiabin Ma Yan-Bing He Feiyu Kang | 2021 | InfoMat2021,3,11: | 2 |
| 7 | Influence of coating thickness on rolling contact fatigue of alumina ceramics thermally sprayed on steel roller显示文摘 | Masahiro Fujii Jiabin Ma Akira Yoshida Sadato Shigemura Kazumi Tani | 2006 | Tribology International2006,,11: | 1 |
| 8 | Application of absorption heat transformer to recover waste heat from a synthetic rubber plant显示文摘 | Ma Xuehu Chen Jiabin | | 0,,23: | 1 |
| 9 | Enhancement of bubble absorption process using a CNTs-ammonia binary nanofluid显示文摘 | Ma Xuehu Su Fengmin Chen Jiabin | 2009 | International Communi cations in Heat and Mass Transfer2009,36,: | 1 |
| 10 | T-2 toxin induces apoptosis in differentiated murine embryonic stem cells through reactive oxygen species-mediated mitochondrial pathway显示文摘 | Haiqin Fang Yingliang Wu Jiabin Guo Jing Rong Long Ma Zengming Zhao Daiying Zuo Shuangqing Peng | 2012 | Apoptosis2012,,8: | 1 |
| 11 | Highly active pd/WO2-CNTs catalysts for formic acid electro-oxidation and study of the kinetics显示文摘 | Chun'an Ma* Yanxian Jin Meiqin Shi Youqun Chu Yinghua Xu Wenping Jia Qiaohua Yuan Jiabin Chen Huiling Pan Qiuwei Dai | 2014 | Ionics2014,20,: | 1 |
| 12 | Hot deformation behavior and finite element simulation of Mg-8.3Gd-4.4Y-1.5Zn-0.8Mn alloy显示文摘To study the hot deformation behavior of Mg-8.3 Gd-4.4 Y-1.5 Zn-0.8 Mn(wt%) alloy,hot compression tests were conducted using a Gleeble-3500 thermal simulator at temperatures ranging from 653 to773 K,true strain rates of 0.001-1 s^(-1),and a deformation degree of 60%.Results of hot compression experiments show that the flow stress of the alloy increases with the strain rate.The true stress-true strain curves are corrected by correcting the effect of temperature rise in the deformation process.Activation energy,Q,equal to 287380 J/mol and material constant,n,equal to 4.59 were calculated by fitting the true stress-true strain curves.Then,the constitutive equation was established and verified via finite element simulation.Results of the hot processing map show that the probability of material instability increases with the degree of deformation,which indicates that the material is not suitable for large deformation in a single pass.On the whole,the alloy is appropriate for multipass processing with small deformation and a suitable processing temperature and strain rate are 733 K and 0.01 s-1,respectively. | Jiabin Fan Minglong Ma Kui Zhang Yongjun Li Xinggang Li Guoliang Shi Jiawei Yuan | 2022 | Journal of Rare Earths2022,40,5: | 1 |
| 13 | In- fluence of Coating Thickness on Rolling Contact Fatigue of Alumina Ceramics Thermally Sprayed on Steel Roller显示文摘 | MASAHIRO Fujii JIABIN Ma AKIRA Yoshida | 2006 | Tribology International2006,39,: | 1 |
| 14 | Influence of processing conditions of polymer film on dropwise condensation heat transfer 显示文摘 | Xuehu Ma Jiabin Chen Dunqi Xu | 2002 | International Journal of Heat Mass Transfer2002,45,16: | 1 |
| 15 | Application of absorption heat transformer to recover waste heat from a synthetic rubber plant 显示文摘 | MA Xuehu CHEN Jiabin LI Songping | 2003 | Applied Thermal Engineering2003,23,7: | 1 |
| 16 | Transcription factor KLF9 suppresses the growth of hepatocellular carcinoma cells in vivo and positively regulates p53 expression显示文摘 | Jiabin Sun Boshi Wang Yun Liu Li Zhang Aihui Ma Zhaojuan Yang Yuhua Ji Yongzhong Liu | 2014 | Cancer Letters2014,,1: | 1 |
| 17 | Heat and mass transfer enhancement of the bubble absorption for a binary nanofluid显示文摘 | Xuehu Ma Fengmin Su Jiabin Chen | 2007 | Journal of Mechanical Science and Technology2007,,21: | 1 |
| 18 | Heat and mass transfer enhancement of the bubble absorption for a binary nanofluid显示文摘 | Ma Xuehu Su Fengmin Chen Jiabin | 2007 | Journal of Mechancial Science and Technology2007,21,: | 1 |
| 19 | Rolling contact fatigue of alumina ceramics sprayed on steel roller under pure rolling contact eondition显示文摘 | Masahiro Fujii Akira Yoshida Jiabin Ma | 2006 | Tribol- ogy International2006,,39: | 1 |
| 20 | Heat and mass transfer enhancement of the bubble absorption for a binary nanofluid显示文摘 | Ma Xuehu Su Fengmin Chen Jiabin | | 0,,11: | 1 |