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6篇 您的检索式:作者名="FENG Jinian"
    题名 作者 年代 出处 被引量
1Self-sacrificial templating synthesis of flower-like nickel phyllosilicates and its application as high-performance reinforcements in epoxy nanocomposites显示文摘The nanocomposites of flower-like nickel phyllosilicate particles incorporated into epoxy resin were fabricated via an in-situ mixing process.The flower-like nickel phyllosilicate particles were firstly synthesized using a mild self-sacrificial templating method,and the morphology and lamellar structure were examined carefully.Several properties of mechanical,thermal and tribological responses of epoxy nanocomposites were performed.It was demonstrated that adequate flower-like nickel phyllosilicate particles dispersed well in the matrix,and the nanocomposites displayed enhanced tensile strength and elastic modulus but decreased elongation at break as expected.In addition,friction coefficient and wear rate were increased first and then decreased along with the particle content,and showed the lowest values at a mass fraction of 5%.Nevertheless,the incorporated flower-like nickel phyllosilicate particles resulted in the continuously increasing thermal stability of epoxy resin(EP)nanocomposites.This study revealed the giant potential of flower-like particles in preparing high-quality EP nanocomposites.Jinian Yang Xuesong Feng Shibin Nie Yuxuan Xu Zhenyu Li 2022Frontiers of Chemical Science and Engineering2022,16,4:2
2Bioinformatic Mining of Type I Microsatellites from Expressed Sequence Tags of Channel Catfish (Ictalurus punctatus)显示文摘Jerry Serapion Huseyin Kucuktas Jinian Feng Zhanjiang Liu 2004Marine Biotechnology2004,,4:1
3Thrips(Insecta:Thysanoptera)of China显示文摘MIRAB-BALOU M TONG Xiaoli FENG Jinian 2011Check List2011,7,6:1
4Bioinformatic Mining of Type I Microsatellites from Expressed Sequence Tags of Channel Catfish (Ictalurus punctatus)显示文摘Jerry Serapion Huseyin Kucuktas Jinian Feng Zhanjiang Liu 2004Marine Biotechnology2004,,4:1
5Erratum to:Self-sacrificial templating synthesis of flower-like nickel phyllosilicates and its application as high-performance reinforcements in epoxy nanocomposites显示文摘Fig.3(a)on page 488 and Fig.7(a,a′)on page 493:It has come to our attention that the SEM pictures of Fig.3(a)and Fig.7(a,a′)for the fractured and worn surfaces of pure EP,respectively,are misused,because they have been reported in our previous work and were chosen accidentally to denote as the same control sample prepared using the exactly same procedure.The corrected Fig.3(a)and Fig.7(a,a′)are shown below.The data analysis,descriptions and conclusions are not affected by these unintentional errors.Jinian Yang Xuesong Feng Shibin Nie Yuxuan Xu Zhenyu Li 2022Frontiers of Chemical Science and Engineering2022,16,10:0
6Facile synthesis of polyaniline nanorods to simultaneously enhance the mechanical properties and wear resistance of epoxy composites显示文摘To enhance the mechanical properties and wear resistance of epoxy resin,polyaniline nanorods were first synthesized using a facile route,and then introduced into the epoxy matrix to yield composites via solution mixing.Several measurements were conducted to investigate the phase structures and compositions of polyaniline nanorods,and their positive influences on the mechanical and tribological properties of epoxy resin were also characterized.The results confirmed that the as-synthesized polyaniline exhibited representative rod-like morphologies and dispersed well in the epoxy matrix,leading to significant enhancements in the tensile strength and elastic modulus of epoxy composites.The highest values of 110.33 MPa and 2.04 GPa were obtained by adding 5%-7%polyaniline nanorods,which were 43%and 62%higher than the pure sample,respectively.The wear rate was increased first and then decreased along with polyaniline nanorods,presenting the lowest value of 2.12×10^(−5) mm^(3)·Nm^(−1) by adding 5%filler,which was markedly reduced by ca.70%compared to the control sample.Finally,the possible wear mechanism was proposed and discussed in detail.This study tried to broaden the applications of polyaniline nanorods in the field of tribology.Liu Jiang Jinian Yang Jie Dong Shibin Nie Yuxuan Xu Xuesong Feng 2023Frontiers of Chemical Science and Engineering2023,17,9:0
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