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5篇 您的检索式:作者名="Rahim Shah"
    题名 作者 年代 出处 被引量
1粘结剂对形貌各异的石墨负极电化学性能的影响(英文)显示文摘本文通过不同形貌的石墨材料,研究了聚丙烯腈-丁二烯(NBR)作为锂离子电池粘结剂的电化学性能,并与商业化粘结剂聚偏氟乙烯(PVDF)进行了对比。由于NBR无定形的晶体结构和连续性的特点,使其能够更好的粘结在活性材料表面,在球型和片状石墨表面都能形成均一的具有抑制副反应和提高锂离子传输能力的保护层。实验证明,片层状石墨在以PVDF作粘结剂时,电化学性能较差。然而,以NBR作为粘结剂时,球型和片状的石墨材料在库伦效率、循环稳定性和传输动力学上都有明显的提升。此项研究证实了粘结剂和活性材料的一致性对于提高锂离子电池电化学性能的重要性。Rahim Shah Naveed Alam Amir ARazzaq 杨成 陈宇杰 胡加鹏 赵晓辉 彭扬 邓昭 2019物理化学学报2019,35,12:2
2A preliminary biomechanical assessment of a polymer composite hip implant using an infrared thermography technique validated by strain gage measurements 显示文摘Bougherara H Rahim E Shah S 2011J Biomech Eng2011,133,7:1
3Spatial Analysis of Colorec- tal Cancer Cases in Kuala Lumpnr显示文摘Shah SA Neoh HM Rahim SS 2014Asian Pat: J Cancer Prey2014,15,3:1
4Cobalt coordination with pyridines in sulfurized polyacrylonitrile cathodes to form conductive pathways and catalytic M-N4S sites for accelerated Li-S kinetics显示文摘Sulfurized polyacrylonitrile(SPAN)represents a unique class of cathode material for lithium sulfur(Li-S)batteries as it eradicates the polysulfides shuttling issue in carbonate-based electrolyte.However,due to the essential chemical S-linking and organic nature of SPAN,the active mass percentage and rate capability are two bottleneck issues preventing its ultimate deployment outside of laboratories.In the current work,aiming to endow both the charge conductivity and catalytic activity to SPAN for maximizing the redox kinetics of S conversion,a freestanding nanofibrous SPAN cathode embedding conductive CNTs and atomically dispersed Co centers is fabricated via multivariate electrospinning.While the CNTs enable dramatically enhancing the fiber conductivity and generating mesoscopic porosity for facilitating charge and mass transportation,the cross-linking of SPAN by Co-N_(4) S motifs creates extra charge conduction pathways and further serves as the catalytic active sites for expediting redox S conversion.As a result,an extraordinary Li-SPAN performance is achieved with a high specific capacity up to 1856 mAh g^(-1)@0.2 C,a superb rate capability up to 10 C,and an ultra-long battery life up to 1500 cycles@1 C.Consequently,our study here provides insights into the adoption of coordination chemistry to maximize the sulfur utilization by ensuring a more complete redox conversion from SPAN to Li2 S,and vice versa.Amir Abdul Razzaq Ganwen Chen Xiaohui Zhao Xietao Yuan Jiapeng Hu Ziwei Li Yufeng Chen Jiabin Xu Rahim Shah Jun Zhong Yang Peng Zhao Deng 2021Journal of Energy Chemistry2021,30,10:0
5Morpholine hydrazone scaffold: Synthesis, anticancer activity and docking studies显示文摘In this paper, synthesis and anticancer activities of morpholine hydrazones scaffold(1-17) thoroughly studied. Small series of morpholine hydrazones synthesized by treating 5-morpholinothiophene-2-carbaldehyde with different aryl hydrazides to form morpholine hydrazones scaffold(1-17). The in vitro anticancer potential of all these compounds was checked against human cancer cell lines like Hep G2(human hepatocellular liver carcinoma) and MCF-7(human breast adenocarcinoma). Analogs 13 had similar substantial cytotoxic effects towards Hep G2 with IC_(50) value 6.31±1.03μmmol/L when compared with the standard Doxorubicin(IC_(50)value 6.00±0.80μmmol/L); while compounds 5,8 and 9 showed potent cytotoxicity against MCF-7 with IC_(50) value 7.08±0.42μmmol/L, 1.26±0.34μmmol/L and11.22±0.22μmmol/L respectively when compared with the standard Tamoxifen(IC_(50)= 11.00±0.40μmol/L). Molecular docking studies also performed to understand the binding interaction.Muhammad Taha Syed Adnan Ali Shah Muhammad Afifi Manar Zulkeflee Sadia Sultan Abdul Wadood Fazal Rahim Nor Hadiani Ismail 2017Chinese Chemical Letters2017,28,3:0
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