维普中文期刊产品整合服务
6篇 您的检索式:作者名="Misnon"
    题名 作者 年代 出处 被引量
1Hydrophic fluorinate TiO2-ZrO2 as catalyst in epoxidation of 1-octene with aqueous hydrogen peroxide显示文摘Nur H Hau N Y Misnon I I 2006Mater Lett2006,60,:1
2Pseudocapacitive Charge Storage in Thin Nanobelts显示文摘This article reports that extremely thin nanobelts(thickness~10 nm)exhibit pseudocapacitive(PC)charge storage in the asymmetric supercapacitor(ASC)configuration,while show battery-type charge storage in their single electrodes.Two types of nanobelts,viz.NiO-Co_(3)O_(4) hybrid and spinal-type NiCo_(2)O_(4),developed by electrospinning technique are used in this work.The charge storage behaviour of the nanobelts is benchmarked against their binary metal oxide nanowires,i.e.,NiO and Co_(3)O_(4),as well as a hybrid of similar chemistry,CuO-Co_(3)O_(4).The nanobelts have thickness of~10 nm and width~200 nm,whereas the nanowires have diameter of~100 nm.Clear differences in charge storage behaviours are observed in NiO-Co_(3)O_(4) hybrid nanobelts based ASCs compared to those fabricated using the other materials-the former showed capacitive behav-iour whereas the others revealed battery-type discharge behaviour.Origin of pseudocapacitance in nanobelts based ASCs is shown to arise from their nanobelts morphology with thickness less than typical electron diffusion lengths(~20 nm).Among all the five type of devices fabricated,the NiO-Co_(3)O_(4) hybrid ASCs exhibited the highest specific energy,specific power and cycling stability.Ria Kunwar Midhun Harilal Syam G.Krishnan Bhupender Pal Izan Izwan Misnon C.R.Mariappan Fabian I.Ezema Hendry Izaac Elim Chun-Chen Yang Rajan Jose 2019Advanced Fiber Materials2019,1,3:1
3Alkylsilylated Gold Loaded Magnesium Oxide Aerogel Catalyst in the Oxidation of Styrene显示文摘Hadi Nur Izan Izwan Misnon Halimaton Hamdan 2009Catalysis Letters (-)2009,,1:1
4High Performance Supercapacitor Electrodes from Electrospun Nickel Oxide Nanowires显示文摘Vidhyadharan B Zain N K M Misnon I I 2014J Alloy Compd2014,,610:1
5Transformation of Supercapacitive Charge Storage Behaviour in a Multi elemental Spinel CuMn_(2)O_(4) Nanofibers with Alkaline and Neutral Electrolytes显示文摘Electrode material has been cited as one of the most important determining factors in classifying an energy storage system’s charge storage mechanism,i.e.,as battery-type or supercapacitive-type.In this paper,we show that along with the electrode material,the electrolyte also plays a role in determining the charge storage behaviour of the system.For the purpose of our research,we chose multi-elemental spinal type CuMn_(2)O_(4) metal oxide nanofibers to prove the hypothesis.The material is synthesized as nanofibers of diameter~120 to 150 nm in large scales by a pilot scale electrospinning set up.It was then tested in three different electrolytes(1 M KOH,1 M Na_(2)SO_(4) and 1 M Li_(2)SO_(4)),two of which are neutral and the third is alkaline(KOH).The cyclic voltammograms and the galvanostatic charge-discharge of the electrode material in a three-electrode sys-tem measurement showed that it exhibit different charge storage mechanism in different electrolyte solutions.For the neutral electrolytes,a capacitive behaviour was observed whereas a battery-type behaviour was seen for the alkaline electrolyte.This leads us to conclude that the charge storage mechanism,along with the active material,also depends on the electrolyte used.Ria Kunwar Syam G.Krishnan Izan Izwan Misnon Fatemeh Zabihi Shengyuan Yang Chun-Chen Yang Rajan Jose 2021Advanced Fiber Materials2021,3,4:0
6Self-rechargeable energizers for sustainability显示文摘Electrical energy generation and storage have always been complementary to each other but are often disconnected in practical electrical appliances.Recently,efforts to combine both energy generation and storage into self-powered energizers have demonstrated promising power sources for wearable and implantable electronics.In line with these efforts,achieving self-rechargeability in energy storage from ambient energy is envisioned as a tertiary energy storage(3rd-ES)phenomenon.This review examines a few of the possible 3rd-ES capable of harvesting ambient energy(photo-,thermo-,piezo-,tribo-,and bio-electrochemical energizers),focusing also on the devices'sustainability.The self-rechargeability mechanisms of these devices,which function through modifications of the energizers’constituents,are analyzed,and designs for wearable electronics are also reviewed.The challenges for self-rechargeable energizers and avenues for further electrochemical performance enhancement are discussed.This article serves as a one-stop source of information on self-rechargeable energizers,which are anticipated to drive the revolution in 3rd-ES technologies.JinKiong Ling Ria Kunwar Linlin Li Shengjie Peng Izan Izwan Misnon Mohd Hasbi Ab Rahim Chun-Chen Yang Rajan Jose 2022eScience2022,2,4:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费