graphite electrode 中文意思是什麼

graphite electrode 解釋
石墨電極
  • graphite : n 【化學】石墨,黑鉛,炭精;鉛筆粉。 colloidal graphite膠體石墨。 graphite electrode 【電學】石墨...
  • electrode : n. 1. 電極。2. 電焊條。adj. -less 無電極的。
  1. The complex formed by cnbr - activated alginate and antibody is aggregated to the surface of the paraffin - graphite - chitosan electrode by electrostatic adsorption ( coacervation ). the concentration of sjag can be detected by determining the redox current of o - aminophenol, which oxidized by h2o2 in the presence of hrp. moreover, the immunosensor shows some improved performances including high sensitivity, selectivity and less non - specific adsorption

    褐藻酸鈉?抗體復合物通過靜電吸附作用被凝集到含石墨?石蠟?殼聚糖組分的電極表面,然後與抗原和酶標抗原進行競爭反應,以鄰氨基酚為電子媒介,通過測定酶催化下雙氧水對其氧化的電流大小來間接測定抗原的濃度。
  2. In this paper, in order to study the influence of electrolyte to the lithium - ion battery performance, we assembled the lithium - ion battery using the different electrode material ( limn _ 2o _ 4, licoo _ 2 and natural graphite ) and the electrolytes which were mainly composed of lipf _ 6 as the electrolyte lithium salt and the different solvents ( including additives ) which were mixed according to the certain proportion

    本論文主要以lipf _ 6為電解質鋰鹽,採用不同溶劑(添加劑)按一定比例混合,對有機電解液進行優化,與不同的電極材料( limn _ 2o _ 4 、 licoo _ 2或天然石墨)組裝成電池,研究電解液對鋰離子電池性能的影響。
  3. In this paper, high concentration vanadium electrolyte has been prepared by electrolysis, graphite and graphite felt electrode also have been made, moreover, the electeodes have been activated, and based it, a lab - level vanadium battery has been manufactured. cyclic voltammetry, current step and invariable current charge / discharge method have been used to study the reactive mechanism of electrolysis, of vanadium electrode reaction and of electrode activation, also to investigate maiden charge process and electricity performance of vanadium battery. the influence of electrode activation and trace stibium ion, indium ion added into vanadium electrolyte has been discussed

    利用循環伏安法、恆電流階躍法、恆電流充放電循環等電化學方法,探討了電解法制備釩液流電解質的反應機理,考察了釩的電極反應、電極表面活化處理對釩的電極反應的影響,結合電極反應分析了活化的機理;還考察了釩電池初次充電活化過程及恆流充/放電循環的電性能;並且考察了添加銻離子、銦離子對釩電池電性能特別是析氫行為的影響。
  4. It was reported that the mechanism of lithium intercalation into or deintercalation from graphene crystal lattices only explained the interaction with the electrolyte, li - ion and electrode material that exists only on the surface of graphite

    文獻報道嵌鋰石墨嵌脫鋰離子及充放電機制只停留在電解液與鋰離子在電極表面和電極材料間的相互作用。
  5. Test method for modulus of rupture in bending of electrode graphite

    石墨電極芯撓曲斷裂模數的試驗方法
  6. Abstract : it introduces the principle of graphite electrode abrading tool and develops the software and hardware of nc machine. this can detect the position of platform feed with great inertial - mass through photoelectrical encoder, the vibration magnitude of translation worktable with eddy transducer. based on these the machine parameters can be automatically regulate, and the grinding process is smooth

    文摘:介紹了石墨電極研磨成形機的原理和數控軟、硬體系統的研製開發;用光電編碼器實現了大質量進給滑臺的位置檢測;並用電渦流傳感器檢測平動臺振動量,進而實現了機器參數的自動調整,從而保證了石墨電極研磨成形機研磨加工的順利進行。
  7. Ultra high powr graphite electrode

    超高功率石墨電極
  8. Diamond saw blade is a tool which is widely used in cutting hard brittle materials, such as stone, concrete, glass, crystal, graphite electrode and so on

    金剛石鋸片廣泛地應用於切割石材、混凝土、玻璃、水晶、石墨電極等硬脆材料。
  9. The sparkle gap is comprised of a pair of spheroidal graphite electrode with the feature of adjusting easily

    火花間隙由一對石墨球面電極組成,石墨電極調節靈活。
  10. Naphthol green b, which is low cost and easy obtained, has been shown to be an efficient mediator, promoting electron transfer from glucose oxidase to graphite electrode. the naphthol green b has low formal potential, which can reduce the overvoltage of the h2o2 oxidation to eliminate electrochemical interference. rapid response, oxygen independence and high sensitivity are shown by the naphthol green b mediated biosensor

    將萘酚綠b作為電子媒介體與葡萄糖氧化酶一起固定於電極,研製出性能優良的新型葡萄糖生物傳感器,其電子傳遞快速,響應時間短,不受氧氣濃度的影響,檢測電位低,抗干擾能力強,靈敏度高。
  11. It introduces the principle of graphite electrode abrading tool and develops the software and hardware of nc machine. this can detect the position of platform feed with great inertial - mass through photoelectrical encoder, the vibration magnitude of translation worktable with eddy transducer. based on these the machine parameters can be automatically regulate, and the grinding process is smooth

    介紹了石墨電極研磨成形機的原理和數控軟、硬體系統的研製開發;用光電編碼器實現了大質量進給滑臺的位置檢測;並用電渦流傳感器檢測平動臺振動量,進而實現了機器參數的自動調整,從而保證了石墨電極研磨成形機研磨加工的順利進行。
  12. First, it is associated with the prepared conditions of spectral pure graphite electrode ; second, compared with the untreated graphite, the surface functional groups of ? oh and ? cooh on the treated one increased dramatically with hot concentrated h2so4 and the impurities on electrode surface decreased significantly with ultrasonic rinse. a sequence reaction mechanism was proposed for the eis of mn ( ) / mn ( ) on different graphite electrodes. the spectral graphite and the treated one can be suitable for the inert electrode of mn ( ) / mn ( ) cathode

    分析原因認為:一方面與光譜純石墨電極的制備條件有關;另一方面,與未處理石墨電極相比,處理石墨表面含氧官能團? oh 、 ? cooh明顯增多,而且超聲清洗又使其表面雜質含量減少,並提出了一個反應機理解釋mn ( iii ) / mn ( ii )電對在三種石墨電極上阻抗譜的不同,說明光譜純石墨和處理石墨均可以作為mn ( iii ) / mn ( ii )正極電對的惰性工作電極。
  13. The comparison of carbon nanotube and active carbon and graphite nanofibers used as electrode material is also presented. a composite electrode material comprising carbon nanotubes and ruthenium oxide is obtained and the capacitance of supercapacitor reaches 270f / g. the carbon nanotube and the natural manganese oxide compounded for the first time and the initial results were achieved

    本文採用納米碳管作為超級電容器電極材料,得到比電容量為110f g的超級電容器結構單元,討論了粘結劑、電解液等多種影響因素,並與乙炔黑電極和魚骨狀碳纖維電極進行了對比;制備了納米碳管與氧化釕復合材料,得到比電容量為270f g的超級電容器結構單元;本文還首次將納米碳管與大洋錳礦復合用作超級電容器電極材料,取得了初步成果,為天然礦物的開發利用開辟了一個新的發展方向。
  14. Electrogenerated chemiluminescence at a graphite electrode modified with gold nanoparticles for determination of ferrocenemonocarboxylic acid

    金納米粒子修飾電極上電化學發光法測定二茂鐵羧酸的研究
  15. The results indicated that the electrochemical reversibility and charge / discharge efficiency on spectral pure graphite electrode are superior to that on the other two, and the possible causes of these differences are presented

    結果表明:其在光譜純石墨電極上的電化學可逆性、充放電效率最優,處理石墨上次之,而在未處理石墨上的表現不理想。
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