• 제목/요약/키워드: Metal nitrides

검색결과 34건 처리시간 0.028초

텅스텐 및 희유금속 회수를 위한 초경합금 전이금속질화물 코팅소재 특성연구 (A Study on the Properties of Transition Metal Nitride Coating Materials for the Recovery of Tungsten and Rare Metals)

  • 김지우;김명재;김효경;박소현;서민경;김지웅
    • 자원리싸이클링
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    • 제31권1호
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    • pp.46-55
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    • 2022
  • 최근 희유금속 자원 회수에서 초경합금 스크랩 재활용의 중요성이 증가하고 있다. 그러나 IV, V족 전이금속 질화물로 코팅된 초경합금 스크랩에서 고순도 분말 회수에서 어려움을 겪고 있다. 제1원리 계산을 사용하여 IV 및 V족 전이금속 질화물(TiN, VN, ZrN, NbN, HfN 및 TaN)의 구조, 탄성 및 기계적 특성을 조사하였다. IV족 전이금속 질화물은 V족 전이금속 질화물보다 높은 공유결합 특성을 보였다. 따라서 IV족 전이금속 질화물은 V족 전이금속 질화물보다 취성 거동을 보였다. 대조적으로 V족 전이금속 질화물은 최외각전자 농도에 영향받는 금속결합의 특성 때문에 IV족 전이금속 질화물보다 전단응력에 대한 약한 저항성과 연성 거동을 보였다. Crystal orbital Hamilton population 분석 결과는 모든 전이금속 질화물의 전단 저항 경향성이 일치함을 보여주었다.

브레이징한 2상 스테인리스강 UNS32550의 미세조직 및 기계적 특성 (Microstructure and Mechanical Property of Brazed Joint in Duplex Stainless Steel, UNS32550)

  • 김대업;강정윤
    • Journal of Welding and Joining
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    • 제21권2호
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    • pp.64-69
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    • 2003
  • The bonding phenomena and mechanical property of duplex stainless steel during brazing have been investigated. The UNS32550 was used for base metal, and the MBF50 was used for insert metal. Brazing was carried out under the various conditions (brazing temperature : 1473K, 1498K, holding time : 0∼1.8ks). There were various microconstituents in the bonded interlayer because of reaction between liquid insert metal and base metal. In the early stage of brazing, BN is formed in the bonded interlayer and base metal near the bonded layer. Cr made is formed in the bonded interlayer. The amount of BN and Cr nitrides decrease with the increase of bonding temperature and holding time. Superior shear strength of 550MPa is obtained by restraining the formation of nitrides. (Received January 17, 2003)

Recent advances in 2-D nanostructured metal nitrides, carbides, and phosphides electrodes for electrochemical supercapacitors - A brief review

  • Theerthagiri, Jayaraman;Durai, Govindarajan;Karuppasamy, K.;Arunachalam, Prabhakarn;Elakkiya, Venugopal;Kuppusami, Parasuraman;Maiyalagan, Thandavarayan;Kim, Hyun-Seok
    • Journal of Industrial and Engineering Chemistry
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    • 제67권
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    • pp.12-27
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    • 2018
  • Supercapacitors (SCs) has gained an impressive concentration by the researchers due to its advantages such as high energy and power densities, long cyclic life, rapid charge-discharge rates, low maintenance and desirable safety. Hence it has been widely utilized in energy storage and conversion devices. Among the different components of SC, electrodes play a vital role in the performances of SCs. In this review, we present the recent advances in 2-D nanostructured metal nitrides, carbides, and phosphides based materials for SC electrodes. Finally, the electrochemical stability and designing approach for the future advancement of the electrode materials are also highlighted.

차세대 2차원 소재, MXenes의 연구 동향 (Research trends of MXenes as the Next-generation Two-dimensional Materials)

  • 이호준;윤예준;장진광;변종민
    • 한국분말재료학회지
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    • 제28권2호
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    • pp.150-163
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    • 2021
  • Interest in eco-friendly materials with high efficiencies is increasing significantly as science and technology undergo a paradigm shift toward environment-friendly and sustainable development. MXenes, a class of two-dimensional inorganic compounds, are generally defined as transition metal carbides or nitrides composed of few-atoms-thick layers with functional groups. Recently MXenes, because of their desirable electrical, thermal, and mechanical properties that emerge from conductive layered structures with tunable surface terminations, have garnered significant attention as promising candidates for energy storage applications (e.g., supercapacitors and electrode materials for Li-ion batteries), water purification, and gas sensors. In this review, we introduce MXenes and describe their properties and research trends by classifying them into two main categories: transition metal carbides and nitrides, including Ti-based MXenes, Mo-based MXenes, and Nb-based MXenes.

IV족 천이금속 질화물과 bcc Fe간 계면 에너지의 제일원리 연구 (A First Principles Calculation of the Coherent Interface Energies between Group IV Transition Metal Nitrides and bcc Iron)

  • 정순효;정우상;변지영
    • 한국재료학회지
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    • 제16권8호
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    • pp.473-478
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    • 2006
  • The coherent interface energies and misfit strain energies of Fe/XN (X=Ti, Zr, Hf) systems were calculated by first principles method. The interface energies in Fe/TiN, Fe/ZrN and Fe/HfN systems were 0.343, 0.114, and 0.030 $J/m^2$, respectively. Influence of bond energy was estimated using the discrete lattice plane/nearest neighbor broken bond(DLP/NNBB) model. It was found that the dependence of interface energy on the type of nitride was closely related to changes of the bond energies between Fe, X and N atoms before and after formation of the Fe/XN interfaces. The misfit strain energies in Fe/TiN, Fe/ZrN, and Fe/HfN systems were 0.239, 1.229, and 0.955 eV per 16 atoms(Fe; 8 atoms and XN; 8 atoms). More misfit strain energy was generated as the difference of lattice parameters between the bulk Fe and the bulk XNs increased.

An Overview of Self-Grown Nanostructured Electrode Materials in Electrochemical Supercapacitors

  • Shinde, Nanasaheb M.;Yun, Je Moon;Mane, Rajaram S.;Mathur, Sanjay;Kim, Kwang Ho
    • 한국세라믹학회지
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    • 제55권5호
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    • pp.407-418
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    • 2018
  • Increasing demand for portable and wireless electronic devices with high power and energy densities has inspired global research to investigate, in lieu of scarce rare-earth and expensive ruthenium oxide-like materials, abundant, cheap, easily producible, and chemically stable electrode materials. Several potential electrode materials, including carbon-based materials, metal oxides, metal chalcogenides, layered metal double hydroxides, metal nitrides, metal phosphides, and metal chlorides with above requirements, have been effectively and efficiently applied in electrochemical supercapacitor energy storage devices. The synthesis of self-grown, or in-situ, nanostructured electrode materials using chemical processes is well-known, wherein the base material itself produces the required phase of the product with a unique morphology, high surface area, and moderate electrical conductivity. This comprehensive review provides in-depth information on the use of self-grown electrode materials of different morphologies in electrochemical supercapacitor applications. The present limitations and future prospects, from an industrial application perspectives, of self-grown electrode materials in enhancing energy storage capacity are briefly elaborated.

바나듐 탄화물 촉매를 이용한 수소생성용 암모니아 분해반응 (NH3 Decomposition Reaction for Hydrogen Formation Using Vanadium Carbide Catalysts)

  • 김정수;최성신;최정길
    • 한국수소및신에너지학회논문집
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    • 제31권1호
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    • pp.1-7
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    • 2020
  • The synthesis and catalytic activities over vanadium carbides were examined for ammonia decomposition reaction to produce the hydrogen. In particular, the comparison of vanadium nitrides were made on the ammonia decomposition reaction. The experimental data exhibited that BET surface areas ranged from 5.2 ㎡/g to 25.6 ㎡/g and oxygen uptake values varied from 3.8 μmol/g to 31.3 μmol/g. It is general that vanadium carbides (VC) were observed to be superior to vanadium nitrides for ammonia decomposition reaction. The primary reason for these differences were thought to be related to the extent of electronegativity between these materials. Most of vanadium carbide crystallites were exceeded by Pt/C crystallite. We assumed that the activities for vanadium carbide crystallites (VC) were comparable to or even higher than that determined for the Pt/C crystallite.

기계적 합금화에 의한 Cr-N계 합금의 비정질화 과정 (Amorphization Process of Cr-N Alloy System by Mechanical Alloying)

  • 이충효;이성희;이상진;권영순
    • 한국분말재료학회지
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    • 제10권4호
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    • pp.288-293
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    • 2003
  • Mechanical alloying (MA) by high energy ball mill of Pure chromium Powders was carried out under the nitrogen gas atmosphere. Cr-N amorphous alloy powders have been produced through the solid-gas reaction subjected to MA. The atomic structure during amorphization process was observed by X-ray and neutron diffractions. An advantage of the neutron diffraction technique allows us to observe the local atomic structure surrounding a nitrogen atom. The coordination number of metal atoms around a N atom turns out to be 5.5 atoms. This implies that a nitrogen atom is located at both of centers of the tetrahedron and octahedron formed by metal atoms to stabilize an amorphous Cr-N structure. Also, we have revealed that a Cr-N amorphous alloy may produced from a mixture of pure Cr and Cr nitrides powders by solid-solid reaction during mechanical alloying.