• 제목/요약/키워드: metal organic frameworks

검색결과 91건 처리시간 0.024초

Layer-by-layer 기법을 통한 Cu2(btc)3-AAO 하이브리드 분리막의 제조 (Preparation of Cu2(btc)3-AAO Hybrid Membrane by Layer-by-layer Technique)

  • 유현석;최진섭
    • 한국표면공학회지
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    • 제51권1호
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    • pp.21-26
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    • 2018
  • The $Cu_2(btc)_3$ metal-organic frameworks (MOF) coated anodic aluminum oxide (AAO) membrane was successfully prepared by layer-by-layer technique using hand spray method. It was confirmed that the $Cu_2(btc)_3$ layer, which has the pore sized in 2-3 nm, on surface of AAO exhibited the polycrystalline thin film structure by XRD analysis. More than 100 repetitive spray cycles were required to obtain more robust and thick MOFs on AAO and it was possible to uniformly coat both the top and bottom surfaces of the AAO. It should be noted that the MOFs also could be coated on surface of pores resulting in reduce the size of pore from 52 nm to 32 nm.

Recent advances of 17O NMR spectroscopy

  • Lin, Yuxi;Kim, Hak Nam;Lee, Young-Ho
    • 한국자기공명학회논문지
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    • 제23권2호
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    • pp.56-60
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    • 2019
  • Study on the structure and dynamics of molecules at the atomic level is of great significance for understanding their function and stability as well as roles for various chemico-physical and biological processes. $^{17}O$ NMR spectroscopy has appeared as an elegant technique for investigating of the physicochemical and structural properties of oxygen-containing compounds such as metal organic frameworks and nanosized oxides. This method has drawn much attention as it provides unique insights into the properties of targets based on atomistic information of local oxygen environments which is otherwise difficult to obtain using other methods. In this mini review, we introduce and discuss the recent study and developments of $^{17}O$ NMR techniques which are tailored for the investigation on the structure and dynamics of water and inorganic materials.

Synthesis, Structures and Properties of Three Metal-organic Frameworks Based on 3-(4-((1H-imidazol-1-yl)methyl)phenyl)acrylic Acid

  • Liang, Peng;Ren, Tian-Tian;Tian, Wei-Man;Xu, Wen-Jia;Pan, Gang-Hong;Yin, Xian-Hong
    • Bulletin of the Korean Chemical Society
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    • 제35권1호
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    • pp.182-188
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    • 2014
  • Three new transition metal complexes based on Ozagrel $[Cu(Ozagrel)]_n$ (1), $[Zn(Ozagrel)(Cl)]_n$ (2), ${[Mn_2-(Ozagrel)(1,4-ndc)_2]{\cdot}(H_2O)}_n$ (3), (Ozagrel = 3-(4-((1H-imidazol-1-yl)methyl)phenyl)acrylic acid; 1,4-ndc = 1,4-Naphthalenedicarboxylic acid) have been hydrothermally synthesized and characterized by elemental analyse, IR, TG, PXRD, electrochemical analysis and single crystal X-ray diffraction. X-ray structure analysis reveals that 1 and 3 are 3D coordination polymers, while complex 2 is a two-dimensional network polymer, the 2D layers are further packed into 3D supramolecular architectures that are connected through hydrogen bonds. The electrochemistry of 1-3 was studied by cyclic voltammetry in methanol and water using a glassy carbon working electrode. Also, thermal decomposition process and powder X-ray diffraction of complexes were investigated.

서로 다른 산을 조절인자로 활용하여 제조한 지르코늄 기반 금속유기골격체의 Diisopropyl Methylphosphonate 흡착 특성 (The Characteristics of Diisopropyl Methylphosphonate Adsorption on Zirconium-based Metal Organic Frameworks Manufactured by using Different Acids as Modulators)

  • 장원형;김홍현;정상조
    • 공업화학
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    • 제32권5호
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    • pp.524-531
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    • 2021
  • UiO-66은 높은 흡착능력과 구조적 및 열적 안정성 등으로 여러 현장에 적용 가능한 금속유기골격체(MOF)이다. UiO-66은 제조과정에서 조절인자로 사용되는 산의 종류와 양에 따라 구조적 특성이 변형되고, 화학작용제 흡착 능력을 높일 수 있다고 알려져 있다. 이에 본 연구에서는 다양한 산을 조절인자로 첨가하여 UiO-66을 합성하고, 그 특성을 FT-IR, XRD, 적정장치, 그리고 유사화학작용제 diisopropyl methylphosphonate (DIMP)를 활용한 흡착실험을 통해 분석하였다. 연구 결과 UiO-66의 제조과정에서 염산을 첨가할 시 UiO-66의 Zr-OH 결합과 UiO-66의 유기연결체인 테레프 탈산 구조에 일부 손상이 있었다. 특히 이러한 구조 손상은 염산의 농도가 일정 수준 이상으로 높을 때, 그리고 합성 시간이 일정 시간 이상으로 길어질 때 발생하였다. 하지만 아세트산과 포름산을 조절인자로 활용하여 제조한 UiO-66은 구조적 손상이 발견되지 않았으며, 염산을 활용하여 제조한 UiO-66에 비하여 결정도, 비표면적, 공극의 부피, 그리고 DIMP 흡착 능력이 모두 높게 나타나 향후 화학작용제 흡착제로서 활용 가능성이 높을 것으로 판단되었다.

Nanostructured Metal Organic Framework Modified Glassy Carbon Electrode as a High Efficient Non-Enzymatic Amperometric Sensor for Electrochemical Detection of H2O2

  • Naseri, Maryam;Fotouhi, Lida;Ehsani, Ali
    • Journal of Electrochemical Science and Technology
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    • 제9권1호
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    • pp.28-36
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    • 2018
  • Metal-organic frameworks have recently been considered very promising modifiers in electrochemical analysis due to their unique characteristics among which tunable pore sizes, crystalline ordered structures, large surface areas and chemical tenability are worth noting. In the present research, $Cu(btec)_{0.5}DMF$ was electrodeposited on the surface of glassy carbon electrode at room temperature under cathodic potential and was initially used as the active materials for the detection of $H_2O_2$. The cyclic voltammogram of $Cu(btec)_{0.5}DMF$ modified GC electrode shows distinct redox peaks potentials at +0.002 and +0.212 V in 0.1 M phosphate buffer solution (pH 6.5) corresponding to $Cu^{(II)}/Cu^{(I)}$ in $Cu(btec)_{0.5}DMF$. Acting as the electrode materials of a non-enzymatic $H_2O_2$ biosensor, the $Cu(btec)_{0.5}DMF$ brings about a promising electrocatalytic performance. The high electrocatalytic activity of the $Cu(btec)_{0.5}DMF$ modified GC electrode is demonstrated by the amperometric response towards $H_2O_2$ reduction with a wide linear range from $5{\mu}M$ to $8000{\mu}M$, a low detection limit of $0.865{\mu}M$, good stability and high selectivity at an applied potential of -0.2 V, which was higher than some $H_2O_2$ biosensors.

산화그래핀 기반 나노여과막의 최신 연구동향 (Review on Graphene Oxide-based Nanofiltration Membrane)

  • 김대우
    • 멤브레인
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    • 제29권3호
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    • pp.130-139
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    • 2019
  • 그래핀, 제올라이트, metal-organic frameworks (MOF)s 등 다양한 나노 소재를 이차원 나노쉬트 형태로 제조하고, 이를 이용한 초박막 고성능 분리막을 개발하고자 하는 연구가 활발히 진행되고 있다. 특히, 산화그래핀의 경우, 2000년대 초반에 관련 연구가 시작된 이후, 다양한 합성 및 박막 코팅 기술이 축적되어 있어 빠른 속도로 분리막 분야에 응용되고 있다. 다층으로 적층된 산화그래핀 박막은 층간 거리를 조절함에 따라 물리적 거름막으로 작용할 수 있으며, 또한 표면의 기능기 및 삽입된 물질과 거르는 물질 간의 상호작용을 제어함에 따라 다양한 물질의 선택적 분리가 가능하다. 본 총설에서는 산화그래핀의 나노여과막 응용분야에 관하여 중점적으로 다루고자 한다. 본고에서는, 다양한 용매 내에서 산화그래핀 박막의 분리 기작 및 성능에 영향을 미치는 핵심 요소들에 대해 요약하였으며, 그 외 산화그래핀 기반 분리막의 실질적인 상용화에 필요한 핵심 기술요소 및 개발 동향에 대하여 논하고자 한다.

Two 3D CdII and ZnII Complexes Based on Flexible Dicarboxylate Ligand and Nitrogen-containing Pillar: Synthesis, Structure, and Luminescent Properties

  • Liu, Liu;Fan, Yan-Hua;Wu, Lan-Zhi;Zhang, Huai-Min;Yang, Li-Rong
    • Bulletin of the Korean Chemical Society
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    • 제34권12호
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    • pp.3749-3754
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    • 2013
  • Two 3D isomorphous and isostructural complexes, namely, $[Zn(BDOA)(bpy)(H_2O)_2]_n$ (1) and $[Cd(BDOA)-(bpy)(H_2O)_2]_n$ (2); (BDOA = Benzene-1,4-dioxyacetic acid, bpy = 4,4'-bipyridine) were synthesized under hydrothermal conditions and characterized by means of elemental analyses, thermogravimetric (TG), infrared spectrometry, and single crystal X-ray diffraction. Complexes 1 and 2 crystallize in the triclinic system, space group P-1 and each metal ion in the complexes are six-coordinated with the same coordination environment. In the as-synthesized complexes, $BDOA^{2-}$ anions link central metal ions to form a 1D zigzag chain $[-BDOA^{2-}-Zn(Cd)-BDOA^{2-}-Zn(Cd)-]_{\infty}$, whereas bpy pillars connect metal ions to generate a 1D linear chain $[-bpy-Zn(Cd)-bpy-Zn(Cd)-]_{\infty}$. Both infinite chains are interweaved into 2D grid-like layers which are further constructed into a 3D open framework, where hydrogen bonds play as the bridges between the adjacent 2D layers. Luminescent properties of complex 1 showed selectivity for $Hg^{2+}$ ion.

MOF-5 및 마이크로다공성 카본의 수소 저장 성능: Pt 첨가 및 하이브리드화의 영향 (Hydrogen Storage Capacities of MOF-5 and Microporous Carbon: Effects of Pt Loading and Hybridization)

  • ;서동진;서영웅
    • 한국수소및신에너지학회논문집
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    • 제19권5호
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    • pp.377-385
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    • 2008
  • 최근 수소 저장물질로서 금속-유기 골격체(metal-organic frameworks; MOFs)가 주목을 받고 있으나 상온에서의 수소 저장성능이 낮은 문제점을 가지고 있어 이를 개선하기 위한 노력들이 필요하다. 본 연구에서는 MOF-5 및 제올라이트 Y로부터 합성된 마이크로다공성 카본을 합성하여 상온 및 약 80 bar에서 수소 저장성능을 측정하였으며, 그 결과 이들의 수소 저장성능은 각각 0.77 및 0.59 wt%였다. 이에 두 물질의 수소 저장성능을 향상시키기 위하여 5 wt% 백금을 각각의 물질에 담지시켜 백금이 없는 물질에 비하여 1.21 내지 1.25배의 개선 효과를 얻을 수 있었다. 한편 수소 spillover 현상을 활용하기 위하여 MOF-5 및 Pt/마이크로다공성 카본을 sucrose와 함께 탄화시킨 결과, 최종 하이브리드 물질이 상온 및 약 82 bar에서 0.93 wt%의 수소 저장성능을 보였으며, 이는 백금에 의하여 흡착된 수소 원자가 MOF-5 및 마이크로다공성 카본으로 이동하여 저장되는 것으로 해석된다.

다공성 물질을 이용한 CO2 포집 및 분리: 다공성 탄소와 유연한 MOF 비교 연구 (CO2 Capture & Separation in Microporous Materials: A Comparison Between Porous Carbon and Flexible MOFs)

  • 정민지;박서하;오현철;박귀일
    • 한국재료학회지
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    • 제28권7호
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    • pp.417-422
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    • 2018
  • The stereotype of flexible MOFs(Amino-MIL-53) and carbonized porous carbon prepared from renewable resources is successfully synthesized for $CO_2$ reduction application. The textural properties of these microporous materials are investigated, and their $CO_2$ storage capacity and separation performance are evaluated. Owing to the combined effects of $CO_2-Amino$ interaction and its flexibility, a $CO_2$ uptake of $2.5mmol\;g^{-1}$ is observed in Amino-MIL-53 at 20 bar 298 K. In contrast, $CH_4$ uptake in Amino-MIL-53 is very low up to 20 bar, implying potential sorbent for $CO_2/CH_4$ separation. Carbonized samples contain a small quantity of metal residues(K, Ca, Mg, S), resulting in naturally doped porous carbon. Due to the trace metal, even higher $CO_2$ uptake of $4.7mmol\;g^{-1}$ is also observed at 20 bar 298 K. Furthermore, the $CH_4$ storage capacity is $2.9mmol\;g^{-1}$ at 298 K and 20 bar. To evaluate the $CO_2$ separation performance, the selectivity based on ideal adsorption solution theory for $CO_2/CH_4$ binary mixtures on the presented porous materials is investigated.

A review: methane capture by nanoporous carbon materials for automobiles

  • Choi, Pil-Seon;Jeong, Ji-Moon;Choi, Yong-Ki;Kim, Myung-Seok;Shin, Gi-Joo;Park, Soo-Jin
    • Carbon letters
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    • 제17권1호
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    • pp.18-28
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    • 2016
  • Global warming is considered one of the great challenges of the twenty-first century. In order to reduce the ever-increasing amount of methane (CH4) released into the atmosphere, and thus its impact on global climate change, CH4 storage technologies are attracting significant research interest. CH4 storage processes are attracting technological interest, and methane is being applied as an alternative fuel for vehicles. CH4 storage involves many technologies, among which, adsorption processes such as processes using porous adsorbents are regarded as an important green and economic technology. It is very important to develop highly efficient adsorbents to realize techno-economic systems for CH4 adsorption and storage. In this review, we summarize the nanomaterials being used for CH4 adsorption, which are divided into non-carbonaceous (e.g., zeolites, metal-organic frameworks, and porous polymers) and carbonaceous materials (e.g., activated carbons, ordered porous carbons, and activated carbon fibers), with a focus on recent research.