• 제목/요약/키워드: $CuOH^+$

검색결과 1,038건 처리시간 0.032초

유기-무기 혼성화합물로 부터 정육면체 Cu2O 합성 (Synthesis of Cubic Cu2O from Organic-Inorganic Hybrid)

  • 허영덕;송하철;국원근
    • 대한화학회지
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    • 제50권1호
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    • pp.60-64
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    • 2006
  • 구조의 유기-무기 혼성화합물 Cu2(OH)3(CH3COO)·H2O를 선구물질로 사용하여 Cu2O를 합성하였다. 75oC의 수용액에서 Cu2(OH)3(CH3COO)·H2O를 글루코오스로 환원시켜서 정육면체 Cu2O를 합성하였다. 선구물질과 글루코오스의 효과를 조사하였다. Cu2(OH)3(CH3COO)·H2O의 구조는 균일한 크기의 Cu2O를 만드는데 중요한 역할을 한다.

$Cu_2(OH)_3(CH_3COO){\cdot}H_2O$로 부터 마이크로파를 이용한 $Cu_2O$와 Cu의 합성 (Microwave-assisted synthesis of $Cu_2O$ and Cu from $Cu_2(OH)_3(CH_3COO){\cdot}H_2O$)

  • 송하철;허영덕
    • 한국결정성장학회지
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    • 제16권4호
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    • pp.166-171
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    • 2006
  • 층상 구조의 유기-무기 복합 소재 $Cu_2(OH)_3(CH_3COO){\cdot}H_2O$에 마이크로파를 조사하면서 $Cu_2O$와 Cu를 합성하였다. 에틸렌 글리콜에서는 $Cu_2(OH)_3(CH_3COO){\cdot}H_2O$이 환원이 되어서 Cu금속이 형성되는 반면에, 수용액에 글루코오스를 넣으면$Cu_2(OH)_3(CH_3COO){\cdot}H_2O$이 환원이 되어 $Cu_2O$가 형성되었다. 마이크로파 조사시간과 글루코오스의 농도가 $Cu_2O$의 입자의 생성과 성장에 미치는 영향을 확인하였다. 마이크로파의 조사시간이 길어질수록 $Cu_2O$의 입자는 수 ${\mu}m$의 구형에서 40nm의 지름을 가진 나노 선으로 변함을 확인하였다.

Borate 완충용액에서 구리의 부식과 부동화에 미치는 대류 영향 (Hydrodynamic Effects on Corrosion and Passivation of Copper in Borate Buffer Solution)

  • 천정균;김연규
    • 전기화학회지
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    • 제10권1호
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    • pp.14-19
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    • 2007
  • Cu-RDE를 이용하여 borate 완충용액에서 Cu의 부식과 부동화 과정의 반응구조를 연구하였다. 혼합 전위(mixed potential) 이론을 도입하여 대류확산의 조건(convective diffusion)에서 회전속도의 증가에 따라 부식전위가 양의 방향으로 증가하는 모형을 발견하였다. 산화에 의한 생성물은 중간물질 $Cu(OH)_{ads}$를 거쳐, 부식, 부동화의 시작, 중간, 마지막 등의 영역에서 각각 ${Cu(OH)_2}^-,\;Cu_2O,\;Cu(OH)_2,\;CuO$인 것으로 제안하였다.

NH4OH용액이 반도체 소자용 구리 박막 표면에 미치는 영향 (Cleaning Effects by NH4OH Solution on Surface of Cu Film for Semiconductor Devices)

  • 이연승;노상수;나사균
    • 한국재료학회지
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    • 제22권9호
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    • pp.459-464
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    • 2012
  • We investigated cleaning effects using $NH_4OH$ solution on the surface of Cu film. A 20 nm Cu film was deposited on Ti / p-Si (100) by sputter deposition and was exposed to air for growth of the native Cu oxide. In order to remove the Cu native oxide, an $NH_4OH$ cleaning process with and without TS-40A pre-treatment was carried out. After the $NH_4OH$ cleaning without TS-40A pretreatment, the sheet resistance Rs of the Cu film and the surface morphology changed slightly(${\Delta}Rs:{\sim}10m{\Omega}/sq.$). On the other hand, after $NH_4OH$ cleaning with TS-40A pretreatment, the Rs of the Cu film changed abruptly (${\Delta}Rs:till{\sim}700m{\Omega}/sq.$); in addition, cracks showed on the surface of the Cu film. According to XPS results, Si ingredient was detected on the surface of all Cu films pretreated with TS-40A. This Si ingredient(a kind of silicate) may result from the TS-40A solution, because sodium metasilicate is included in TS-40A as an alkaline degreasing agent. Finally, we found that the $NH_4OH$ cleaning process without pretreatment using an alkaline cleanser containing a silicate ingredient is more useful at removing Cu oxides on Cu film. In addition, we found that in the $NH_4OH$ cleaning process, an alkaline cleanser like Metex TS-40A, containing sodium metasilicate, can cause cracks on the surface of Cu film.

A Facile Method for the Synthesis of Freestanding CuO Nanoleaf and Nanowire Films

  • Zhao, Wei;Jung, Hyunsung
    • 한국표면공학회지
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    • 제51권6호
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    • pp.360-364
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    • 2018
  • A facile method to fabricate freestanding CuO nanoleaves and CuO nanowires-based films was demonstrated. $Cu(OH)_2$ nanoleaves and nanowires were prepared by a hydrolysis reaction in aqueous solution including pyridine and NaOH with the tailored concentrations at room temperature. The films of freestanding CuO nanoleaves and CuO nanowires can be successfully obtained via the simple vacuum infiltration following a thermal dehydration reaction. The morphologies and crystallinity of the $Cu(OH)_2$ nanoleaves/nanowires and CuO nanoleaves/nanowires were characterized by XRD, SEM, TEM and FT-IR. The films fabricated with freestanding CuO nanoleaves and nanowires in this study may be applicable for building high-efficiency organic binder-free devices, such as gas sensors, batteries, photoelectrodes for water splitting and so on.

Wire-like Bundle Arrays of Copper Hydroxide Prepared by the Electrochemical Anodization of Cu Foil

  • La, Duc-Duong;Park, Sung-Yeol;Choi, Young-Wook;Kim, Yong-Shin
    • Bulletin of the Korean Chemical Society
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    • 제31권8호
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    • pp.2283-2288
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    • 2010
  • Nanostructured copper compounds were grown by electrochemical anodization of copper foil in aqueous NaOH under varying conditions including electrolyte concentration, reaction temperature, current density, and reaction time. Their morphology and atomic composition were investigated by using SEM, TEM, XRD, EDS and XPS. At the conditions ([NaOH] = 1 M, $20^{\circ}C$, $2\;mA\;cm^{-2}$), wire-like orthorhombic $Cu(OH)_2$ nanobundles with an average width of 100 - 300 nm and length of $10\;{\mu}m$ were synthesized with the preferential [100] growth direction. Furthermore, when the concentration decreased to 0.5 M NaOH, the 1D nanobundle structure became narrower and longer without any change in compositions or crystalline structure. Side reaction pathways appeared to compete with the 1D nanostructure formation channels: the formation of CuO nanoleaves at $50^{\circ}C$ via the sequential dehydration of $Cu(OH)_2$, CuO/$Cu_2O$ aggregates in 4 M NaOH, and $Cu_2O$ nanoparticles and CuO nanosheets at lower current density.

유기-무기 복합소재로부터 CuO합성 (Synthesis of CuO from organic-inorganic hybrid)

  • 허영덕;권석순;국원근
    • 한국결정성장학회지
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    • 제15권5호
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    • pp.193-197
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    • 2005
  • 층상 구조의 유기-무기 복합 소재 $Cu_2(OH)_3(CH_3COO){\cdot}H_2O$를 전구체로 사용하여 CuO를 합성하였다. 외부의 다른 유기화합물 주형이 없이 단순한 $Cu_2(OH)_3(CH_3COO){\cdot}H_2O$의 열분해 방법을 사용하였다 이 방법은 저렴한 가격으로 단일 결정의 CuO 입자를 양산하는 방법을 제공한다 응집된 CuO 입자의 형태는 전구체의 구조에 크게 영향을 받는다.

NH4OH 수용액 하에서 Cu 호일의 산화를 통해 합성한 CuO 나노벽의 가스센싱 특성 (Gas sensing properties of CuO nanowalls synthesized via oxidation of Cu foil in aqueous NH4OH)

  • 슈엔하이엔뷔엔;팜티엔헝;풍딘호앗;이시홍;이상욱;이준형;김정주;허영우
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2018년도 춘계학술대회 논문집
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    • pp.141-141
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    • 2018
  • Copper is one of the most abundant metals on earth. Its oxide (CuO) is an intrinsically p-type metal-oxide semiconductor with a bandgap ($E_g$) of 1.2-2.0 eV 1. Copper oxide nanomaterials are considered as promising materials for a wide range of applications e.g., lithium ion batteries, dye-sensitized solar cells, photocatalytic hydrogen production, photodetectors, and biogas sensors 2-7. Recently, high-density and uniform CuO nanostructures have been grown on Cu foils in alkaline solutions 3. In 2011, T. Soejima et al. proposed a facile process for the oxidation synthesis of CuO nanobelt arrays using $NH_3-H_2O_2$ aqueous solution 8. In 2017, G. Kaur et al. synthesized CuO nanostructures by treating Cu foils in $NH_4OH$ at room temperature for different treatment times 9. The surface treatment of Cu in alkaline aqueous solutions is a potential method for the mass fabrication of CuO nanostructures with high uniformity and density. It is interesting to compare the gas sensing properties among CuO nanomaterials synthesized by this approach and by others. Nevertheless, none of above studies investigated the gas sensing properties of as-synthesized CuO nanomaterials. In this study, CuO nanowalls versus nanoparticles were synthesized via the oxidation process of Cu foil in NH4OH solution at $50-70^{\circ}C$. The gas sensing properties of the as-prepared CuO nanoplates were examined with $C_2H_5OH$, $CH_3COCH_3$, and $NH_3$ at $200-360^{\circ}C$.

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토양개량제를 장기연용한 논토양에서 구리와 아연의 분획화 및 유효도 (Fractionation and Availability of Cu and Zn in Paddy Soils Following a Long-Term Applications of Soil Amendments)

  • 정구복;이종식;김원일;연병렬;유인수
    • 한국토양비료학회지
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    • 제31권2호
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    • pp.107-113
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    • 1998
  • 퇴비, 석회, 규산 등 개량제 장기연용이 논 토양 및 현미중 중금속함량에 미치는 영향을 밝히기 위해 토양중 Cu 및 Zn의 연속침출($H_2O$, $KNO_3$, NaOH, $Na_2{^-}$, EDTA, $HNO_3$)을 수행하고 현미중 함량 및 토양의 화학성을 조사 분석한 결과는 다음과 같다. 퇴비, 석회, 규산 등을 장기연용한 토양의 Cu및 Zn에 대한 연속침출 결과 주된 형태는 각각 NaOH 침출성(유기태) 및 $HNO_3$ 침출성(황화물 및 잔류태)이였으며, 퇴비 장기연용으로 NaOH 침출성 및 EDTA 침출성(탄산염태) Cu함량은 증가하였고, 특히 Zn함량은 3요소 단용구보다 모든 형태에서 증가하였는데 상대적으로 증가폭이 적은 $KNO_3$ 침출성(치환태) Zn의 분포비율은 감소하였다. 개량제의 병용으로 $KNO_3$침출성 Zn함량 및 분포는 감소하였고 Cu는 일정한 경향이 없었다. NaOH 침출성 Cu함량은 유기물과 정의 상관을 보였고. 특히 Zn의 경우 모든 형태에서 유기물 및 치환성 K함량과 높은 정의 상관을 보였다. 토양의 O.M, CEC 및 양이온함량이 증가함에 따라 현미중 Cu함량은 감소하였으나 토양중 Cu 및 Zn의 모든 형태별함량과는 일정한 관련성이 없었다.

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Rational Design of Binder-Free Fe-Doped CuCo(OH)2 Nanosheets for High-Performance Water Oxidation

  • Patil, Komal;Jang, Su Young;Kim, Jin Hyeok
    • 한국재료학회지
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    • 제32권5호
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    • pp.237-242
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    • 2022
  • Designing and producing a low-cost, high-current-density electrode with good electrocatalytic activity for the oxygen evolution reaction (OER) is still a major challenge for the industrial hydrogen energy economy. In this study, nanostructured Fe-doped CuCo(OH)2 was discovered to be a precedent electrocatalyst for OER with low overpotential, low Tafel slope, good durability, and high electrochemically active surface sites at reduced mass loadings. Fe-doped CuCo(OH)2 nanosheets are made using a hydrothermal synthesis process. These nanosheets are clumped together to form a highly open hierarchical structure. When used as an electrocatalyst, the Fe-doped CuCo(OH)2 nanosheets required an overpotential of 260 mV to reach a current density of 50 mA cm-2. Also, it showed a small Tafel slope of 72.9 mV dec-1, and superior stability while catalyzing the generation of O2 continuously for 20 hours. The Fe-doped CuCo(OH)2 was found to have a large number of active sites which provide hierarchical and stable transfer routes for both electrolyte ions and electrons, resulting in exceptional OER performance.