• 제목/요약/키워드: nano aluminum

검색결과 331건 처리시간 0.025초

나노 및 마이크로 알루미늄의 가수분해에 의한 알루미늄 수산화물의 형성 (Formation of Aluminum Hydroxides by Hydrolysis of Nano and Micro Al Powders)

  • 오영화;이근희;박중학;이창규;김흥회;김도향
    • 한국분말재료학회지
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    • 제12권3호
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    • pp.186-191
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    • 2005
  • A formation of aluminum hydroxide by hydrolysis of nano and micro aluminum powder has been studied. The nano aluminum powder of 80 to 100 nm in diameter was fabricated by a pulsed wire evaporation (PWE) method. The micro powder was commercial product with more than $10\;{\mu}m$ in diameter. The hydroxide type and morphology depending on size of the aluminum powder were examined by several analyses such as XRD, TEM, and BET. The hydrolysis procedure of micro aluminum powder was different from that of nano aluminum powder. The nano aluminum powder after immersing in the water was transformed rapidly to a nano fibrous boehmite, accompanying with a remarkable temperature increase, and then further transformed slowly to a stable bayerite. However, the micro powder was changed to the stable bayerite slowly and directly. The formation of fibrous aluminum hydroxide from nano aluminum powder might be due to the fine cracks which were formed by hydrogen gas pressure on the surface hydroxide layer during hydrolysis. The nano powder with large specific surface area and small size reacted more actively and faster than the micro powder, and transformed to meta-stable hydroxide in relatively short reaction time. Therefore, the formation of fibrous boehmite is special characteristic of hydrolysis of nano aluminum powder.

양극산화된 알루미늄과 마이크로 인덴데이션을 이용한 3차원 마이크로-나노 하이브리드 패턴 제작 (Development of 3D Micro-Nano Hybrid Patterns Using Anodized Aluminum and Micro-Indentation)

  • 권종태;신홍규;김병희;서영호
    • 대한기계학회논문집A
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    • 제31권12호
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    • pp.1139-1143
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    • 2007
  • A simple method for the fabrication of 3D micro-nano hybrid patterns was presented. In conventional fabrication methods of the micro-nano hybrid patterns, micro-patterns were firstly fabricated and then nano-patterns were formatted on the micro-patterns. Moreover, these micro-nano hybrid patterns could be fabricated on the flat substrate. In this paper, we suggested the fabrication method of 3D micro-nano hybrid patterns using micro-indentation on the anodized aluminum substrate. Since diameter of the hemispherical nano-pattern can be controlled by electrolyte and applied voltage in the anodizing process, we can easily fabricated nano-patterns of diameter of loom to 300nm. Nano-patterns were firstly formatted on the aluminum substrate, and then micro-patterns were fabricated by deforming the nano-patterned aluminum substrate. Hemispherical nano-patterns of diameter of 150nm were fabricated by anodizing process, and then micro-pyramid patterns of the side-length of $50{\mu}m$ were formatted on the nano-patterns using micro-indentation. Finally we successfully replicated 3D micro-nano hybrid patterns by hot-embossing process. 3D micro-nano hybrid patterns can be applied to nano-photonic device and nano-biochip application.

AAO를 이용한 나노 패턴 마스터 제작에 관한 연구 (Study on Fabrication of Highly Ordered Nano Patterned Master by Using Anodic Aluminum Oxidation)

  • 신홍규;권종태;서영호;김병희
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2007년도 춘계학술대회 논문집
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    • pp.368-370
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    • 2007
  • AAO(Anodic Aluminum Oxidation) method has been known that it is practically useful for the fabrication of nano-structures and makes it possible to fabricate the highly ordered nano masters on large surface and even on the 2.5 or 3D surface at low cost comparing to the expensive e-beam lithography or the conventional silicon processing. In this study, by using the multi-step anodizing and etching processes, highly ordered nano patterned master with concave shapes was fabricated. By varying the processing parameters, such as initial matter and chemical conditions; electrical and thermal conditions; time scheduling; and so on, the size and the pitch of the nano pattern can be controlled. Consequently, various alumina/aluminum nano structures can be easily available in any size and shape by optimized anodic oxidation in various aqueous acids. The resulting good filled uniform nano molded structure through hot embossing molding process shows the validity of the fabricated nano pattern masters.

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금속 나노와이어의 제조와 특성 (Metal nano-wire fabrication and properties)

  • 보보무로드 함라쿠로프;김인수
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.432-434
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    • 2009
  • Metal nano-wire arrays on Cu-coated seed layers were fabricated by aqueous solution method using sulfate bath at room temperature. The seed layers were coated on Anodic aluminum oxide (AAO) bottom substrates by electrochemical deposition technique, length and diameter of metal nano-wires were dominated by controlling the deposition parameters, such as deposition potential and time, electrolyte temperature. Anodic aluminum oxide (AAO) was used as a template to prepare highly ordered Ni, Fe, Co and Cu multilayer magnetic nano-wire arrays. This template was fabricated with two-step anodizing method, using dissimilar solutions for Al anodizing. The pore of anodic aluminum oxide templates were perfectly hexagonal arranged pore domains. The ordered Ni, Fe, Co and Cu systems nano-wire arrays were characterized by Field Emission Scanning Electron Microscopy (FE-SEM) and Vibrating Sample Magnetometer (VSM). The ordered Ni, Fe, Co and Cu systems nano-wires had different preferred orientation. In addition, these nano-wires showed different magnetization properties under the electrodepositing conditions.

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나노 인텐테이션을 이용한 산화알루미늄(AAO, Anodic Aluminum Oxide)구조물의 물성치에 대한 연구 (The study on properties of AAO(Anodic Aluminum Oxide) structures using nano indentation)

  • 고성현;이대웅;지상은;박현철;이건홍;황운봉
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.144-149
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    • 2004
  • Porous anodic alumina has been used widely for corrosion protection of aluminum surfaces or as dielectric material in micro-electronics applications. It exhibits a homogeneous morphology of parallel pores which can easily be controlled between 10 and 400nm. It has been applied as a template for fabrication of the nanometerscale composite. In this study, mechanical properties of the AAO structures are measured by the nano indentation method. Nano indentation technique is one of the most effective method to measure the mechanical properties of nano-structures. Basically, hardness and elastic modulus can be obtained by the nano-indentation. Using the nano-indentation method, we investigated the mechanical properties of the AAO structure with different size of nano-holes. In results, we find the hole effect that changes the mechanical properties as size of nano hole.

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Hole effect를 고려한 AAO(Anodic Aluminum Oxide) 구조물의 물성치에 대한 연구 (The Study on Properties of AAO(Anodic Aluminum Oxide) Structures with Hole Effect)

  • 고성현;이대웅;지상은;박현철;이건홍;황운봉
    • 한국정밀공학회지
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    • 제21권4호
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    • pp.186-193
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    • 2004
  • Porous anodic alumina has been used widely for corrosion protection of aluminum surfaces or as dielectric material in micro-electronics applications. It exhibits a homogeneous morphology of parallel pores which can easily be controlled between 10 and 400nm. It has been applied as a template for fabrication of the nanometer-scale composite. In this study, mechanical properties of the AAO structures are measured by the nano indentation method. Nano indentation technique is one of the most effective methods to measure the mechanical properties of nano-structures. Basically, hardness and elastic modulus can be obtained by the nano-indentation. Using the nano-indentation method, we investigated the mechanical properties of the AAO structure with different size of nano-holes. In results, we find the hole effect that changes the mechanical properties as size of nano hole.

Aluminum Oxide Nano-Rings Synthesized by Electrospinning Techniques

  • 조준모;박주연;고성위;김돈;강용철
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.102-102
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    • 2010
  • One or two-dimensional nanostructures such as nanowires or nanomats have been widely uses as building blocks for nanoscale electronic devices. Nanofiber is one of sub-category of nano structures, it is easy to make nano-sized fiber by electrospinning technique. Nanofiber has large surface area as compared with their volume, it could be widely applied to many areas easily. Electrospinning technique is easy to control their structures and morphology safely and cost-effectively. We made nano-rings as a model of one dimensional nanostructures by electrospinning technique. To our knowledge, there were no reports on the preparation and investigation of alumina nano-rings by electrospinning technique. In this study, aluminum oxide nano-rings were produced after electospinning and calcination. The synthesized aluminum oxide nano-rings were characterized by scanning electron microscopy (SEM) to identify the morphology and the diameter of the ring, X-ray diffraction (XRD) to verify the crystallinity of the aluminum oxide, and X-ray photoelectron spectroscopy (XPS) for investigation of the chemical nature of the synthesized nano-rings.

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알루미늄의 발수 표면처리 기술 개발 (Development of Surface Treatment for Hydrophobic Property on Aluminum Surface)

  • 변은연;이승훈;김종국;김양도;김도근
    • 한국표면공학회지
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    • 제45권4호
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    • pp.151-154
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    • 2012
  • A hydrophobic surface has been fabricated on aluminum by two-step surface treatment processes consisting of structure modification and surface coating. Nature inspired micro nano scale structures were artificially created on the aluminum surface by a blasting and Ar ion beam etching. And a hydrophobic thin film was coated by a trimethylsilane ($(CH_3)_3SiH$) plasma deposition to minimize the surface energy of the micro nano structure surface. The contact angle of micro nano structured aluminum surface with the trimethylsilane coating was $123^{\circ}$ (surface energy: 9.05 $mJ/m^2$), but the contact angle of only trimethylsilane coated sample without the micro nano surface structure was $92^{\circ}$ (surface energy: 99.15 $mJ/m^2$). In the hydrophobic treatment of aluminum surface, a trimethylsilane coated sample having the micro nano structure was more effective than only trimethylsilane coated sample without the micro nano structure.

나노 및 마이크로 입자 알루미늄의 폭발 특성 (Explosion Properties of Nano and Micro-sized Aluminium Particles)

  • 한우섭;이근원
    • 한국가스학회지
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    • 제18권5호
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    • pp.20-25
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    • 2014
  • 마이크로 크기의 알루미늄 분진의 폭발 특성에 대한 연구는 많이 조사되어 왔지만 나노 크기의 알루미늄 분진에 대한 연구는 매우 적다. 본 연구에서는 나노 및 마이크로 크기의 알루미늄 분진 (70 nm, 100 nm, $6{\mu}m$, $15{\mu}m$)이 분진폭발특성에 미치는 영향을 20 L 폭발시험 장치를 사용하여 실험적으로 조사하였다. 부유 상태의 알루미늄 분진의 입자 크기가 감소하면, 나노 크기에서의 알루미늄 분진의 폭발하한농도(LEC)는 마이크로 크기의 알루미늄분진보다 감소하였다. 나노 크기의 알루미늄 분진에서의 폭발특성은 마이크로 크기의 알루미늄 분진과 명확한 폭발성의 차이를 보이지 않았다. 투과 전자 현미경(TEM )에 의해 나노 크기의 알루미늄 입자의 관찰로부터 입자 간의 응집성의 증가가 나노 알루미늄 분진의 폭발성에 영향을 미칠 수 있을 것으로 추정되었다.

나노 알루미늄-물 혼합물의 수반응 연소 모델링 (Combustion modeling of nano aluminum particle and water mixture)

  • 윤시경;성홍계
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2010년도 제34회 춘계학술대회논문집
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    • pp.472-475
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    • 2010
  • 나노 알루미늄과 물의 연소 반응을 정상상태 층류 연소로 모델링하여 이론적 접근을 하였으며 압력에 따른 화염전파속도의 영향을 조사하였다. 물의 상변화에 따른 증발열을 고려하였으며 다양한 압력 영역(0.1MPa ~ 10MPa)에 대한 연소 특성을 살펴보았다. 모델링 영역을 1)물+알루미늄 2)증기+알루미늄 3)반응영역으로 나누었으며 영역의 방정식을 구성하고 화염속도에 대한 해석적 해를 구하였다. 입자크기에 따른 연소실 압력의 영향을 도출하여 시험결과와 비교, 분석 하였다.

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