• 제목/요약/키워드: nano-size

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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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나노 인장시험을 위한 압축 시험기용 인장시편 제작에 관한 연구 (Fabrication of Nano-Size Specimens for Tensile Test Employing Nano-Indentation Device)

  • 임태우;양동열
    • 한국정밀공학회지
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    • 제32권10호
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    • pp.911-916
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    • 2015
  • In the nano/micro scale, material properties are dependent on the size-scale of a structure. However, conventional micro-scale tensile tests have limitations to obtain reliable values of nano-scale material properties owing to residual stress and elastic slippage in the gripping/aligning process. The indenter-driven nano-scale tensile test provides prominent advantages simple testing device, high-quality nano-scale metallic specimen with negligible residual stress. In this paper, two-types of specimens (a specimen with multi-testing parts and a specimen with a single-testing part) are discussed. Focused ion beam (FIB) is employed to fabricate a nano-scale specimen from a thin nickel film. Using the specimen with a single-testing part, we obtained a nano-scale stress-strain curve of electroplated nickel film.

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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접촉 면적에 따른 나노/마이크로 마찰 특성 (Nano/Micro Friction with the Contact Area)

  • 윤의성;;공호성
    • Tribology and Lubricants
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    • 제21권5호
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    • pp.209-215
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    • 2005
  • Nano/micro friction with the contact area was studied on Si-wafer (100) and diamond-like carbon (DLC) film. Borosilicate balls of radii $0.32{\mu}m,\;0.5{\mu}m,\;1.25{\mu}m\;and\;2.5{\mu}m$ mounted on the top of AFM tip (NPS) were used for nano-scale contact and Soda Lime glass balls of radii 0.25mm, 0.5mm, 1mm were used for micro-scale contact. At nano-scale, the friction between ball and surface was measured with the applied normal load using an atomic force microscope (AFM), and at micro scale it was measured using ball-on flat type micro-tribotester. All the experiments were conducted at controlled conditions of temperature $(24\pm1^{\circ}C)$ and humidity $(45\pm5\%)$. Friction was measured as a function of applied normal load in the range of 0-160nN at nano scale and in the range of $1000{\mu}N,\; 1500{\mu}N,\;3000{\mu}N\;and\;4800{\mu}N$ at micro scale. Results showed that the friction at nano scale increased with the applied normal load and ball size for both kinds of samples. Similar behavior of friction with the applied normal load and ball size was observed for Si-wafer at micro scale. However, for DLC friction decreased with the ball size. This difference of in behavior of friction in DLC nano- and microscale was attribute to the difference in the operating mechanisms. The evidence of the operating mechanisms at micro-scale were observed using scanning electron microscope (SEM). At micro-scale, solid-solid adhesion was dominant in Silicon-wafer, while plowing in DLC. Contrary to the nano scale that shows almost a wear-less situation, wear was prominent at micro-scale. At nano- and micro-scale, effect of contact area on the friction was discussed with the different applied normal load and ball size.

나노 사이즈 입자가 포함된 양극 활물질 함량에 따른 차량용 AGM 연축전지 성능 특성 (Performance characteristics of AGM lead acid battery with the content of positive plate incorporating nano-size additive material)

  • 임태섭;김성준;김상동;양승철;정연길
    • 한국결정성장학회지
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    • 제30권4호
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    • pp.123-130
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    • 2020
  • AGM 연축전지(Absorbent Glass Mat Lead-Acid Battery)의 수명 특성을 결정짓는 양극 활물질(Active Material)의 주요 구성 결정인 4BS(Tetrabasic lead Sulfate)의 입자 크기를 제어하기 위해 4BS Nano Seed(NS)를 적용 중에 있다. 4BS NS 적용 시, 나노 입자 특성상 분산 안정성이 저하되어 제 기능을 다하지 못한다. 이를 개선하기 위해 기존 첨가제인 광명단(Red Lead)에 나노 입자의 4BS seed가 포함된 Incorporated Nano Seed(INS)를 함량별로 첨가하여 양극판 분석과 제품 성능을 평가하였다. INS 함량이 증가할수록 4BS 입자 크기는 작아지면서 균일해지는 특성을 확인할 수 있었으며, 반응 비표면적 증가에 따른 고율 방전 특성도 향상되는 것을 알 수 있었다. 극판 제조 공정에서의 개별 극판에 대한 입도 분포의 편차를 확인하기 위해, AGM 연축전지 200 대 대한 내부 저항 및 전압 검사를 진행하였으며 제품 제조 공정 품질 편차가 감소하는 것을 확인하였다.

Effect of Dextran Gel on Preparation of Nano-liposomes Loaded with Ginkgolide

  • Tong, Yuan;Chen, Yan;Pan, Jian;Huang, Li;Wang, Ruijun
    • Bulletin of the Korean Chemical Society
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    • 제31권9호
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    • pp.2542-2546
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    • 2010
  • The objective of this paper was to investigate the effect of dextran gel on preparation of nano-liposomes loaded with ginkgolide. During preparation, Sephadex G75, G50 and G25 were added in the aqueous phase respectively. From the experiment, nano-liposomes prepared by dextran gels were found spherical and smooth. The result indicated that aperture of dextran gels were narrower, particle size of nano-liposomes was smaller (207.13 ~ 89.16 nm) and zeta potential was greater (-36.2 ~ -29.5 mV) in more negative. The study also revealed that differences of the entrapment efficiency and drug loading among the three types of nano-liposomes were not significant. In vitro drug release test demonstrated that nano-liposomes had a better controlled release. To conclude, by using dextran gel in the preparation of nano-liposome loaded with ginkgolide, the particle size could be effectively controlled and the drug stability could be improved.

에멀젼 반전법으로 제조된 쿼세틴을 함유하는 나노에멀젼에 대한 에탄올의 영향 (The Effects of Ethanol on Nano-emulsions Containing Quercetin Prepared by Emulsion Inversion Point Method)

  • 박수남;원보령;강명규;안유진
    • 대한화장품학회지
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    • 제35권2호
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    • pp.79-89
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    • 2009
  • 본 연구에서는 고농도의 쿼세틴을 함유하는 안정한 나노에멀젼의 조성을 찾고 POE (30) hydrogenated castor oil (HCO-30)/오일/쿼세틴/에탄올/물로 이루어진 나노에멀젼에 대한 에탄올의 영향을 연구하였다. 나노에멀젼은 저에너지법인 emulsion inversion point (EIP) 법과 고에너지법인 균질기(homogenizer)를 병합하여 제조하였다. 나노에멀젼에 대한 에탄올과 다른 성분들의 영향을 평가하기 위해 입자 크기, 에멀젼의 형태, 그리고 입자 분포와 같은 물리적 특성을 조사하였다. 나노에멀젼에 대한 쿼세틴의 최적 농도는 0.2 %였다. 계면활성제인 POE (30) hydogenated castor oil (HCO-30) 농도에 따른 나노에멀젼의 입자 크기를 보면, 2.00 %부터는 에멀젼의 입자 크기는 300 nm 이하였으며 HCO-30을 4.75 % 함유하는 나노에멀젼이 가장 안정하고 입자 크기도 172.40 nm로 나타났다. 마지막으로 에탄올 4.00 %를 함유한 나노에멀젼의 입자 크기는 128.15 nm이고 입도 분포 또한 좁게 나타났다. 나노에멀젼의 불안정화 과정은 Ostwald ripening에 의한 것으로 보여진다. 나노에멀젼에 대한 에탄올의 영향을 연구함으로써 소량의 에탄올을 이용하여 약물의 봉입률을 증가시킬 수 있으며, 안정한 나노에멀젼을 만듦으로써 스킨 로션, 에센스 및 향수와 같은 화장품과 제약 등에 응용될 수 있을 것으로 사료된다.

Study of complete transparent nano-emulsions which contain oils

  • Kwak, Jong-Im;Kim, Ju-Duck;J, i-Hong-Geun
    • 대한화장품학회:학술대회논문집
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    • 대한화장품학회 2003년도 IFSCC Conference Proceeding Book I
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    • pp.258-267
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    • 2003
  • Recently inside nano liposome particles or nano-emulsions which contain tough-melting physiology activity materials or the coefficient of low organism utilization promote the coefficient of organism utilization, so this part has been studied a lot because they can absorb selectly cosmetics, specially physiology activity materials, into the skin. Also, in particle size, cells interstitial lipid interval are 30~50nm, so nano-emulsions that the size is similar to 30~50 nm are made to study for absorbing quickly into the skin. And transparent skin which contains oils in common skin lotion dosage form has become the center of public interest. The used nano-emulsions in this study were unsaturated lecithin/co-surfactant! ethanol/ oil / water. And polysorbate 20/ polysorbate 80/ Dicetyl phosphate/hydrogenated .caster oil/ isoceteth-20/SLS were used in co-surfactant. The used oils were cyclomethicone and caprylic/capric triglyceride. The manufacturing process was that microfluidizer was fixed in 1000bar and transit times were changed from 1 to 10 times. From transparency and particle size, the transparency sequence was SLS> polysorbate 20= polysorbate 80> isoceteth-20> dicetyl phosphate >hydrogenated caster oil and the particle size was small. Specially cyclomethicone nano-emulsions, when we made unsaturated lecithin /SLS /ethanol/water/cyclomethicone, cyclomethicone 5% was good for transparency. And 20% of this was used for making transparent skin toner in common skin dosage form.

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Nano-sized $Gd_{2}O_{3}:Eu$ phosphor particles of high brightness

  • Lee, Chang-Hee;Roh, Hyun-Sook;Kang, Yun-Chan;Park, Hee-Dong;Park, Seung-Bin
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2003년도 International Meeting on Information Display
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    • pp.791-794
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    • 2003
  • To synthesize $Gd_{2}O_{3}:Eu$ phosphor powder of nano size and high luminescence efficiency under UV (ultraviolet) and VUV (vacuum ultraviolet) light, organic additives such as citric acid and ethylene glycol and $Na_{2}CO_{3}$ flux were introduced in large-scale spray pyrolysis and critical conditions for forming nano-sized particles were investigated. The $Gd_{2}O_{3}:Eu$ phosphor particles prepared from solutions with organic additives such as citric acid and ethylene glycol had micron size and spherical shape. However, the particles prepared from polymeric precursor solution with $Na_{2}CO_{3}$ flux had nano size and non-aggregation characteristics. The as-prepared spherical particles with micron size turned into nano-sized particles during post-treatment by recrystallization process. The nano-sized $Gd_{2}O_{3}:Eu$ phosphor particles showed higher brightness than the commercial $Y_2O_3:Eu$ phosphor product under both UV light of 254nm and VUV light of 147 nm.

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MoS2/Montmorillonite Nanocomposite: Preparation, Tribological Properties, and Inner Synergistic Lubrication

  • Cheng, Lehua;Hu, Enzhu;Chao, Xianquan;Zhu, Renfa;Hu, Kunhong;Hu, Xianguo
    • Nano
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    • 제13권12호
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    • pp.1850144.1-1850144.13
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    • 2018
  • A nano-$MoS_2$/montmorillonite K-10 (K10) composite was prepared and characterized. The composite contains two types of 2H-$MoS_2$ nanoparticles. One is the hollow spherical $MoS_2$ with a size range of 75 nm, and the other is the spherical nano cluster of $MoS_2$ with a size range of 30 nm. The two kinds of nano-$MoS_2$ were formed via assembly of numerous $MoS_2$ nano-platelets with a size of ~10 nm. A tribological comparison was then made among nano-$MoS_2$/K10, K10, nano-$MoS_2$ and a mechanical mixture of K10 and nano-$MoS_2$. K10 reduced the wear but slightly increased the friction. Nano-$MoS_2$ remarkably reduced both friction and wear. The mechanical mixture demonstrated better wear resistance than nano-$MoS_2$, indicating a synergistic anti-wear effect of nano-$MoS_2$ and K10. The synergistic effect was reinforced using nano-$MoS_2$/K10 instead of the mechanical mixture. A part of the $MoS_2$ in the contact region always lubricated the friction pair, and the rest formed a tribofilm. K10 segregated the friction pair to alleviate the ablation wear but magnified the abrasive wear. S-$MoS_2$ protects K10 and they together function as both a lubricant and an isolating agent to reduce the ablation and abrasive wear.