• 제목/요약/키워드: Branched pore

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Morphology of Lithothamnion japonicum (Hapalidiaceae, Rhodophyta): A New Record of Coralline Species from Korea

  • Jeong, So Young;Won, Boo Yeon;Cho, Tae Oh
    • 환경생물
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    • 제36권3호
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    • pp.319-328
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    • 2018
  • The morphology, anatomy and reproduction (tetra/bisporic and male) of Lithothamnion japonicum Foslie was studied, using holotype material and materials collected from Korea. Lithothamnion japonicum is characterized based on the presence of encrusting, warty to fruticose thallus, branched or unbranched short and cylindrical protuberances, conical shaped spermatangial conceptacles, branched (dendroid) spermatangial systems formed on floor, walls, and roof of conceptacle chamber, cylindrical shaped spermatangial conceptacle canal, 9-10 cell layered spermatangial conceptacle roof, raised tetra/bisporangial conceptacles without rims, flattened tetra/bisporangial conceptacle pore plate, 16-50 pores on each pore plate, 6-8 rosette cells surrounded by each pore, pore canal lining filaments composed of tetra/bisporangial conceptacle roof, and buried senescent tetra/bisporangial conceptacles completely infilled with relatively large and irregularly arranged calcified sterile cells. In this study, we report a new record of Lithothamnion japonicum from Korean coasts.

Effect of Aluminum Purity on the Pore Formation of Porous Anodic Alumina

  • Kim, Byeol;Lee, Jin Seok
    • Bulletin of the Korean Chemical Society
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    • 제35권2호
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    • pp.349-352
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    • 2014
  • Anodic alumina oxide (AAO), a self-ordered hexagonal array, has various applications in nanofabrication such as the fabrication of nanotemplates and other nanostructures. In order to obtain highly ordered porous alumina membranes, a two-step anodization or prepatterning of aluminum are mainly conducted with straight electric field. Electric field is the main driving force for pore growth during anodization. However, impurities in aluminum can disturb the direction of the electric field. To confirm this, we anodized two different aluminum foil samples with high purity (99.999%) and relatively low purity (99.8%), and compared the differences in the surface morphologies of the respective aluminum oxide membranes produced in different electric fields. Branched pores observed in porous alumina surface which was anodized in low-purity aluminum and the size; dimensions of the pores were found to be usually smaller than those obtained from high-purity aluminum. Moreover, anodization at high voltage proceeds to a significant level of conversion because of the high speed of the directional electric field. Consequently, anodic alumina membrane of a specific morphology, i.e., meshed pore, was produced.

Electrochemical Thinning for Anodic Aluminum Oxide and Anodic Titanium Oxide

  • Lee, In-Hae;Jo, Yun-Kyoung;Kim, Yong-Tae;Tak, Yong-Sug;Choi, Jin-Sub
    • Bulletin of the Korean Chemical Society
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    • 제33권5호
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    • pp.1465-1469
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    • 2012
  • For given electrolytes, different behaviors of anodic aluminum oxide (AAO) and anodic titanium oxide (ATO) during electrochemical thinning are explained by ionic and electronic current modes. Branched structures are unavoidably created in AAO since the switch of ionic to electronic current is slow, whereas the barrier oxide in ATO is thinned without formation of the branched structures. In addition, pore opening can be possible in ATO if chemical etching is performed after the thinning process. The thinning was optimized for complete pore opening in ATO and potential-current behavior is interpreted in terms of ionic current-electronic current switching.

고전계 전기산화에 의한 나노다공성 알루미나 멤브레인의 제조 (Fabrication of Nanoporous Alumina Membrane by High- Field Anodization)

  • 김민우;현상철;하윤철
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 춘계학술대회 논문집
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    • pp.45-45
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    • 2010
  • Nanoporous anodic alumina membranes (NAAM) with high aspect ratio, self-ordered pore array were fabricated by high-field 2-step anodization method. High voltages of 80, 100, 120 and 140 V as well as 40 V for comparison were applied to an aluminum anode with respect to a Pt cathode immersed both in 0.3M oxalic acid solution in order to investigate the self-ordering characteristics of the nanoporous structure. The pore structures, including interpore distance, pore size, pore density, and porosity as well as the ordering characteristic were analyzed using field-enhanced scanning electron microscopy (FE-SEM) and the corresponding Fourier-transformed images. The nanoporous structure could be produced for all the voltage conditions, but the well-ordered through-hole pore without a branched structure seemed to occur only at 40 and 140 V. It turned out that the growth rate under 140 V high-field anodization was about 40 times higher than under conventional 40 V mild anodization, which enabled the fast fabrication of self-ordered, high aspect ratio NAAMs.

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한국산(韓國産) 주요(主要) 산공재(散孔材)의 도관요소(導管要素) 형태변이(形態變異) (Morphological Variation of Vessel Elements in the Korean Diffuse-porous Woods)

  • 박병대;박상진
    • Journal of the Korean Wood Science and Technology
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    • 제15권3호
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    • pp.1-13
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    • 1987
  • This study was carried out to investigate the variations of dimension and exterior shape of vessel elements, morphology of spiral thickening and ray-vessel pit in korean diffuse-porous woods (56 species, 18 families), The tangential pore diameter and vessel element length was increased, whereas the pore number per unit area($1mm^2$) was decreased from pith outwards. The tangential pore diameter was decreased but the length of vessel element was not changed from earlywood to latewood within an annual ring. However, the dimensional variations of vessel element was not able to be recognized among relative positions in peripheral variation. The exterior shape of vessel element could be classified into four types; Type 1 is without tail, Type 2 with ligulate tail, Type 3 with broad taper tail and Type 4 with the very short length between perforations. The distribution frequency of Type 2 and 3 was relatively high in comparision with the others. According to the prominence, distribution position and branched shape, the spiral thickenings could be divided into five types. The spiral thickenings occurred 52% in the species observed. Thus it was doubtful to consider the simple presence of spiral thickening as diagnostic index in diffuse-porous woods. The morphology of ray-vessel pit could be grouped as reticulate, scalariform, oval, linear and coalescent type. Most of species examined showed oval and linear type.

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불화수소산과 스팀처리한 모더나이트상에서 진공가스유의 분해반응 (The Cracking Reaction of Vacuum Gas Oil on Mordenite Modified by HF and Steaming)

  • 이경환;하백현
    • 공업화학
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    • 제7권5호
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    • pp.925-937
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    • 1996
  • 스팀처리된 모더나이트인 $SM_{6.5}$$SM_{6.5}$를 불화수소산처리한 경우($FM_a$) 그리고 $SM_{6.5}$를 불화수소산처리후 다시 스팀처리한 경우($FM_b$)인 세 형태의 변형된 모더나이트를 제조하였다. 이들 시료의 특성을 연구하였으며 고정층 반응기에서 진공가스유의 촉매 분해반응을 실시하였다. 시료의 특성은 XRF와 XPS로 평균과 표면의 원소조성을 구하였고 XRD로 단위격자 상수를 측정하였다. 그리고 질소가스의 흡/탈착에 의해 세공성을 구하였고 피리딘흡착에 의한 IR에 의해 표면의 산성질을 측정하였다. 낮은 실리카/알루미나비를 가진 $SM_{6.5}$는 산량은 많지만 세공용적중 85% 정도가 미세공이었다. $SM_{6.5}$를 불화수소산처리한 경우는 $SM_{6.5}$에 비해 산량은 감소하였지만 세공성은 우수하였다. 이 불화수소산처리된 것을 더욱 많은 중세공의 형성을 위해 다시 스팀처리한 경우는 탈알루미늄에 의해 산량은 급격히 감소하지만 미세공이 중세공으로의 전환에 의해 중세공은 급격히 발달되었다. 이들 촉매상에서 큰 분자인 진공가스유의 분해반응에 의해 얻은 전화율과 가솔린, 등유+경유 그리고 옥탄가가 높은 가지달린 방향족 화합물의 수율은 산량은 크지만 미세공 구조인 $SM_{6.5}$ 보다는 이를 불화수소산처리한 경우가 산량은 감소하였지만 세공성이 우수하여 향상되었으며 $SM_{6.5}$를 불화수소산처리한 것을 다시 스팀처리한 경우가 중세공경의 발달로 더욱 우수하였다. 이로부터 모더나이트상에서 큰 분자인 진공가스유의 분해반응은 반응물질의 세공내로 확산의 한계 때문에 세공구조의 영향이 큼을 알 수 있었다.

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