• Title/Summary/Keyword: silica-encapsulation

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Paraffin-Based Phase Change Materials for Solar Reflective Paints Applications (파라핀 기반 상변화 물질을 이용한 태양광 반사 페인트 개발에 관한 연구)

  • Adnin Raihana Jannat;Soumen Mandal;Lee, Han Seung
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.11a
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    • pp.67-68
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    • 2023
  • This paper reports on the synthesis of paraffin-based phase change materials (PCMs) designed for use in solar reflective paint (SRP) as a thermal energy storage (TES) medium. These PCMs are prepared using the sol-gel process and are encapsulated in silica. The focus of this research is to evaluate the suitability of these synthesized PCMs for efficient thermal energy storage within SRP applications. The obtained PCMs have nanometric dimensions, which make them well-suited for integration into paint formulations. The study also includes a thorough analysis of the chemical, thermal, and structural stabilities of these materials, confirming their applicability in solar reflective paint.

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Production of Methanol from Methane by Encapsulated Methylosinus sporium

  • Patel, Sanjay K.S.;Jeong, Jae-Hoon;Mehariya, Sanjeet;Otari, Sachin V.;Madan, Bharat;Haw, Jung Rim;Lee, Jung-Kul;Zhang, Liaoyuan;Kim, In-Won
    • Journal of Microbiology and Biotechnology
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    • v.26 no.12
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    • pp.2098-2105
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    • 2016
  • Massive reserves of methane ($CH_4$) remain unexplored as a feedstock for the production of liquid fuels and chemicals, mainly because of the lack of economically suitable and sustainable strategies for selective oxidation of $CH_4$ to methanol. The present study demonstrates the bioconversion of $CH_4$ to methanol mediated by Type I methanotrophs, such as Methylomicrobium album and Methylomicrobium alcaliphilum. Furthermore, immobilization of a Type II methanotroph, Methylosinus sporium, was carried out using different encapsulation methods, employing sodium-alginate (Na-alginate) and silica gel. The encapsulated cells demonstrated higher stability for methanol production. The optimal pH, temperature, and agitation rate were determined to be pH 7.0, $30^{\circ}C$, and 175 rpm, respectively, using inoculum (1.5 mg of dry cell mass/ml) and 20% of $CH_4$ as a feed. Under these conditions, maximum methanol production (3.43 and 3.73 mM) by the encapsulated cells was recorded. Even after six cycles of reuse, the Na-alginate and silica gel encapsulated cells retained 61.8% and 51.6% of their initial efficiency for methanol production, respectively, in comparison with the efficiency of 11.5% observed in the case of free cells. These results suggest that encapsulation of methanotrophs is a promising approach to improve the stability of methanol production.

Simple Fabrication of Green Emission and Water-Resistant CsPbBr3 Encapsulation Using Commercial Glass Frits (상업용 유리프릿의 소결 공정을 이용한 내수성을 갖는 CsPbBr3/Glass 세라믹 복합체의 제작)

  • Mun, Na-eun;Kim, Sunghoon
    • Korean Journal of Materials Research
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    • v.31 no.1
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    • pp.54-59
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    • 2021
  • In this work, narrow-band green-emitting CsPbBr3 particles are embedded in commercialized glass composites by a facile dry process. By optimizing the method through sintering in glass frit (GF) composites including CsBr and PbBr2, used as precursors, the encapsulation of CsPbBr3 particles made them waterproof with green fluorescence. To improve the fluorescent properties by reducing aggregation of CsPbBr3, fumed silica (FS) is additionally used to help particles avoid bulking up in the glass matrix. The CsPbBr3 perovskite/glass composites are characterized using scanning electron microscopy (SEM) images and energy-dispersive X-ray spectroscopy (EDS) maps, which support the existence of CsPbBr3 particles in the glass matrix. The photoluminescence (PL) properties demonstrate that the emission spectrum peak, full width at half maximum (FWHM), and photoluminescence quantum yield (PLQY) values are 519 nm, 17 nm, and 17.7 %. We also confirm the water-resistant properties. To enhance water/moisture stability, the composite sample is put directly into water, with its PLQY monitored periodically under UV light.

Biocompatible Formation of Silica/Titania Nanocomposite Shells on Living Chlorella Cells

  • Go, Eun-Hye;Yun, Yeon-Jeong;Jin, Seung-Uk;Hwang, Ji-Min;Lee, Gyu-Nam;Yang, Seong-Ho;Choe, In-Seong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.553-553
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    • 2012
  • The artificial shells of hard inorganic nanocomposites on individual cells would protect the cells physically and chemically, and control cell division. These emerging properties could be combined with cell-surface functionalizations for applications to cell-based sensors and assays as well as for fundamental studies on single-cell biology. In this work, individual Chlorella cells were encapsulated within a silica/titania nanocomposite shell in a biocompatible fashion that utilized a designed peptide, RKKRKKRKKRKKDDDDDDDD, as a catalytic template for formation of both $SiO_2$ and $TiO_2$ on the cell surface. The cell viability was maintained, and the division of the encapsulated Chlorella cells was controlled. The cell viability was enhanced compared with the $TiO_2$-shell formation. In addition, the incorporation of $TiO_2$ to the shell made it possible to anchor the ligands of interest to the shell via catechol chemistry. All in all, the combination of biological $SiO_2$ and abiolgical $TiO_2$ for the shell formation gave more tunability of the artificial shells compared with the $SiO_2$ or $TiO_2$ shells only.

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Synthesis of Lauric Acid Based Phase Change Materials Via Sol-gel Route (졸겔 법을 통한 라우르산 기반의 상변화 물질의 합성)

  • Ishak, Shafiq;Lee, Han Seung
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2020.11a
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    • pp.42-43
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    • 2020
  • Lauric acid (LA) which is also known as dodecanoic acid has been selected as the phase change material (PCM) owing to eco-friendly in nature. A systematic study has been conducted for encapsulation of LA (core) with silicon dioxide (SiO2) as shell material. Different core-shell ratio was chosen to microencapsulate the LA with 10 ml of tetraethyl orthosilicate (TEOS) as the precursor solution for the formation of SiO2. The synthesis of microencapsulated LA was carried out at 2.5 pH of precursor solution. The synthesized microencapsulated LA are characterized by Fourier transform infrared spectroscope (FT-IR) and X-Ray Diffraction (XRD) which confirmed the presence of SiO2 shell on the surface of LA.

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Synthesis and Characteristics of Different Ratio of Stearic Acid with SiO2 Shell Through Sol-Gel Process (Sol-gel 공정을 통한 SiO2 쉘과의 상이한 스테아산 비율의 합성 및 특성)

  • Ishak, Shafiq;Lee, Han-Seung
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2020.06a
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    • pp.66-67
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    • 2020
  • The synthesis of stearic acid composite phase change material (PCM) was investigated and the samples produced were characterized for use in latent heat storage, using a simple chemical sol-gel process. The PCM was encapsulated to tetraethyl orthosilicate by various preparation ratios of stearic acid (5, 10, 15, 20, 30 and 50%). Fourier transformation infrared spectroscope (FT-IR) and X-Ray diffraction (XRD) were performed to determine the chemical structure and crystalloid phase of the microencapsulated PCM. SATEOS1 (5%) shows the best proportion for the PCM. With the presence of stearic acid as core materials and SiO2 as the supporting materials, it does not show any chemical reaction between both of them. SATEOS1 shows promising potential for thermal energy storage as it shows a better encapsulation efficiency and good thermal stability.

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Studies on Molding Conditions and Physical Properties of EMC(Epoxy Molding Compounds) fiiled with Crystalline SiO2 for Microelectronic Encapsulation (결정성 SiO2 충진 EMC(Epoxy Molding Compounds)봉지재의 성형조건 및 물성에 관한 연구)

  • Kim, Wonho;Bae, Jong-Woo;Kang, Ho-young;Lee, Moo-Jung;Choi, II-Dong
    • Applied Chemistry for Engineering
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    • v.8 no.3
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    • pp.533-542
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    • 1997
  • Due to the trends of faster and denser circuit design, dielectric properties of packaging materials for semiconductor will give a greater influence on performance and reliability. Also as chip becomes more densified, thermal dissipation becomes a critical reliability issue. Consequently, four important properties for manufacturing semiconductor packaging materials are low values of dielectric constant, high values of thermal conductivity, relatively low values of thermal expansion coefficient and low cost. Thus, in this study, to achieve increased performance of EMC, crystalline silica was selected as the filler for epoxy matrix. As a result, when the volume percent of crystal silica was 60~70%, good properties as packaging materials for semiconductor were achieved. In addition, overall molding condition of EMC in this experiment was established.

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Nano-Encapsulation of Plant Growth-Promoting Rhizobacteria and Their Metabolites Using Alginate-Silica Nanoparticles and Carbon Nanotube Improves UCB1 Pistachio Micropropagation

  • Pour, Mojde Moradi;Saberi-Riseh, Roohallah;Mohammadinejad, Reza;Hosseini, Ahmad
    • Journal of Microbiology and Biotechnology
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    • v.29 no.7
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    • pp.1096-1103
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    • 2019
  • UCB-1 is the commercial rootstock of pistachio. Reproduction of this rootstock by tissue culture is limited by low levels of proliferation rate. Therefore, any compound that improves the proliferation rate and the quality of the shoots can be used in the process of commercial reproduction of this rootstock. Use of plant growth-promoting bacteria is one of the best ideas. Given the beneficial effects of nanoparticles in enhancement of the growth in plant tissue cultures, the aim of the present study was to investigate the effects of nanoencapsulation of plant growth-promoting rhizobacteria (using silica nanoparticles and carbon nanotubes) and their metabolites in improving UCB1 pistachio micropropagation. The experiment was conducted in a completely randomized design with three replications. Before planting, treatments on the DKW medium were added. The results showed that the use of Pseudomonas fluorescens VUPF5 and Bacillus subtilis VRU1 nanocapsules significantly enhanced the root length and proliferation. The nanoformulation of the VUPF5 metabolite led to the highest root length (6.26 cm) and the largest shoot (3.34 cm). Inoculation of explants with the formulation of the metabolites (both bacterial strains) significantly elevated the average shoot length and the fresh weight of plant compared to the control. The explants were dried completely using both bacterial strains directly and with capsule coating after the three days.

Vitabrid-C를 함유한 피부 미백용 트윈케익 파우더 개발

  • 이선영;양재훈;한양수;이승화;홍성호;최진호
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.29 no.1
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    • pp.169-184
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    • 2003
  • 비타민 C(L-ascorbic acid)는 강한 항산화성, 피부에 대한 높은 안전성으로 인해 피부의 노화방지, 미백, 주름 개선 등의 기능성 화장품 원료로써 많은 관심이 있는 물질이지만, 화학적으로 매우 불안정하여 쉽게 산화, 분해되므로 화장품 제형으로 포함시키는데 곤란한 문제가 있다. 본 연구에서는 비타민 C 의 안정성에 대한 단점을 보완하기 위하여 생체 및 피부 친화성이 우수한 무기물을 사용하여 비타민 C 를 캡슐화(encapsulation)한 분말상의 유-무기 복합물질 Vitabrid-C 를 합성하고, 이를 함유하는 피부 미백용 트윈케익 파우더를 개발하였다. 우선 Vitabrid-C 는 수용액상에서 비타민 C 를 수화된 산화아연(ZnO)으로 1 차 캡슐화하여 나노입자를 형성시키고, 그 표면을 실리카(silica)나노 입자로 한번 더 코팅하여 표면의 껍질이 다공특성을 갖는 분말을 제조함으로써 완성하였다. 이렇게 제조된 Vitabrid-C는 순수 비타민 C 에 비해 우수한 안정성을 보였으며, 캡슐 내 비타민 C 가 서서히 방출되는 서방특성을 발휘하였다. 또한 Vitabrid-C는 입자의 크기가 미세하고 균일하여 트윈케익 처방에 용이하게 적용할 수 있었다. Vitabrid-C와 순수 비타민 C의 생화학적 동등성에 대한 평가는 tyrosinase 억제능(L-DOPA oxidase 억제) 및 DPPH항산화 실험을 통하여 비교하였다. 트윈 케익 처방에 적용된 Vitabrid-C 에서 비타민 C 의 피부 투과경향을 Franz diffusion cell 법을 이용하여 확인하였다 또한 Vitabrid-C가 포함된 트윈케익을 건강한 피부를 가진 25 세 이상되는 여성의 전박에 색소 침착을 유도한 후 피부색 개선 효과 평가를 통해 임상적 효능을 평가하였다.