• 제목/요약/키워드: XRD:DSC

검색결과 360건 처리시간 0.024초

PVP 첨가에 의해 제조된 올메사탄 메독소밀 고체분산체의 방출패턴 연구 (Release Behavior of Olmesartan Medoxomil from Solid Dispersion Prepared by PVP Addition)

  • 오승창;이천중;이현구;박진영;정현기;김영래;임동권;이동원;강길선
    • 폴리머
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    • 제39권1호
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    • pp.33-39
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    • 2015
  • 올메사탄은 BCS 2단계에 해당하는 약물로 물에 잘 녹지 않는 난용성 약물이다. 이런 약물이 낮은 생체이용률과 제형을 설계하는 과정에서 어려움을 주는 원인이 된다. 본 연구에서는 올메사탄을 분무건조법 및 회전용매증 발법을 이용해 고체분산체를 제조하여 제법에 따른 난용성약물의 용출률을 확인하였다. 수용성 고분자로 PVP를 사용하여 약물과 고분자의 비율별로 고체분산체를 제조하였다. SEM을 이용하여 고체분산체의 형태학적인 특성을 분석하였고, 고체분산체의 결정학적 성질은 XRD와 DSC를 통하여 확인하였다. 또한 FTIR을 통해 화학적인 변화를 확인하고, 생체 외 용출거동 실험을 통하여 변화된 용출률을 확인하였다. 제조된 고체분산체는 pH 1.2에서 용출을 확인하였으며, 올메텍과 용출률을 비교하였으며, 분무건조를 통해 약물의 용출률을 향상시킬 수 있다는 것을 확인할 수 있다.

Spark Plasma Sintering으로 제조한 Li2O-2SiO2 유리 소결체의 전기적 특성 (Electrical Property of the Li2O-2SiO2 Glass Sintered by Spark Plasma Sintering)

  • 윤혜원;송철호;양용석;윤수종
    • 한국재료학회지
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    • 제22권2호
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    • pp.61-65
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    • 2012
  • A $Li_2O-2SiO_2$ ($LS_2$) glass was investigated as a lithium-ion conducting oxide glass, which is applicable to a fast ionic conductor even at low temperature due to its high mechanical strength and chemical stability. The $Li_2O-2SiO_2$ glass is likely to be broken into small pieces when quenched; thus, it is difficult to fabricate a specifically sized sample. The production of properly sized glass samples is necessary for device applications. In this study, we applied spark plasma sintering (SPS) to fabricate $LS_2$ glass samples which have a particular size as well as high transparency. The sintered samples, $15mm\phi{\times}2mmT$ in size, ($LS_2$-s) were produced by SPS between $480^{\circ}C$ and $500^{\circ}C$ at 45MPa for 3~5mim, after which the thermal and dielectric properties of the $LS_2$-s samples were compared with those of quenched glass ($LS_2$-q) samples. Thermal behavior, crystalline structure, and electrical conductivity of both samples were analyzed by differential scanning calorimetry (DSC), X-ray diffraction (XRD) and an impedance/gain-phase analyzer, respectively. The results showed that the $LS_2$-s had an amorphous structure, like the $LS_2$-q sample, and that both samples took on the lithium disilicate structure after the heat treatment at $800^{\circ}C$. We observed similar dielectric peaks in both of the samples between room temperature and $700^{\circ}C$. The DC activation energies of the $LS_2$-q and $LS_2$-s samples were $0.48{\pm}0.05eV$ and $0.66{\pm}0.04eV$, while the AC activation energies were $0.48{\pm}0.05eV$ and $0.68{\pm}0.04eV$, respectively.

The Coating Effects of Al2O3 on a Li[Li0.2Mn0.54Co0.13Ni0.13]O2 Surface Modified with (NH4)2SO4

  • Oh, Ji-Woo;Oh, Rye-Gyeong;Hong, Jung-Eui;Yang, Won-Geun;Ryu, Kwang-Sun
    • Bulletin of the Korean Chemical Society
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    • 제35권5호
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    • pp.1516-1522
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    • 2014
  • A series of 20 wt % $(NH_4)_2SO_4$ and 3 wt % $Al_2O_3$ surface treatments were applied to $Li[Li_{0.2}Mn_{0.54}Co_{0.13}Ni_{0.13}]O_2$ substrates. The $Li[Li_{0.2}Mn_{0.54}Co_{0.13}Ni_{0.13}]O_2$ substrates were synthesized using a co-precipitation method. Sample (a) was left pristine and variations of the 20 wt % $(NH_4)_2SO_4$ and 3 wt % $Al_2O_3$ were applied to samples (b), (c) and (d). XRD was used to verify the space group of the samples as R$\bar{3}$m. Additional morphology and particle size data were obtained using SEM imagery. The $Al_2O_3$ coating layers of sample (b) and (d) were confirmed by TEM images and EDS mapping of the SEM images. 2032-type coin cells were fabricated in a glove box in order to investigate their electrochemical properties. The cells were charged and discharged at room temperature ($25^{\circ}C$) between 2.0V and 4.8V during the first cycle. The cells were then charged and discharged between 2.0V and 4.6V in subsequent cycles. Sample (d) exhibited lower irreversible capacity loss (ICL) in the first charge-discharge cycle as compared to sample (c). Sample (d) also had a higher discharge capacity of ~250 mAh/g during the first and second charge-discharge cycles when compared with sample (c). The rate capability of the $Al_2O_3$-coated sample (b) and (d) was lower when compared with sample (a) and (c). Sample (d), coated with $Al_2O_3$ after the surface treatment with $(NH_4)_2SO_4$, showed an improvement in cycle performance as well as an enhancement of discharge capacity. The thermal stability of sample (d) was higher than that of the sample (c) as the result of DSC.

Sol-Gel Synthesis, Crystal Structure, Magnetic and Optical Properties in ZnCo2O3 Oxide

  • Das, Bidhu Bhusan;Barman, Bittesh
    • 대한화학회지
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    • 제63권6호
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    • pp.453-458
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    • 2019
  • Synthesis of ZnCo2O3 oxide is performed by sol-gel method via nitrate-citrate route. Powder X-ray diffraction (XRD) study shows monoclinic unit cell having lattice parameters: a = 5.721(1) Å, b = 8.073(2) Å, c = 5.670(1) Å, β = 93.221(8)°, space group P2/m and Z = 4. Average crystallite sizes determined by Scherrer equation are the range ~14-32 nm, whereas SEM micrographs show nano-micro meter size particles formed in ZnCo2O3. Endothermic peak at ~798 K in the Differential scanning calorimetric (DSC) trace without weight loss could be due to structural transformation and the endothermic peak ~1143 K with weight loss is due to reversible loss of O2 in air atmosphere. Energy Dispersive X-ray (EDX) analysis profile shows the presence of elements Zn, Co and O which indicates the purity of the sample. Magnetic measurements in the range of +12 kOe to -12 kOe at 10 K, 77 K, 120 K and at 300 K by PPMS-II Physical Property Measurement System (PPMS) shows hysteresis loops having very low values of the coercivity and retentivity which indicates the weakly ferromagnetic nature of the oxide. Observed X-band EPR isotropic lineshapes at 300 K and 77 K show positive g-shift at giso ~2.230 and giso ~2.217, respectively which is in agreement with the presence of paramagnetic site Co2+(3d7) in the oxide. DC conductivity value of 2.875 ×10-8 S/cm indicates very weakly semiconducting nature of ZnCo2O3 at 300 K. DRS absorption bands ~357 nm, ~572 nm, ~619 nm and ~654 nm are due to the d-d transitions 4T1g(4F)→2Eg(2G), 4T1g(4F)→4T1g(4P), 4T1g(4F)→4A2g(4F), 4T1g(4F)→4T2g(4F), respectively in octahedral ligand field around Co2+ ions. Direct band gap energy, Eg~ 1.5 eV in the oxide is obtained by extrapolating the linear part of the Tauc plot to the energy axis indicates fairly strong semiconducting nature of ZnCo2O3.

Hydrogenation and Electrochemical Characteristics of Amorphous-nanostructured Mg-based Alloys

  • Gebert, A.;Khorkounov, B.;Schultz, L.
    • 한국분말재료학회지
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    • 제13권5호
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    • pp.327-335
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    • 2006
  • In the development of new hydrogen absorbing materials for a next generation of metal hydride electrodes for rechargeable batteries, metastable Mg-Ni-based compounds find currently special attention. Amor phous-nanocrystalline $Mg_{63}Ni_{30}Y_7$ and $Mg_{50}Ni_{30}Y_{20}$ alloys were produced by mechanical alloying and melt-spinning and characterized by means of XRD, TEM and DSC. On basis of mechanically alloyed Mg-Ni-Y powders, complex hydride electrodes were fabricated and their electrochemical behaviour in 6M KOH (pH=14,8) was investigated. The electrodes made from $Mg_{63}Ni_{30}Y_7$ powders, which were prepared under use of a SPEX shaker mill, with a major fraction of nanocrystalline phase reveal a higher electrochemical activity far hydrogen reduction and a higher maximum discharge capacity (247 mAh/g) than the electrodes from alloy powder with predominantly amorphous microstructure (216 mAh/g) obtained when using a Retsch planetary ball mill at low temperatures. Those discharge capacities are higher that those fur nanocrystalline $Mg_2Ni$ electrodes. However, the cyclic stability of those alloy powder electrodes was low. Therefore, fundamental stability studies were performed on $Mg_{63}Ni_{30}Y_7$ and $Mg_{50}Ni_{30}Y_{20}$ ribbon samples in the as-quenched state and after cathodic hydrogen charging by means of anodic and cathodic polarisation measurements. Gradual oxidation and dissolution of nickel governs the anodic behaviour before a passive state is attained. A stabilizing effect of higher fractions of yttrium in the alloy on the passivation was detected. During the cathodic hydrogen charging process the alloys exhibit a change in the surface state chemistry, i.e. an enrichment of nickel-species, causing preferential oxidation and dissolution during subsequent anodization. The effect of chemical pre-treatments in 1% HF and in $10\;mg/l\;YCl_3/1%\;H_2O_2$ solution on the surface degradation processes was investigated. A HF treatment can improve their anodic passivation behavior by inhibiting a preferential nickel oxidation-dissolution at low polarisation, whereas a $YCl_3/H_2O_2$ treatment has the opposite effect. Both pre-treatment methods lead to an enhancement of cathodically induced surface degradation processes.

오메프라졸의 안정화를 위한 에칠렌디아민 복합체 개발 (Ethylenediamine Complex for Stabilization of Omeprazole)

  • 오세종;김은영;김길수;김윤정;이계주
    • Journal of Pharmaceutical Investigation
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    • 제25권1호
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    • pp.9-17
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    • 1995
  • To stabilize omeprazole(OMP), ethylenediamine(ED) complex of omeprazole(OMPED) was prepared by reaction between OMP and ED in methanol, and the complex formation was confirmed by the instrumental analysis, i.e., IR, DSC, EA, NMR, MS and XRD. The rates of decomposition of OMP and OMPED in aqueous solution and the shelf lives at standard temperature were measured by accelerated stability analysis. The results are summarized as follows; The mole ratio of OMP and ED in OMPED complex is 1:1, the energy of formation within OMPED might be combined between polar imidazole group of OMP with induced a dipole amine group in the readily polarizable ED molecule. At standard temperature the degradation rate constant of OMP in aqueous solution is $2.540{\times}10^{-2}\;hr^{-1}$ and the shelf life is 4.15 hrs, and in the case of OMPED the degradation rate constant is $7.986{\times}10^{-4}\;hr^{-1}$ and the shelf life is 131.96 hrs. So, the OMPED has about 31 times longer shelf life than OMP. The activation energy of OMP and OMPED are 5.23 and 18.55 kcal $mole^{-1}$ respectively. The stability of OMP is dependent chiefly on pH in the solutions and it decomposes readily in acidic medium by hydrogen ion catalized reaction but becomes stable beyond pH 9.0. In case of the ED-complex, OMPED is stable in neutral as well as in dilute acidic solutions even in pH 6, OMPED is very stable to light(UV), that is, the rate constant and shelf life of OMP are $k=1.0188{\times}10^{-2}\;day^{-1}$, $T_{90%}=4.5 \;days$, on the other hand, the those of OMPED are $k=7.138{\times}10^{-4}\;day^{-1}$, $T_{90%}=64.1\;days$, respectively. From the above results, it is thought that new dosage forms could be developed by using the OMPED as a potential OMP complex.

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천잠 견단백질 가수분해 분말의 특성 분석 (Characterization of Hydrolyzed Antheraea yamamai Silk Fibroin Powder)

  • 권해용;이광길;여주홍;우순옥;한상미;손봉희;이희삼;신봉섭
    • 한국잠사곤충학회지
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    • 제48권1호
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    • pp.11-15
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    • 2006
  • 천잠 견단백질을 이용한 비의류용 소재개발을 위한 기초 연구의 일환으로 천잠 가수분해 견단백질 분말을 제조하여 그 구조 및 별 특성을 살펴보고 중금속 함량을 분석하였다. 1. 천잠 고치를 가수분해하여 제조한 분말의 평균분자량은 430 정도였으며 아미노산 조성 분석 결과 일반적인 천잠 견피브로인의 조성과 유사하였다. 2. 천잠 분말의 X-선 회절 분석 결과 $2{\theta}=20.34^{\circ}$ 부근과 $31.5^{\circ}$ 부근에서 강한 회절 피크를 보였으며 원이색분석 결과 220nm의 피크와 215nm의 shoulder를 나타내어 ${\alpha}-helix$${\beta}-sheet$ 구조임을 알 수 있었다. 3. 시차열분석 및 열중량분석 결과 천잠 가수분해 분말은 $250^{\circ}C$ 부근에서 열분해 흡열피크를 보였으며 $270^{\circ}C$ 부근에서 열분해에 의한 최대 중량감소가 나타났다. 4. 천잠 분말에서는 수은, 비소 등 인체 독성이 강한 중금속을 관찰할 수 없었으므로 기능성 소재 개발을 위한 재료로 천잠 가수분해 분말을 활용할 수 있을 것으로 사료된다.

Pb-free PTC에 있어서 $(Bi_{0.5}K_{0.5})TiO_3$ 첨가에 따른 $Ba_{1-x}(Bi_{0.5}K_{0.5})TiO_3$의 전기적특성 (Electrical Properties of $Ba_{1-x}(Bi_{0.5}K_{0.5})TiO_3$ according to $(Bi_{0.5}K_{0.5})TiO_3$ for Pb-free PTC)

  • 이미재;최병현;백종후;김빛남;이우영
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 추계학술대회 논문집 Vol.21
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    • pp.35-36
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    • 2008
  • PTC thermistor are characterized by an increase in the electrical resistance with temperature. The PTC materials of middle Curie point were produced or that of high Curie point (above $200^{\circ}C$), it was determined that compositional modifications of $Pb^{2+}$ for $Ba^{2+}$ produce change sin the Curie point to higher temperature. PTC ceramic materials with the Curie point above $120^{\circ}C$ were prepared by adding $PbTiO_3$, PbO or $Pb_3O_4$ into $BaTiO_3$. Thereby, adding $Pb^{2+}$ into $BaTiO_3$-based PTC material to improve Tc was studied broadly, however, weal know that PbO was poisonous and prone to volatilize, then to pollute the circumstance and hurt to people, so we should dope other innocuous additives instead of lead to increase Tc of composite PTC material. In order to prepare lead-free $BaTiO_3$-based PTC with middle Curie point, the incorporation on $Bi_{1/2}K_{1/2}TiO_3$ into $BaTiO_3$-based ceramics was investigated on samples containing 0, 1, 2, 3, 4, and 50mol% of $Bi_{1/2}K_{1/2}TiO_3$. $Bi_{1/2}K_{1/2}TiO_3$ was compounded as standby material by conventional solid-state reaction technique. The starting materials were $Bi_2O_3$, $K_2CO_3$, $BaCO_3$ and $TiO_2$ powder, and using solid-state reaction method, too. The microstructures of samples were investigated by SEM, DSC, XRD and dielectric properties. Phase composition and lattice parameters were investigated by X-ray diffraction.

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Hydroxypropyl-β-cyclodextrin 포접복합체 제조를 위한 초임계유체 공정 연구 (Study of a Supercritical Fluid Process for the Preparation of Hydroxypropyl-β-cyclodextrin Inclusion Complexes)

  • 이상윤;김정규;김우식;유종훈;임교빈
    • Korean Chemical Engineering Research
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    • 제43권1호
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    • pp.110-117
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    • 2005
  • 초임계유체를 이용한 공정을 통하여 물에 대해 난용성 성질을 지니는 약물인 itraconazole과 $2-hydroxypropyl-{\beta}-cyclodextrin(HP-{\beta}-CD)$의 포접복합체를 제조하였다. 제조된 포접복합체는 SEM, DSC, XRD 등을 이용하여 고체상태의 특성 분석을 수행하여 itraconazole의 결정성적 특성이 $HP-{\beta}-CD$와의 포접체를 형성하며 무정질적으로 변화된 것을 확인할 수 있었다. pH 1.2의 인공위액을 이용하여 수행된 수용액 내에서의 포접복합체의 용해도 및 용출시험 결과 itraconazole 원재료에 비하여 20-200배 정도의 증가된 용해도 결과를 얻을 수 있었다. 초임계유체 공정을 통하여 얻어진 포접복합체의 용해도는 압력증가에 의한 이산화탄소 밀도 증가에 따라 증가하였으며 동일 조건에서 용액 중의 $HP-{\beta}-CD$의 함량이 높아질수록 증가하였다. $35^{\circ}C$, 140 bar의 공정 조건에서 itraconazole과 $HP-{\beta}-CD$의 구성 몰비가 1:3인 용액을 사용하였을 경우 itraconazole 원재료에 비하여 약 200배 이상의 용해도인 $758.6{\mu}g/mL$의 용해도를 지니는 포접복합체를 얻을 수 있었다. 용출시험 결과 투입 약물의 90% 이상이 용출 개시 5-10분 내에 용출되어 대조제로 사용한 시판제제 및 원재료에 비하여 매우 빠른 초기 방출률과 우수한 용출 특성을 확인할 수 있었다. 본 연구를 통하여 기존의 시간소비성 및 다단계의 포접체 제조공정을 개선할 수 있는 한 방법으로 초임계유체 공정이 적용될 가능성을 확인할 수 있었다.

Effect of Solubilizing and Microemulsifying Excipients in Polyethylene Glycol 6000 Solid Dispersion on Enhanced Dissolution and Bioavailability of Ketoconazole

  • Heo, Min-Young;Piao, Zong-Zhu;Kim, Tae-Wan;Cao, Qing-Ri;Kim, Ae-Ra;Lee, Beom-Jin
    • Archives of Pharmacal Research
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    • 제28권5호
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    • pp.604-611
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    • 2005
  • Polyethylene glycol (PEG) 6000-based solid dispersions (SDs), by incorporating various pharmaceutical excipients or microemulsion systems, were prepared using a fusion method, t o compare the dissolution rates and bioavailabilities in rats. The amorphous structure of the drug in SDs was also characterized by powder X-ray diffractometry (XRD) and differential scanning calorimetry (DSC). The ketoconazole (KT), as an antifungal agent, was selected as a model drug. The dissolution rate of KT increased when solubilizing excipients were incorporated into the PEG-based SDs. When hydrophilic and lipophilic excipients were combined and incorporated into PEG-based SDs, a remarkable enhancement of the dissolution rate was observed. The PEG-based SDs, incorporating a self microemulsifying drug delivery system (SMEDDS) or microemulsion (ME), were also useful at improving the dissolution rate by forming a microemulsion or dispersible particles within the aqueous medium. However, due to the limited solubilization capacity, these PEG-based SDs showed dissolution rates, below 50% in this study, under sink conditions. The PEG-based SD, with no pharmaceutical excipients incorporated, increased the maximum plasma concentration (C$_{max}$) and area under the plasma concentration curve (AUC$_{0-6h}$) two-fold compared to the drug only. The bioavailability was more pronounced in the cases of solubilizing and microemulsifying PEG-based SDs. The thermograms of the PEG-based SDs showed the characteristic peak of the carrier matrix around 60$^{\circ}C$, without a drug peak, indicating that the drug had changed into an amorphous structure. The diffraction pattern of the pure drug showed the drug to be highly crystalline in nature, as indicated by numerous distinctive peaks. The lack of the numerous distinctive peaks of the drug in the PEG-based SDs demonstrated that a high concentration of the drug molecules was dissolved in the solid-state carrier matrix of the amorphous structure. The utilization of oils, fatty acid and surfactant, or their mixtures, in PEG-based SD could be a useful tool to enhance the dissolution and bioavailability of poorly water-soluble drugs by forming solubilizing and microemulsifying systems when exposed to gastrointestinal fluid.