• Title/Summary/Keyword: FTIR(Fourier Transform Infrared)

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Electrical and Chemical Properties of Mica/Epoxy Composite Materials as Affected by Short-Time Aging

  • Kim, Hee-Dong
    • KIEE International Transactions on Electrophysics and Applications
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    • v.3C no.2
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    • pp.59-65
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    • 2003
  • Electrical properties such as permittivity and tan$\delta$ of unaged (control) and aged (72 h at 18$0^{\circ}C$) mica/epoxy composites of 130 ${\mu}{\textrm}{m}$ thickness were measured and their surface conditions were characterized using scanning electron microscopy (SEM), Fourier transform infrared (FTIR), electron spectroscopy for chemical analysis (ESCA), differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA). Both permittivity and tan6 of control specimens were higher than those of short-time aged specimens. FTIR results show a new peak at 1710 $cm^{-1}$ / for short-time aged specimens, originating from carbonyl group formed by the oxidation reaction during the aging process. ESCA results show that the binding energy at 532.9 eV representing the singlet state of oxygen ( $O_{1s}$) decreases by 13.7%, whereas that at 534.6 eV increases by 13.7%. Glass transition temperatures of control and short-time aged specimens are observed to be 95.4$^{\circ}C$ and 113.4$^{\circ}C$, which increase with the increase of aging time. TGA results indicate that the control specimens contain a smaller amount of volatile components than the short-time aged specimens.s.

Effect of hydrogen on the photoluminescence of Silicon nanocrystalline thin films (실리콘 나노결정 박막에서 수소 패시베이션 효과)

  • Jeon, Kyung-Ah;Kim, Jong-Hoon;Kim, Gun-Hee;Lee, Sang-Yeol
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.07b
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    • pp.1033-1036
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    • 2004
  • Si nanocrystallites thin films on p-type (100) Si substrate have been fabricated by pulsed laser deposition using a Nd:YAG laser. After deposition, samples were annealed at the temperatures of 400 to $800^{\circ}C$. Hydrogen passivation was then performed in the forming gas (95% $N_2$ + 5% $H_2$) for 1 hr. Strong violet-indigo photoluminescence has been observed at room temperature from nitrogen ambient-annealed Si nanocrystallites. The variation of photoluminescence (PL) Properties of Si nanocrystallites thin films has been investigated depending on annealing temperatures with hydrogen passivation. From the results of PL, Fourier transform infrared (FTIR), and high-resolution transmission electron microscopy (HRTEM) measurements, it is observed that the origin of violet-indigo PL from the nanocrystalline silicon in the silicon oxide film is related to the quantum size effect of Si nanocrystallites and oxygen vacancies in the SiOx(x : 1.6-1.8) matrix affects the emission intensity.

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Quality Comparison of Activated Carbon Produced From Oil Palm Fronds by Chemical Activation Using Sodium Carbonate versus Sodium Chloride

  • MAULINA, Seri;HANDIKA, Gewa;Irvan, Irvan;ISWANTO, Apri Heri
    • Journal of the Korean Wood Science and Technology
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    • v.48 no.4
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    • pp.503-512
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    • 2020
  • Using Na2CO3 versus NaCl as chemical activator, we compared the quality of activated carbon produced from oil palm fronds as raw material. These activators were selected for comparison because both are readily available and are environmentally friendly. In the manufacturing, we used Indonesian National Standard (SNI 06-3730-1995) parameters. For the quality comparison, we determined activated-carbon yield, moisture, ash, volatiles, and fixed-carbon contents; and adsorption capacity of iodine. The best characteristics, assessed by morphological surface analysis and Fourier transform infrared (FTIR) spectral analysis, were observed in the carbon activated by Na2CO3 at an activator concentration of 10% and carbonization temperature of 400 ℃. The results were as follows: activated-carbon yield, 84%; water content, 8.80%; ash content, 2.20%; volatiles content, 14.80%; fixed-carbon content, 68.60%; and adsorption capacity of iodine, 888.51 mg/g. Identification using the FTIR spectrophotometer showed the presence of the functional groups O-H, C=O, C=C, C-C, and C-H in the Na2CO3-activated carbon.

다이아몬드 기판을 이용한 온도 변화에 따른 질화 붕소 박막의 증착 거동

  • Lee, Eun-Suk;Park, Jong-Geuk;Lee, Uk-Seong;Baek, Yeong-Jun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.44-44
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    • 2011
  • 현존하는 초경도 박막물질 중 입방정 질화붕소(cBN)은 철계 금속과의 반응안정성 및 낮은 온도에서의 합성가능성 등 많은 장점을 가지고 있다. 그러나 필수로 수반되는 이온충돌 효과로 인해 박막 내 높은 잔류응력으로 인한 박리 현상으로 응용이 어려운 실정에 있다. 현재까지 이를 개선하기 위해 수소를 첨가하여 박막의 잔류응력을 줄이는 연구, B4C 타겟을 이용하여 B-C-N 의 gradient layer를 설계하여 점진적으로 잔류응력을 감소시키는 연구 등 많은 연구들이 진행되고 있다. 본 연구에서는 MOCVD로 만들어진 NCD(Nano Crystalline Diamond) buffer layer 위에 RF-UBM(unbalanced magnetron) PVD를 이용하여 BN을 증착시켰다. hBN 타겟을 이용하여 2mTorr에서 400W 의 RF 파워를 사용하여 기판에 RF bias를 인가해 실험하였다. cBN 박막과 기판의 lattice mismatch 를 줄이기 위해서 본 연구소에서 제공되는 NCD 기판을 사용하였으며, 다이아몬드 기판과 cBN 박막의 1:1 에피성장을 이루기 위해 상온에서부터 800도까지 온도 변화를 주어 cBN을 증착시켰다. FTIR(Fourier transform infrared spectroscopy)로 $sp^2$구조인 hBN과 $sp^3$구조인 cBN의 성장유무를 확인하였으며, FTIR peak intensity 차이로 박막내 cBN의 함량을 계산하였고, Scratch test로 박막과 기판사이의 밀착력을 상대적으로 비교하였으며, 격자의 에픽성장을 확인하기 위해 FIB 의 작업을 거쳐 HRTEM 으로 각 위치별로 SAD pattern를 이용하여 성장거동을 확인하였다.

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Seeded Crystal Growth onto Enamel Mineral and Synthetic Hydroxyapatite in Dilute Supersaturated Solutions Containing Low Concentrations of Fluoride (불소농도가 Seeded Enamel Mineral과 합성 Hyproxyapatite에 Crystal 성장에 미치는 영향)

  • Lee, Chan-Young;Aoba, Takaaki
    • Restorative Dentistry and Endodontics
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    • v.20 no.2
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    • pp.818-826
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    • 1995
  • The present study was undertaken to investigate the crystal growth onto enamel mineral and synthetic hydroxyapatite seeds in media resembling the enamel fluid composition. Effects of fluoride at low concentrations on the precipitation were also examined in a benchtop crystal growth model adopting a miniaturized reaction column. X-ray diffraction and Fourier transform infrared spectroscopy(FTIR), as well as chemical analyses, were employed for characterization of both seed materials before and after experimentation. Remarkable findings were that (1) both biological and synthetic seeds at the same total surface areas yielded rather similar precipitation rates at all levels of fluoride concentration in solution and (2) the precipitation rate was accelerated in a manner depending on fluoride concentrations in media. FTIR differential analysis disclosed that the precipitating phase was characterized as poorly crystallized apatite, which incorporated subtle carbonate. Most of the fluoride ions in soution were readily incorporated into crystals. The overall results support the view that the seeded crystal growth model is of value to gain insight into the mechanism of enamel crystal growth under fluoride regimens.

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Property Enhancement of SiR-EPDM Blend Using Electron Beam Irradiation

  • Deepalaxmi, R.;Rajini, V.
    • Journal of Electrical Engineering and Technology
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    • v.9 no.3
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    • pp.984-990
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    • 2014
  • Polymers are the most commonly used di-electrics because of their reliability, availability, ease of fabrication and cost. The commercial and industrial demand for advanced polymeric materials which are capable of being used in harsh environment is need of the hour. The study of the effect of electron beam irradiation on polymeric materials is an area of rapidly increasing interest. This paper discusses the resultant beneficial effects of electron beam irradiation on the SiR-EPDM blend having 50:50 composition. The changes in mechanical and electrical properties of SiR-EPDM blend which are exposed to three different doses of electron beam radiation namely 5 Mrad, 15 Mrad and 25 Mrad are presented. The irradiated blends are analyzed for their electro-mechanical and physico chemical properties. The electrical changes induced by irradiation are investigated by arc resistance, surface resistivity and volume resistivity measurements as per ASTM standards. The mechanical changes are observed by the measurement of tensile strength and elongation at break. Physico chemical investigation has been done using the FTIR, in order to investigate the irradiation induced chemical changes.

The structure and optical properties of n-type and p-type porous silicon (n-type과 p-type 다공성 실리콘의 구조와 광학적 특성에 관한 연구)

  • 박현아;오재희;박동화;안화승;태원필;이종무
    • Journal of the Korean Vacuum Society
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    • v.12 no.4
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    • pp.257-262
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    • 2003
  • The structure and optical properties of n-type and p-type porous silicon (PS) prepared by the chemical etching in the light and the dark, respectively, are reported in this paper. Microstructural features of the samples are mainly investigated by SEM, AFM XRDGI techniques. Also, their optical properties are investigated by photoluminescence (PL) and Fourier transform infrared absorption measurements. In the n-type PS, the room temperature photoluminescence is observed in a visible range from 500 nm to 650 nm in contrast to that in the blue region (400∼650 nm) in p-type PS. Further, semi-transparent Cu films in thickness range of ∼40 nm are deposited by rf-magnetron sputtering on PS to investigate the I-V characteristics of the samples.

DEPOSITION OF c-BN FILMS BY PULSED DC BIASING IN MAGNETICALLY ENHANCED ARE METHOD

  • Lee, S.H.;Byon, E.S.;Lee, K.H.;J., Tian;Yoon, J.H.;Sung, C.;Lee, S.R.
    • Journal of the Korean institute of surface engineering
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    • v.32 no.3
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    • pp.467-471
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    • 1999
  • BN films were grown on silicon (l00) substrate by magnetically enhanced activated reactive evaporation (ME-ARE) with pulsed DC power instead of r.f. for substrate biasing. The deposited films were analyzed using Fourier transform infrared spectroscopy (FTIR) and transmission electron microscopy (TEM). FTIR results show that the intensity of absorption band of $sp^2$ bond of BN decreased and that of $sp^3$ bond of c-BN increased with increasing pulsed DC bias voltage applied to substrate. The initially grown layer at the interface was observed by TEM and considered to be of$ sp^2$-bonded BN. The cross-sectional and planar TEM micrographs show that the upper layer on the initial layer was the single phase c-BN. It is concluded that cubic boron nitride films could be synthesized by ME-ARE process with pulsed DC biasing.

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Effect of Ammonium Persulfate Concentration on Characteristics of Cellulose Nanocrystals from Oil Palm Frond

  • ZAINI, Lukmanul Hakim;FEBRIANTO, Fauzi;WISTARA, I Nyoman Jaya;N, Marwanto;MAULANA, Muhammad Iqbal;LEE, Seung Hwan;KIM, Nam Hun
    • Journal of the Korean Wood Science and Technology
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    • v.47 no.5
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    • pp.597-606
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    • 2019
  • Cellulose nanocrystals (CNCs) were successfully isolated from oil palm fronds (OPFs) using different concentrations of ammonium persulfate (APS), and their characteristics were analyzed by Fourier transform infrared spectroscopy (FTIR), transmission electron microscopy (TEM), X-ray diffraction (XRD) analysis, and thermogravimetric analysis (TGA). APS oxidation effectively isolated CNCs with rod-like morphology in nanometer scale. The dimensions of the CNCs decreased with increasing APS concentration. FTIR and XRD analyses revealed that all the CNCs showed crystals in the form of cellulose I without crystal transformation occurring during APS treatment. The relative crystallinity of the CNCs increased with increasing APS concentration, whereas their thermal stability decreased. An APS concentration of 2 M was found to be optimal for isolating the CNCs.

Antimicrobial Evaluation and Characterization of Copper Nanoparticles Synthesized by the Simple Chemical Method

  • Wazir, Arshad Hussain;Khan, Qudratullah;Ahmad, Nisar;Ullah, Faizan;Quereshi, Imdadullah;Ali, Hazrat
    • Korean Journal of Materials Research
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    • v.32 no.2
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    • pp.80-84
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    • 2022
  • Copper nanoparticles (CuNPs) are considered of great importance due to their high catalytic and antimicrobial activities. This study focuses on the preparation and characterization of CuNPs, and on their antibacterial/antifungal activities. A copper salt (copper sulfate pentahydrate) as precursor, starch as stabilizing agent, and ascorbic acid as reducing agent were used to fabricate CuNPs. The resulting product was characterized via different techniques such as X-ray diffractrometry (XRD), Fourier Transform Infrared (FTIR) spectroscopy, and Scanning electron microscopy (SEM) to confirm its characteristic properties. Employing the Scherrer formula, the mean crystallite sizes of copper (Cu) and cuprous oxide (Cu2O) nanocrystals were found to be 29.21 and 25.33 nm, respectively, as measured from the main X-ray diffraction peaks. The functional groups present in the resulting CuNPs were confirmed by FTIR. In addition, the engineered CuNPs showed antibacterial and antifungal activity against tested pathogenic bacterial and fungal strains.