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      • $[Ni(C_2N_2H_8)_3]\cdotCr_2O_7$의 결정구조

        김세환,김승빈,남궁해,Kim, Se-Hwan,Kim, Seung-Bin,Nam, Gung-Hae 한국결정학회 1996 韓國結晶學會誌 Vol.7 No.1

        Tris(ethylenediamine)nickel(II)Dichromate [Ni(C2N2H8)3]·Cr2O7착화합물 및 결정의 구조를 X-선 회절법으로 연구하였다. 이 결정은 단사정계이고, 공간군은 P21/b(군번호=14)이다. 단위세포길이는 a=8.268(2), b=13.865(2), c=14.921(2)Å, γ=102.04(2)°, V=1672.9(5)Å3, Z=4, Dc=1.806 gcm-3, μ=24.05 cm-0.1이다. 회절반점들의 세기는 흑연 단색화 장치가 있는 자동4축 회절기로 얻었으며 Mo-Kα X-선(λ=0.7107Å)을 사용하였다. 구조분석은 중원자법으로 풀었으며, 최소자승법으로 정밀화 하였을 때, 최종 신뢰도 값들은 2248개의 회절반점에 대하여 R=0.045, Rw=0.051, Rall=0.059 및 S=2.171이었다. 니켈 착이온 가운데 하나의 에칠렌디아민 고리중에서 두 개의 탄소원자가 무질서하게 상호교차하는 네 개의 원자로 나타났다. 무질서한 에칠렌디아민의 두가지 고리구조들의 α- 과 β- 각들이나 수소결합들을 고려하였을 때 Ni-착이온의 입체구조는 Λδδδ-와 Λδδλ- 구조들의 무질서배열로 보아진다. The crystal structure Tris(ethylenediamine)nickel(II)Dichromate has been determined by X-ray crystallography. Crystal data: a=8.268(2), b=13.865(2), c=14.921(2)Å, γ=102.04(2)°, V=1672.9(5)Å3, Z=4, Monocline, P21/b (space group No.=14), Dcalc=1.806 gcm-3, μ=24.05 cm-0.1. The intensity data were collected with Mo-Kα radiation(λ=0.7107Å) on an automatic four-circle diffractometer with a graphite monochromator. The structure was solved by Patterson method and refined by full matrix least-square methods using unit weights. The final R and S values were R=0.045, Rw=0.051, Rall=0.059 and S=2.171for 2248 observed reflections. The two carbon atoms of a ring of Ni(en)-ion were split into crossed four atoms. In consideration of α- and β-angles of two rings of a disordered ethylenediamine of Nien3-ion and the hydrogen bonds between Ni(en)3-cation and Cr2O7-anion, the configuration of Ni(en)3-ion is assumed to be disordered with Λδδδ and Λδδλ.

      • SCOPUSKCI등재

        Bis(N-Methylphenazinium) Bis(Oxalato)Palladate(Ⅱ)의 결정구조

        김세환,남궁해,이현미,Kim, Se Hwan,NamGung, Hae,Lee, Hyeon Mi 대한화학회 1994 대한화학회지 Vol.38 No.11

        (N-methylphenazinium) bis(oxalato)palladate(II)$((C_{13}H_{11}N_2)_2[Pd(C_2O_4)_2])$의 착이온 및 결정의 구조는 X-선 회절법으로 연구하였다. 이 결정은 사방정계이고 공간군은 P1 (군번호 = 2)이다. 단위세포 길이는 a = 7.616(8), b = 9.842(3), c = $20.335(7)\AA$, $\alpha$ = 103.53(3), $\beta$ = 90.00(5), $\gamma$ = $112.38(5)^{\circ}이며$, $V = 1363(2){\AA}^3,\;F_w = 672.93,\;D_c = 1.639\;gcm^{-3},\;F(000) = 680.0,\;{\mu} = 7.3\;cm^{-1},\;Z = 2$이다. 회절반점들의 세기는 흑연 단색화 장치가 있는 자동 4축 회절기로 얻었으며 $Mo-K\alpha$ X - 선(${\lambda}$= 0.7107 $\AA)$을 사용하였다. 구조분석은 중금속법으로 풀었으며, 최소자승법으로 정밀화하였고, 최종 신뢰도 값들은 3120개의 회절반점에 대하여 $R = 0.069,\;R_w = 0.050,\;R_{all} = 0.069$ 및 S = 5.45였다. 착이온들은 근본적인 평면구조로써, 이들의 충진구조는 착음이온들을 두개의 양이온들이 거의 평행하게 둘러싸고 있는 삼중체들을 형성하고 있다. 양이온과 음이온들의 이면각들이 각각 6.3(6)과 $57.06(6)^{\circ}$인 삼중체들이 b축을 따라서 배열되어 있으나, 삼중체면의 배향은 두 가지 착음이온의 이면각이 $59.08(9)^{\circ}$을 이루는 방향이다. 삼중체내의 면간거리는 각각 3.328와 3.463 $\AA$이었다. The crystal structure of bis(N-methylphenazinium) bis(oxalato)palladate(II) has been determined by X-ray crystallography. Crystal data: ((C_{13}H_{11}N_2)_2[Pd(C_2O_4)_2]) $M_w$ = 672.93, Triclinic, Space Group P1 (No = 2), a = 7.616(8), b = 9.842(3), c = $20.335(7)\AA$, $\alpha$ = 103.53(3), $\beta$ = 90.00(5), $\gamma$ = $112.38(5)^{\circ}$, Z = 2, $V = 1363(2){\AA}^3\;D_c = 1.639\;gcm^{-3},\;{\mu} = 7.3\;cm^{-1},\;F(000) = 680.0$. The intensity data were collected with $Mo-K\alpha$ radiation (${\lambda}$= 0.7107\;\AA)$ on an automatic four-circle diffractometer with a graphite monochromater. The structure was solved by Patterson method and refined by full matrix least-square methods using Killean & Lawrence weights. The final R and S values were $R = 0.069,\;R_w = 0.050,\;R_{all} = 0.069$ and S = 5.45 for 3120 observed reflections. Both cation and anion complexes are essentially planar and have dihedral angles of 6.3(6) and $57.06(6)^{\circ}$ between their planes. The planar complex anions are sandwiched between slightly bent cations. The interplanar separations of two triads are 3.328 and 3.463 $\AA$, respectively. The triads are stacked along b-axis, but their orientations are different based on dihedral angle $59.08(9)^{\circ}$ of two complex anions.

      • 청각장애아동과 건청아동의 성도면적 추정 성능

        김세환,김남,권오욱,Kim Se-Hwan,Kim Nam,Kwon Oh-Wook 대한음성학회 2005 말소리 Vol.56 No.-

        This paper analyzes the vocal tract area estimation algorithm used as a part of a speech analysis program to help deaf children correct their pronunciations by comparing their vocal tract shape with normal children's. Assuming that a vocal tract is a concatenation of cylinder tubes with a different cross section, we compute the relative vocal tract area of each tube using the reflection coefficients obtained from linear predictive coding. Then, we obtain the absolute vocal tract area by computing the height of lip opening with a formula modified for children's speech. Using the speech data for five Korean vowels (/a/, /e/, /i/, /o/, and /u/), we investigate the effects of the sampling frequency, frame size, and model order on the estimated vocal tract shape. We compare the vocal tract shapes obtained from deaf and normal children's speech.

      • $[Ni(C_2N_2H_8)_3]\cdotCrO_4$의 결정구조

        김세환,김승빈,남궁해,Kim, Se-Hwan,Kim, Seung-Bin,Nam, Gung-Hae 한국결정학회 1995 韓國結晶學會誌 Vol.6 No.2

        The crystal structure of Tris(ethylenediamine)nickel(II)Chromate has been determined by X-ray crystallography. Crystal data : a=9.027(2)Å, c=9.751(5)Å이며, Z=2, V=687.9(2)Å3, Dc=1.714gcm-3, μ=21.635-1. The intensity were collected with Mo-Kα radiation (λ=0.7107Å) on an automatic four-circle diffractometer with a graphite monochromator. The structure was solved by Patterson method and refined by full matrix least-square methods using unit weights. The final R and S values were R=0.029, Rw=032, Rall=0.049 andS=0.018 for 342 observed reflections. The chromate ions are located at position of point of point symmetry 32 and their oxygens are sixfold disodered in an unusual way. Extensive strong hydrogen bonds between complex cations and chromatic anions are found in axial and equatorial directions.

      • KCI등재

        투명 단열외피의 열적성능에 관한 연구

        김세환,이성,Kim, Se-Hwan,Lee, Sung 한국교육녹색환경연구원 2004 교육·녹색환경연구 Vol.4 No.4

        The thermal effect of a transparent insulated opake wall with solar energy was investigated theoretically. The heat gain through transparent insulated opake wall was studied for relative simple conditions. The stationary heat transport effect was studied for layer which is built on the opake wall. This study shows that a relative low solar radiation intensity causes a great heat reduction through the transparent insulated opake wall. Because the transparent insulation layer is mostly transparent to solar radiation, it is opaque to heat radiation.

      • SCOPUSKCI등재

        임상연구 : 정맥내 자가조절진통이 근이완제를 사용한 환자에서 근력과 호흡능력의 회복에 미치는 영향

        김세환 ( Se Hwan Kim ),한옥식 ( Ok Sik Han ),정희숭 ( Hee Soong Jung ),김두식 ( Doo Sik Kim ),류시정 ( Sie Jeong Ryu ),장태호 ( Tae Ho Chang ),김경한 ( Kyung Han Kim ) 대한마취과학회 2006 Korean Journal of Anesthesiology Vol.51 No.2

        Background: Residual muscle paralysis after anesthesia is reduced with the advent of intermediate-acting neuromuscular blocking drugs, yet the incidence is as high as about 10 percent. Opioids in patient-controlled analgesia (PCA) may cause respiratory depression and other problems after anesthesia. The purpose of this study is to evaluate the influence of PCA on the SPO2, TOF ratio, head-lift and tongue protrusion during recovery room stay following intraoperative muscle relaxants. Methods: 120 patients aged from 20 to 65 in ASA class I and II were divided into control or PCA groups. All patients received rocuronium (0.9 mg/kg) or atracurium (0.5 mg/kg) for tracheal intubation, and maintenance of relaxation was done with atracurium 0.2 mg/kg/hr during inhalation anesthesia. Reversal of block was done with pyridostigmine 0.15 mg/kg and glycopyrrolate 0.2 mg. SpO2. TOF ratio, 5 see-head lift, tongue protrusion tests were evaluated in the recovery room. Results: IV-PCA did not influence the incidence of residual block, SPO2, TOF ratio during recovery room stay for 20 minutes, but influenced negatively 5 see-head lift test, tongue protrusion test only immediately after arrival at the recovery room. Conclusions: Since IV-PCA decreased the ability to perform head-lift and tongue protrusion early postoperatively, it is recommended that patients with IV-PCA should be carefully managed against the risk of aspiration or upper respiratory obstruction during their early recovery room stay. (Korean J Anesthesiol 2006; 51: 167~73)

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