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25篇 您的检索式:作者名="LEE Woojin"
    题名 作者 年代 出处 被引量
1Inhibition of nZVI reactivity by magnetiteduring the reductive degradation of 1,1,1-TCA in nZVI/magnetite sus-pension显示文摘Bae Sungjun Lee Woojin 2010Applied Catalysis B-Environmental2010,96,12:1
2Degradation of trichlor-oethylene by Fenton reaction in pyrite suspension显示文摘Hyeongsu Che Sungjun Bae Woojin Lee 2011Journal ofHazardous Materials2011,185,23:1
3Lessons from Korea’s pharmaceutical policy reform: the separation of medical institutions and pharmacies for outpatient care显示文摘Han Joong Kim Woojin Chung Sang Gyu Lee 2003Health policy2003,,3:1
4Preparation of micropatterned hydrogel substrate via surface graft polymerization combined with photolithography for biosensor application显示文摘Woojin Lee Dongkil Choi Yeol Lee Dae-Nyun Kim Jinwon Park Won-Gun Koh 2008Sensors and Actuators B: Chemical2008,129,2:1
5Resilient Modulus of Cohesive Soils and the Effect of Freeze-Thaw显示文摘LEE Woojin BOHRA N C ALTSCHAEFFL A G 1995Canadian Geotechnical Journal1995,32,4:1
6Short selling by individual investors: Destabilizing or price discovering?显示文摘Chan Shik Jung Woojin Kim Dong Wook Lee 2013Pacific-Basin Finance Journal2013,,1:1
7Evaluation of deformation modulus of cemented sand using CPT and DMT显示文摘Moon-Joo Lee Sung-Jin Hong Young-Min Choi Woojin Lee 2010Engineering Geology2010,,1:1
8Resilient modulus of cohesive soils and the effect of freeze-thaw显示文摘Lee Woojin Bohra N C Altschaeffl A G 1995Canadian Geotechnical Journal1995,32,4:1
9Highly sensitive strain and bending sensor based on in-line fiber Mach- Zehnder interferometer in solid core large mode area photonic crystal fiber显示文摘Woojin Shin Yeung Lak Lee Bong-Ahn Yu 2010Opt Commun2010,283,10:1
10Highly sensitive strain and bending sensor based on in-line fiber Mach-Zehnder interferometer in solid core large mode ar- ea photonic crystal fiber显示文摘Shin Woojin Lee Yeung-Lak Yu Bong-Ahn 2010Optics Communications2010,283,:1
11Telechelic poly (ethylene glyc- ol)-POSS amphiphiles at the air/water interface 显示文摘Lee Woojin Ni Suolong 2007Macromolecules2007,40,3:1
12Highly sensitive strain and bending sensor based on in-line fiber Mach-Zehnder interfer- ometer in solid core large mode area photonic crystal fiber显示文摘Woojin Shin Yeung Lak Lee Bong-Ahn Yu 2010Optics Communications2010,283,1:1
13Degradation of diclofenac by pyrite catalyzed Fenton oxidation显示文摘Sungjun Bae Dongwook Kim Woojin Lee 2013Applied Catalysis B: Environmental2013,,:1
14Treatment of striae dis tensae with fractional photothermolysis 显示文摘Bak H Kim BJ WooJin Lee 2009Dermatol Surg2009,35,8:1
15Massively parallel electro-optic sampling of space-encoded optical pulses for ultrafast multi-dimensional imaging显示文摘High-speed and high-resolution imaging of surface profiles is critical for the investigation of various structures and mechanical dynamics of micro-and nano-scale devices.In particular,recent emergence of various nonlinear,transient and complex mechanical dynamics,such as anharmonic vibrations in mechanical resonators,has necessitated real-time surface deformation imaging with higher axial and lateral resolutions,speed,and dynamic range.However,real-time capturing of fast and complex mechanical dynamics has been challenging,and direct time-domain imaging of displacements and mechanical motions has been a missing element in studying full-field structural and dynamic behaviours.Here,by exploiting the electro-optic sampling with a frequency comb,we demonstrate a line-scan time-of-flight(TOF)camera that can simultaneously measure the TOF changes of more than 1000 spatial coordinates with hundreds megapixels/s pixel-rate and sub-nanometre axial resolution over several millimetres field-of-view.This unique combination of performances enables fast and precise imaging of both complex structures and dynamics in three-dimensional devices and mechanical resonators.Yongjin Na Hyunsoo Kwak Changmin Ahn Seung Eon Lee Woojin Lee Chu-Shik Kang Jungchul Lee Junho Suh Hongki Yoo Jungwon Kim 2023Light(Science & Applications)2023,12,2:1
16Fabrication of macroporous hydrogel membranes using photolithography forenzyme immobilization 显示文摘Choi Dongkil Lee Woojin Lee Yeol 2008Journal of Chemical Technology and Biotechnology2008,83,3:1
17Degradation of trichloroethylene by Fe (Ⅱ) chelated with cross-linked chitosan in a modified Fenton reaction显示文摘Lee Youngmin Lee Woojin 2010Journal of Hazardous Materials2010,178,13:1
18Probabilistic evaluation of spatial distribution of secondary compression by using kriging estimates of geo-layers显示文摘Woojin Lee Donghee Kim Youngho Chae Dongwoo Ryu 2011Engineering Geology2011,,3:1
19Selective redox degradation of chlorinated aliphatic compounds by Fenton reaction in pyrite suspension显示文摘Hyeongsu Che Woojin Lee 2010Chemosphere2010,,8:1
20Multivalent network modifier upregulates bioactivity of multispecies biofilm-resistant polyalkenoate cement显示文摘Polyalkenoate cement(PAC)is a promising material for regenerative hard tissue therapy.The ionically rich glass component of PAC encourages bioactive interaction via.the release of essential ions.However,PAC bioactivity is restricted owing to(i)structurally inherent cationic network formers and(ii)surface bacterial biofilm formation.These two factors cause a deficiency in ion release,further complicated by secondary infections and premature therapeutic failure.Here,a multivalent zwitterionic network modifier(mZM)is presented for upregulation of ionic exchange and bioactivity enhancement.By introducing a non-zero charged mZM into PACs,an increase in the proportion of non-bridging oxygen occurs.The network modification promotes ion channel formation,causing a multiple-fold increase in ion release and surface deposition of hydroxy-carbonate apatite(ca.74%).Experiments ex vivo and animal models also demonstrate the efficient remineralization ability of the mZM.Furthermore,divalent cationic interaction results in bacterial biofilm reduction(ca.68%)while also influencing a shift in the biofilm species composition,which favors commensal growth.Therefore,PAC modification with mZM offers a promising solution for upregulation of bioactivity,even aiding in customization by targeting site-specific regenerative therapy in future applications.Ji-Yeong Kim Woojin Choi Utkarsh Mangal Ji-Young Seo Tae-Yun Kang Joohee Lee Taeho Kim Jung-Yul Cha Kee-Joon Lee Kwang-Mahn Kim Jin-Man Kim Dohyun Kim Jae-Sung Kwon Jinkee Hong Sung-Hwan Choi 2022Bioactive Materials2022,7,8:0
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