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7篇 您的检索式:作者名="Seungbeom"
    题名 作者 年代 出处 被引量
1Hydrothermal synthesis of acicular zirconate titanate (PZT) 显示文摘Cho SeungBeom Oledzka Magdalena Riman Richard E 2004J Cryst Growth2004,226,:1
2Low temperature hydrothermal synthesis and formation mechanisms of lead titanate(PbTiO3) particles using teramethylammonium hydroxide:thermodynamic modeling and experimental verification显示文摘CHO SeungBeom NOH JunSeok LENCKA Malgorzata M 2003Journal of the European Ceramic Society2003,23,13:1
3Isomenthone protects human dermal fibroblasts from TNF-α-induced death possibly by preventing activation of JNK and p38 MAPK显示文摘Eunsun Jung Sangyo Byun Seungbeom Kim Moohan Kim Deokhoon Park Jongsung Lee 2012Food and Chemical Toxicology2012,,10:1
4Two-parallel Reed-Solomon based FEC architecture for optical communications显示文摘Seungbeom Lee Chang-SeoK Choi Hanho Lee 2008IEICE Electronlcs Express2008,5,1:1
5Low Temperature Hydrothermal Synthesis and Formation Mechanisms of Lead Titanate ( PbTiO3 ) Particles Using Teramethylammonium Hydroxide: Thermodynamic Modeling and Experimental Verification 显示文摘SEUNGBEOM Cho JUNSEOK Noh MALGORZATA Lencka M 2003Journal of the European Ceramic Society2003,23,13:1
6Chemokine-mimetic plerixafor derivative for tumorspecific delivery of nanomaterials显示文摘这里,我们报导 chemokine 模仿的 plerixafor 衍生物能管理肿瘤特定的交货和 nanomaterials 的功能的效果。减少的 graphene 氧化物(rGO ) nanosheets 被用作一个模型功能的 nanomaterial,和结合 plerixafor 的类脂化合物或结合 plerixafor 的类脂化合物(BPL/rGO ) 的 benzylcyclam 衍生物(PL/rGO ) 身体上被吸附到 rGO 的表面上。修改表面的 rGO 的细胞的举起依赖于癌症房间上的 CXCR4 chemokine 受体的 overexpression。在 KB 房间,为 CXCR4 的 BPL/rGO 的有约束力的亲密关系是比 PL/rGO 的大的 6.8 褶层。尤其是,细胞的举起模式相关与在 vitro photothermal anticancer 功效。BPL/rGO 的肿瘤分发在忍受 CXCR4-overexpressing 肿瘤的老鼠比 PL/rGO 和平凡 rGO 的高,而各种各样的 rGO 形式的分发在怀有 CXCR4 否定的肿瘤的老鼠是类似的。而且,完全的 photothermal 肿瘤脱离在忍受 CXCR4 积极的 KB 房间肿瘤的 BPL/rGO-treated 老鼠,然而并非在 CXCR4 否定的 MCF-7 房间肿瘤被观察。这些结果提供 BPL 能被用来提高 nanomaterials 的交货到 CXCR4-overexpressing 肿瘤的证据。Chemokine 模仿的 BPL 能进一步被申请 photosensitizers, anticancer 药,或在 CXCR4-overexpressing 癌症病人的诊断肿瘤成像代理人的基于 nanomaterial 的交货。Seungbeom Ko Gayong Shim Jinyoung Kim Yu-Kyoung Oh 2018Nano Research2018,11,4:0
7Molecular bridge-mediated ultralow-power gas sensing显示文摘We report the electrical detection of captured gases through measurement of the quantum tunneling characteristics of gas-mediated molecular junctions formed across nanogaps.The gas-sensing nanogap device consists of a pair of vertically stacked gold electrodes separated by an insulating 6 nm spacer(~1.5 nm of sputteredα-Si and~4.5 nm ALD SiO2),which is notched~10 nm into the stack between the gold electrodes.The exposed gold surface is functionalized with a self-assembled monolayer(SAM)of conjugated thiol linker molecules.When the device is exposed to a target gas(1,5-diaminopentane),the SAM layer electrostatically captures the target gas molecules,forming a molecular bridge across the nanogap.The gas capture lowers the barrier potential for electron tunneling across the notched edge region,from~5 eV to~0.9 eV and establishes additional conducting paths for charge transport between the gold electrodes,leading to a substantial decrease in junction resistance.We demonstrated an output resistance change of>108 times upon exposure to 80 ppm diamine target gas as well as ultralow standby power consumption of<15 pW,confirming electron tunneling through molecular bridges for ultralow-power gas sensing.Aishwaryadev Banerjee Shakir-Ul Haque Khan Samuel Broadbent Ashrafuzzaman Bulbul Kyeong Heon Kim Seungbeom Noh R.Looper C.H.Mastrangelo H.Kim 2021Microsystems & Nanoengineering2021,7,2:0
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