<?xml version="1.0" encoding="UTF-8"?><rss xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns:atom="http://www.w3.org/2005/Atom" version="2.0"><channel><title><![CDATA[그래픽랩]]></title><description><![CDATA[논문 그림 제작, 과학 일러스트레이션 스튜디오 ]]></description><link>https://www.graphiclab.kr/blog</link><generator>RSS for Node</generator><lastBuildDate>Sat, 29 Aug 2026 06:36:00 GMT</lastBuildDate><atom:link href="https://www.graphiclab.kr/blog-feed.xml" rel="self" type="application/rss+xml"/><item><title><![CDATA[Viewing Direction-Tunable Light Control Using Liquid Crystal Film for Simultaneous Implementation of Automotive Display Visibility and Safety]]></title><description><![CDATA[논문Figure/논문피겨/논문그림/논문커버/저널커버 https://pubs.acs.org/doi/abs/10.1021/acsaom.4c00036 Abstract Automotive displays provide driving or traffic information and mutual communication with the external environment. With the expansion of technology, there are multiple demands for the expansion of functions, such as providing simple driving and traffic information in addition to entertainment such as movies and games. However, the technology implementation in this regard is limited due to the challenges...]]></description><link>https://www.graphiclab.kr/post/viewing-direction-tunable-light-control-using-liquid-crystal-film-for-simultaneous-implementation-of-1</link><guid isPermaLink="false">6a927c7c5229624950dbec5d</guid><pubDate>Sat, 29 Aug 2026 06:30:31 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_39c52601e6354e039687078d470493ac~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[[Cover]Electron Beam-Induced Effects on a Ni-Rich Layered Cathode Material: A Comprehensive Investigation Using STEM and EELS]]></title><description><![CDATA[https://pubs.acs.org/doi/10.1021/acs.jpcc.4c00600 Abstract Scanning transmission electron microscopy (STEM) and electron energy loss spectroscopy (EELS) are commonly used to study the structural properties of lithium-ion battery electrode materials. However, electron beam damage poses a challenge to the interpretation of data in electron beam-sensitive materials. In this study, we investigated electron beam effects on the cathode material Li1.05Ni0.88Co0.08Mn0.04O2 (Ni-rich NCM) by varying...]]></description><link>https://www.graphiclab.kr/post/cover-electron-beam-induced-effects-on-a-ni-rich-layered-cathode-material-a-comprehensive-investig</link><guid isPermaLink="false">6a927c64815a484c556f64fc</guid><pubDate>Sat, 29 Aug 2026 06:30:03 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_ff73dad9f4684279aaab4e8d7aa7f9fa~mv2.jpg/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[[Figure/Scheme] Height-renderable morphable tactile display enabled by programmable modulation of local stiffness in photothermally active polymer]]></title><description><![CDATA[논문Figure의뢰/논문커버의뢰/논문그림제작/그래픽랩 https://www.nature.com/articles/s41467-024-46709-7 Abstract Reconfigurable tactile displays are being used to provide refreshable Braille information; however, the delivered information is currently limited to an alternative of Braille because of difficulties in controlling the deformation height. Herein, we present a photothermally activated polymer-bilayer-based morphable tactile display that can programmably generate tangible three-dimensional topologies with...]]></description><link>https://www.graphiclab.kr/post/figure-scheme-height-renderable-morphable-tactile-display-enabled-by-programmable-modulation-of-lo</link><guid isPermaLink="false">6a927bee3becef5709581d18</guid><pubDate>Sat, 29 Aug 2026 06:28:03 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_eee99371af1346558e2e49bb8ad833a2~mv2.png/v1/fit/w_738,h_696,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[[Figure]High-Performance Mixed-Matrix Membranes Using a Zeolite@MOF Core–Shell Structure Synthesized via Ion-Exchange-Induced Crystallization and Post-Synthetic Conversion]]></title><description><![CDATA[논문그림/논문피겨/논문Figure/논문그림의뢰/논문커버의뢰/Figure https://pubs.acs.org/doi/full/10.1021/jacsau.3c00680# Abstract Strategic design of nanostructures, such as the core–shell configuration, offers a promising avenue to harness the desired properties while mitigating the inherent limitations of individual materials. In our pursuit of synergizing the advantages of two distinct porous materials, namely, zeolites and metal–organic frameworks (MOFs), we aimed to develop the zeolite@MOF core–shell structures....]]></description><link>https://www.graphiclab.kr/post/figure-high-performance-mixed-matrix-membranes-using-a-zeolite-mof-core-shell-structure-synthesized</link><guid isPermaLink="false">6a927bdb815a484c556f64ba</guid><pubDate>Sat, 29 Aug 2026 06:27:43 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_7ff90ae35f9445c498553dc7f60fa0bc~mv2.png/v1/fit/w_1000,h_935,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[[Cover]Exploring TEM Coherence Properties via Speckle Contrast Analysis in Coherent Electron Scattering of ]]></title><description><![CDATA[논문그림/논문피겨/논문Figure/논문그림의뢰/논문커버의뢰/Figure https://www.mdpi.com/2079-4991/13/23 Abstract We investigate the coherence properties of a transmission electron microscope by analyzing nano-diffraction speckles originating from bulk metallic glass. The spatial correlation function of the coherent diffraction patterns, obtained in the transmission geometry, reveals the highly coherent nature of the electron probe beam and its spatial dimension incident on the sample. Quantitative agreement between the...]]></description><link>https://www.graphiclab.kr/post/cover-exploring-tem-coherence-properties-via-speckle-contrast-analysis-in-coherent-electron-scatter</link><guid isPermaLink="false">6a927bc5624fb3daa0859813</guid><pubDate>Sat, 29 Aug 2026 06:27:22 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_7c2762b254be434fa1413d648c03a993~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[[Cover]Tailored Silver Nanowires for Amplified Lithium-Ion Battery Performance and Inhibition of ]]></title><description><![CDATA[논문그림/논문피겨/논문Figure/논문그림의뢰/논문커버의뢰/Figure https://pubs.acs.org/doi/10.1021/acsaem.3c02064 In Li ion batteries using Si-based anodes, silver nanowires (AgNWs) are centrifugally mixed to prevent the loss of an electron conduction path due to the expansion of Si. In this study, a robust conductive network is created by modifying AgNWs to a width of 50 nm and length of 25 μm, considering the constituents of the electrode microstructure and adjusting the concentration of polyvinylpyrolidine used as...]]></description><link>https://www.graphiclab.kr/post/cover-tailored-silver-nanowires-for-amplified-lithium-ion-battery-performance-and-inhibition-of</link><guid isPermaLink="false">6a927bae5229624950dbebe1</guid><pubDate>Sat, 29 Aug 2026 06:26:59 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_b995545eab854dc7858858f4fd483c50~mv2.jpg/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[MO2C/C Nanocomposites Prepared by a Solid-Flame Combustion Synthesis Process for the Hydro]]></title><description><![CDATA[논문그림/논문피겨/논문Figure/논문그림의뢰/논문커버의뢰/Figure https://pubs.acs.org/doi/10.1021/acsanm.3c03933 In this study, we present two distinct solid-flame combustion synthesis (SF-CS) methods for the fabrication of two-dimensional (2D) nanosheets of carbon and nanocrystals of molybdenum carbide (Mo2C). To synthesize 2D carbon nanosheets, poly(vinyl chloride) polymer powder is combusted in conjunction with magnesium (Mg). In contrast, Mo2C is generated through the combustion–reduction of MoO3 using an excess...]]></description><link>https://www.graphiclab.kr/post/mo2c-c-nanocomposites-prepared-by-a-solid-flame-combustion-synthesis-process-for-the-hydro</link><guid isPermaLink="false">6a927b962e57cceecbf0dda2</guid><pubDate>Sat, 29 Aug 2026 06:26:36 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_3c01c41a5bb8457fac59dd0ba08250ba~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Theranostics application of tumor-initiating cell probe TiY in non-small cell lungcancer]]></title><description><![CDATA[https://www.thno.org/v13p1370.pdf Abstract Background: Tumor-initiating cells (TIC) often elude conventional cancer treatment, which results in metastasis and cancer relapse. Recently, studies have begun to focus on the TIC population in tumors to provide better therapeutic options. Previously, we have reported the successful development of a TIC-specific probe TiY with the binding target as vimentin. While a low concentration of TiY showed a TIC visualization, at a high concentration, TiY...]]></description><link>https://www.graphiclab.kr/post/theranostics-application-of-tumor-initiating-cell-probe-tiy-in-non-small-cell-lungcancer-1</link><guid isPermaLink="false">6a926c25a0cfc1ecd77d1534</guid><pubDate>Sat, 29 Aug 2026 05:20:43 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_77bfbfd23ee34654b03801c3e59762d4~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[[Cover]A Homogenous, Photocrosslinkable Poly(dimethylsiloxane-co-methylvinylsiloxane) Solution in an Acrylate Monomer]]></title><description><![CDATA[논문 커버 의뢰/ 논문 그림 의뢰/ 논문 Cover / 저널 커버 의뢰 https://onlinelibrary.wiley.com/doi/10.1002/mame.202200509 Abstract In this study, a simple photocuring method is proposed for preparing PDMS elastomers using a homogenous poly(dimethylsiloxane) (PDMS) solution in tert-butyl acrylate (tBA) as an alternative way of mechanically blending two kinds of PDMS respectively containing vinyl and hydridosilyl groups over a platinum catalyst. Poly(dimethylsiloxane-co-methylvinylsiloxane) (PDMSc) with 30 mol% of...]]></description><link>https://www.graphiclab.kr/post/cover-a-homogenous-photocrosslinkable-poly-dimethylsiloxane-co-methylvinylsiloxane-solution-in-an</link><guid isPermaLink="false">6a926bf78101cdbcc589a389</guid><pubDate>Sat, 29 Aug 2026 05:20:00 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_c0c0c15fdf7d41c58779438cec0ab5c2~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Mechanoredox radical annulation for the solvent-free synthesis of 2-substituted benzothiophenes]]></title><description><![CDATA[https://doi.org/10.1039/d6mr00013d A mechanoredox-enabled radical annulation under ball-milling conditions affords 2-substituted benzothiophenes 3 from 2-(methylthio)benzenediazonium salts 1 and alkynes 2. Mechanical energy drives single-electron transfer without photoredox or electrochemical systems, providing a practical and environmentally benign approach to heterocycle synthesis. Publisher: The Royal Society of Chemistry Online ISSN: 2976-8683 © 2026 The Author(s). Published by the Royal...]]></description><link>https://www.graphiclab.kr/post/mechanoredox-radical-annulation-for-the-solvent-free-synthesis-of-2-substituted-benzothiophenes</link><guid isPermaLink="false">6a4d9c206c303678bb755837</guid><pubDate>Wed, 08 Jul 2026 00:40:24 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_a4ce2351e6de48d596e110caa4caaaab~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Full-Stack Architectures for Intelligent Brain-Computer Interfaces]]></title><description><![CDATA[https://doi.org/10.1002/advs.75838 Abstract Brain–computer interfaces (BCIs) have made consistent advances in supporting motor and communication functions; nevertheless, their adoption in everyday environments remains constrained by enduring challenges, including chronic instability at the electrode–tissue interface, motion-induced artifacts, inter-user variability, and strict power and bandwidth limitations. To address these issues, recent work has increasingly focused on system-level...]]></description><link>https://www.graphiclab.kr/post/full-stack-architectures-for-intelligent-brain-computer-interfaces</link><guid isPermaLink="false">6a45d3f09c4d1b405b25e653</guid><pubDate>Thu, 02 Jul 2026 03:01:01 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_506a115b84234351a4419bb32eafc3e2~mv2.jpg/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Mechanochemically Activatable Liquid Metal Powders for Sustainable, Reconfigurable, and Versatile Electronics]]></title><description><![CDATA[https://doi.org/10.1002/adfm.202527396Digital Object Identifier Abstract While liquid metals possess exceptional electrical conductivity, their integration into stretchable and recyclable electronics remains constrained. High surface tension causes poor adhesion and uncontrolled spreading, and current processing methods often lack scalability or recyclability, limiting broader adoption in soft robotics, wearable healthcare, and sustainable systems. Here, a class of mechanochemically...]]></description><link>https://www.graphiclab.kr/post/mechanochemically-activatable-liquid-metal-powders-for-sustainable-reconfigurable-and-versatile-el</link><guid isPermaLink="false">6a154918b6bdb307fe7288f3</guid><pubDate>Tue, 26 May 2026 07:25:23 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_b3e6391b41f44b6eb28e050576524a9a~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Epitaxial n-ZnO/MoS2/p-GaN Heterostructure Light-Emitting Diodes]]></title><description><![CDATA[https://pubs.acs.org/doi/10.1021/acs.nanolett.5c06430 Abstract We investigated an epitaxial strategy for fabricating MoS2 light-emitting diodes (LEDs). A full-coverage MoS2 active layer was grown on p-type GaN, and n-type ZnO nanorods were then vertically aligned on the MoS2 to form a p–n junction with negligible damage to the MoS2. All materials have nearly matched hexagonal structures, enabling single-crystal alignment. Although the continuous MoS2 film formed multiple layers (MLs), the...]]></description><link>https://www.graphiclab.kr/post/epitaxial-n-zno-mos2-p-gan-heterostructure-light-emitting-diodes</link><guid isPermaLink="false">6a0ec3d1f0529c749994fbc6</guid><pubDate>Thu, 21 May 2026 08:41:12 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_c57b12a5049a4330aad05766e7392883~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Abuse-Tolerant Separator Enabled by Surface Charge Modulation and Structural Reinforcement for High-Safety Lithium-Ion Batteries (Adv. Funct. Mater. 34/2026)]]></title><description><![CDATA[https://doi.org/10.1002/adfm.75167Digital Object Identifier (DOI) Graphical Abstract Battery Safety In their Research Article (10.1002/adfm.202529000), Dongsoo Lee, Junghyun Choi, Patrick Joohyun Kim, and co-workers introduce an abuse-tolerant battery separator achieved through surface charge regulation and mechanical reinforcement. The separator safeguards batteries against internal and external stresses and enables improved practical energy density.]]></description><link>https://www.graphiclab.kr/post/abuse-tolerant-separator-enabled-by-surface-charge-modulation-and-structural-reinforcement-for-high</link><guid isPermaLink="false">69f3086a6b2d57c43aadb8f3</guid><pubDate>Thu, 30 Apr 2026 07:47:02 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_bb9f905dc1ce407a9509242f757f62a8~mv2.jpg/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Ce-accelerated spontaneous redox synthesis of NiFe-based electrocatalysts for efficient oxygen evolution reaction]]></title><description><![CDATA[https://pubs.rsc.org/en/content/articlelanding/2026/nj/d6nj00120c DOI https://doi.org/10.1039/D6NJ00120C Abstract Sluggish reaction kinetics in the oxygen evolution reaction (OER) hinder the efficiency of water electrolysis systems. Herein, an ultrafast and cost-effective strategy for fabricating high-performance NiFe-based electrocatalysts is presented, utilizing a Ce 4+ -assisted spontaneous redox reaction at room temperature. By employing ammonium cerium nitrate as a potent sacrificial...]]></description><link>https://www.graphiclab.kr/post/ce-accelerated-spontaneous-redox-synthesis-of-nife-based-electrocatalysts-for-efficient-oxygen-evolu</link><guid isPermaLink="false">69b919a8ea38c468abde6574</guid><pubDate>Tue, 17 Mar 2026 09:08:19 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_4e6fef9a1a4046f88491555829be4802~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Bioinspired Trifunctional Patches for Adaptive and Energy-Efficient Thermal Management]]></title><description><![CDATA[https://doi.org/10.1002/adfm.202525966 Abstract Nature has long inspired the intelligent and efficient design of functional materials. However, seamlessly integrating multiple functions from distinct biological origins into a single material platform remains challenging. Here, we present a scalable, bioinspired adhesive patch that monolithically integrates three synergistic functionalities: dry adhesion, thermal insulation, and thermochromism. Each function can be independently tuned through...]]></description><link>https://www.graphiclab.kr/post/bioinspired-trifunctional-patches-for-adaptive-and-energy-efficient-thermal-management</link><guid isPermaLink="false">69699851022bfc82f764ddc6</guid><pubDate>Fri, 16 Jan 2026 01:48:03 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_d077c3188dda4e5d9da28b222865633b~mv2.jpg/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[MOF-derived CeO2 catalysts with Pr doping: engineering oxygen vacancies for improved CO2 conversion to dimethyl carbonate]]></title><description><![CDATA[https://pubs.rsc.org/en/content/articlelanding/2024/ta/d4ta05554c Abstract Producing dimethyl carbonate (DMC) from CO 2  and methanol offers significant potential for carbon utilization. Ceria (CeO 2 ) is a key catalyst due to its abundant oxygen vacancies essential for CO 2  activation, but enhancing its catalytic performance for practical applications remains challenging. While doping with REMs (rare earth metals) has been recognized as a potential strategy for modulating defect sites of...]]></description><link>https://www.graphiclab.kr/post/mof-derived-ceo2-catalysts-with-pr-doping-engineering-oxygen-vacancies-for-improved-co2-conversion</link><guid isPermaLink="false">6948b4b2a496ce9330b4d225</guid><pubDate>Mon, 22 Dec 2025 03:05:23 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_809cb2758e3944c99722bb245267f51f~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Atomically dispersed silver on nanosheet-stacked amorphous alumina for enhanced NOx reduction]]></title><description><![CDATA[https://www.sciencedirect.com/science/article/abs/pii/S138589472507891X Abstract Tailoring anchoring sites in Al 2 O 3  to strengthen metal-support interactions (MSI) remains a challenge yet essential for designing robust single-atom catalysts. Herein, nanosheet-stacked amorphous alumina (mAl 2 O 3 ) with enhanced surface area and abundant hydroxyl groups was prepared by controlling the thermal treatment protocol of an Al-containing MOF. Loading 1 wt% Ag onto mAl 2 O 3  led to atomically...]]></description><link>https://www.graphiclab.kr/post/atomically-dispersed-silver-on-nanosheet-stacked-amorphous-alumina-for-enhanced-nox-reduction</link><guid isPermaLink="false">6945578c351cb04882541617</guid><pubDate>Fri, 19 Dec 2025 13:48:34 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_bea2ac2b86cc49d698fed0002a35b8b1~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[Inverse design for enhanced chiroptical response with chiral nanophotonic structures]]></title><description><![CDATA[https://pubs.aip.org/aip/app/article/10/10/100901/3367252 Chiral nanophotonic structures have attracted significant attention due to their wide-ranging applications in chiral sensing, on-chip optical devices, and optical communication. Although most chiral structures to date have been generated using conventional design approaches—guided by human intuition and followed by parameter sweeps—these methods are inherently limited in efficiently exploring complex, high-dimensional design spaces....]]></description><link>https://www.graphiclab.kr/post/inverse-design-for-enhanced-chiroptical-response-with-chiral-nanophotonic-structures</link><guid isPermaLink="false">6938e262122b31d338b5c4ca</guid><pubDate>Wed, 10 Dec 2025 03:02:11 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_09ec39ac639d4c8d92faa67751663fcb~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item><item><title><![CDATA[UV-Curable Polymer-Dispersed Extinguishing Agents for Scalable Flame Retardancy in High-Risk Environments]]></title><description><![CDATA[https://advanced.onlinelibrary.wiley.com/doi/10.1002/adem.202501034 Abstract The safety of lithium-ion batteries remains a critical concern owing to the risk of thermal runaway, which can lead to severe fires and explosions. This study introduces a novel polymer-dispersed extinguishing agent (PDEA) layer, fabricated via a single-step ultraviolet (UV)-induced phase separation process, eliminating the need for high-temperature manufacturing techniques. Spontaneously formed droplets of a...]]></description><link>https://www.graphiclab.kr/post/uv-curable-polymer-dispersed-extinguishing-agents-for-scalable-flame-retardancy-in-high-risk-environ</link><guid isPermaLink="false">6937b12408b2ad15d7026925</guid><pubDate>Tue, 09 Dec 2025 05:22:26 GMT</pubDate><enclosure url="https://static.wixstatic.com/media/4f3b3b_7da7bf1a6d9a47368cf059287ac932db~mv2.png/v1/fit/w_1000,h_1000,al_c,q_80/file.png" length="0" type="image/png"/><dc:creator>희경 권</dc:creator></item></channel></rss>