• Title/Summary/Keyword: ZIF-8

Search Result 26, Processing Time 0.022 seconds

Immobilization of GH78 α-L-Rhamnosidase from Thermotoga petrophilea with High-Temperature-Resistant Magnetic Particles Fe3O4-SiO2-NH2-Cellu-ZIF8 and Its Application in the Production of Prunin Form Naringin

  • Xu, Jin;Shi, Xuejia;Zhang, Xiaomeng;Wang, Zhenzhong;Xiao, Wei;Zhao, Linguo
    • Journal of Microbiology and Biotechnology
    • /
    • v.31 no.3
    • /
    • pp.419-428
    • /
    • 2021
  • To efficiently recycle GH78 thermostable rhamnosidase (TpeRha) and easily separate it from the reaction mixture and furtherly improve the enzyme properties, the magnetic particle Fe3O4-SiO2-NH2-Cellu-ZIF8 (FSNcZ8) was prepared by modifying Fe3O4-NH2 with tetraethyl silicate (TEOS), microcrystalline cellulose and zinc nitrate hexahydrate. FSNcZ8 displayed better magnetic stability and higher-temperature stability than unmodified Fe3O4-NH2 (FN), and it was used to adsorb and immobilize TpeRha from Thermotoga petrophilea 13995. As for properties, FSNcZ8-TpeRha showed optimal reaction temperature and pH of 90℃ and 5.0, while its highest activity approached 714 U/g. In addition, FSNcZ8-TpeRha had better higher-temperature stability than FN. After incubation at 80℃ for 3 h, the residual enzyme activities of FSNcZ8-TpeRha, FN-TpeRha and free enzyme were 93.5%, 63.32%, and 62.77%, respectively. The organic solvent tolerance and the monosaccharides tolerance of FSNcZ8-TpeRha, compared with free TpeRha, were greatly improved. Using naringin (1 mmol/l) as the substrate, the optimal conversion conditions were as follows: FSNcZ8-TpeRha concentration was 6 U/ml; induction temperature was 80℃; the pH was 5.5; induction time was 30 min, and the yield of products was the same as free enzyme. After repeating the reaction 10 times, the conversion of naringin remained above 80%, showing great improvement of the catalytic efficiency and repeated utilization of the immobilized α-L-rhamnosidase.

Metal-organic frameworks-driven ZnO-functionalized carbon nanotube fiber for NO2 sensor

  • Woo, Sungyoon;Jo, Mingyeong;Lee, Joon-Seok;Choi, Seung-Ho;Lee, Sungju;Jeong, Hyeon Su;Choi, Seon-Jin
    • Journal of Sensor Science and Technology
    • /
    • v.30 no.6
    • /
    • pp.369-375
    • /
    • 2021
  • In this study, heterogeneous ZnO/CNTF composites were developed to improve the NO2-sensing response, facilitated by the self-heating property. Highly conductive and mechanically stable CNTFs were prepared by a wet-spinning process assisted by the liquid crystal (LC) behavior of CNTs. Metal-organic frameworks (MOFs) of ZIF-8 were precipitated on the surface of the CNTF (ZIF-8/CNTF) via one-pot synthesis in solution. The subsequent calcination process resulted in the formation of the ZnO/CNTF composites. The calcination temperatures were controlled at 400, 500, and 600 ℃ in an N2 atmosphere to confirm the evolution of the microstructures and NO2-sensing properties. Gas sensor characterization was performed at 100 ℃ by applying a DC voltage to induce Joule heating through the CNTF. The results revealed that the ZnO/CNTF composite after calcination at 500 ℃ (ZnO/CNTF-500) exhibited an improved response (Rair/Rgas = 1.086) toward 20 ppm NO2 as compared to the pristine CNTF (Rair/Rgas = 1.063). Selective NO2-sensing properties were demonstrated with negligible responses toward interfering gas species such as H2S, NH3, CO, and toluene. Our approach for the synthesis of MOF-driven ZnO/CNTF composites can provide a new strategy for the fabrication of wearable gas sensors integrated with textile materials.

Citation Trend and Suggestions for Improvement of Impact Factor of Journal of Korean Therapeutic Radiology and Oncology (대한방사선종양학회지의 학술인용 변화 추이 및 학술 영향력 지수 개선을 위한 제안: 한국의학학술지 인용색인 자료 분석)

  • Kim, Seong-Hwan;Ahn, Myeong-Im;Jeong, So-Na;Hwang, Seong-Su
    • Radiation Oncology Journal
    • /
    • v.24 no.4
    • /
    • pp.309-316
    • /
    • 2006
  • $\underline{Purpose}$: To analyze the recent citation trend and to find a way to improve impact factor (IF) of the Journal of Korean Therapeutic Radiology and Oncology (JKSTRO) by analysis of Korean Medical Citation Index (KoMCI) citation data of JKSTRO and comparison with that of mean citation data of all journals enlisted on KoMCI (KoMCI journals) during 2000-2005. $\underline{Materials\;and\;Methods}$: All citation data of entire journals enlisted on KoMCI and JKSTRO from 2000 to 2005 were obtained from KoMCI. The trend of total and annual number of published articles and reference citations, total citations and self-citations per paper, IF and impact factor excluding self-citations (ZIF) were described and compared on both KoMCI journals and JKSTRO. $\underline{Results}$: Annual number of published articles was decreased for 6 years on both KoMCI journals and JKSTRO (32% and 38% reduction rate). The number of Korean journal references per article is 1.6 papers on JKSTRO comparing to 2.0 papers on KoMCI journals. The percentage of Korean references/total references increased from 5.0% in 2000 to 7.7% in 2005 on JKSTRO and from 8.5% in 2000 to 10.1% on KoMCI journals. The number of total citations received/paper on JKSTRO (average 1.333) is smaller than that of KoMCI journals (average 1.694), there was an increased rate of 67% in 2005 comparing to 2000. The percentage of self-citations/total citations (average 72%) on JKSTRO is slightly higher than that of KoMCI journals (average 61%). IF of JKSTRO was gradually improved and 0.144, 0.125, 0.088, 0.107, 0.187, and 0.203 in 2000-2005 respectively. However, ZIF of JKSTRO is steadily decreased from 0.038 in 2000 to 0.013 in 2005 except 0.044 in 2004. $\underline{Conclusion}$: IF of JKSTRO was slightly improved but had some innate problem of smaller number of citations received. To make JKSTRO as a highly cited journal, the awareness of academic status of JKSTRO and active participation of every member of JKSTRO including encouraging self-citations of papers published recent 2 years and submission of English written papers, and active academic cooperation with related academic societies.

Recent Advances in Metal Organic Framework based Thin Film Nanocomposite Membrane for Nanofiltration (나노여과를 위한 금속유기구조체 기반 박막 나노복합막의 최근 발전)

  • Kim, Esther;Patel, Rajkumar
    • Membrane Journal
    • /
    • v.31 no.1
    • /
    • pp.35-51
    • /
    • 2021
  • Advancements in thin-film nanocomposite (TFN) membrane technology for nanofiltration is crucial for removing pollutants from natural resources. In recent years, various metal-organic framework (MOF) modifications have been tested to overcome the drawbacks that are inevitable with conventional thin-film composite (TFC) and TFN membranes. In general, MIL-101(Cr), UiO-66, ZIF-8, and HKUST-1 [Cu3(BCT2)] are MOFs that were proven to exhibit excellent membrane performance in terms of solvent permeability and solute rejection; their respective studies are reviewed in this article. Other novelties, such as the simultaneous use of different MOFs and unique MOF layering techniques (e.g., dip-coating, spray pre-disposition, Langmuir-Schaefer film, etc.) are also discussed as they present alternate solutions for membrane enhancement and/or preparation convenience. Not only are these MOF-modified TFN membranes frequently shown to improve separation performance from their respective TFC and TFN membranes, but many reports also explain their potential for a cost-effective and environmentally friendly process. In this review the thin film nanocomposite nanofiltration membrane is discussed.

Gas Sorption Analysis of Metal-organic Frameworks using Microresonators (마이크로진동자 기반 금속유기골격체의 기체 흡탈착 분석)

  • Kim, Hamin;Choi, Hyun-Kuk;Kim, Moon-Gab;Lee, Young-Sei;Yim, Changyong
    • Applied Chemistry for Engineering
    • /
    • v.33 no.1
    • /
    • pp.11-16
    • /
    • 2022
  • Metal-organic frameworks (MOFs) are porous materials with nano-sized pores. The degree of gas adsorption and pore size can be controlled according to types of metal ions and organic ligands. Many studies have been conducted on MOFs in the fields of gas storage and separation, and gas sensors. For rapid and quantitative gas adsorption/desorption analyses, it is necessary to form various MOF structures in uniform films on a sensor surface. In this review, some of representative direct methods for uniformly synthesizing MOFs such as MIL-53 (Al), ZIF-8, and Cu-BDC from anodized aluminum oxide, zinc oxide nanorods, and copper thin films, respectively on the surface of a microresonator are highlighted. In addition, the operation principle of quartz crystal microbalance and microcantilever, which are representative microresonators, and the interpretation of signals that change when gas is adsorbed to MOFs are covered. This is intended to enhance the understanding of gas adsorption/desorption analysis of MOFs using microresonators.

TiO2 membrane를 이용한 수소 동위원소 분리

  • Lee, Jae-Won;Lee, Hyeon-Gwon;Nam, Geon-U;Lee, Gi-Yeong
    • Proceedings of the Korean Institute of Surface Engineering Conference
    • /
    • 2017.05a
    • /
    • pp.147-147
    • /
    • 2017
  • $TiO_2$는 의료기기, 광촉매, 태양전지 등의 여러 분야에 응용이 가능하여 많은 연구가 진행되어 왔다. 그 중 양극산화를 통하여 수직으로 잘 정렬된 나노튜브는 넓은 반응면적, 높은 전자 전도성 등의 장점으로 그 성능을 더욱 향상 시킬 수 있어 많은 연구자들이 이용하고 있다. 양극산화의 특성상 Ti 기판 위에 형성된 나노튜브의 효용성을 높이기 위하여 기판에서 분리하여 membrane의 형태로 이용하기도 한다. 이런 $TiO_2$ 나노튜브 멤브레인의 이용은 주로 오염물의 분해를 위한 광촉매, 염료감응 태양전지의 전극으로 이용되고 있다. 본 연구는 $TiO_2$ 나노튜브 멤브레인에 기체 동위 원소 분리에 이용되는 HKUST-1, ZIF-8 등과 같은 Metal Organic Frame Work (MOF)을 충진 시켜 극저온에서 수소 동위 원소를 분리 하고 자 하는데 있다. 하지만 MOF를 충진하기 위해서는 기존의 $TiO_2$ 나노 튜브 멤브레인보다 더 넓은 내경과 안정성이 요구되는 바이다. 이를 위하여 본 연구에서는 내경을 수백 나노미터 이상으로 확장하기 위한 전해질, 전류(전압) 조건 등에 대하여 연구 하였다. 또한 멤브레인의 안정적인 제조를 위하여 2-step 양극산화 조건, 열처리 조건 등의 변화를 통하여 그 목적을 달성 하고자 하였다.

  • PDF