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30篇 您的检索式:作者名="Libing Liao"
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13D printing of bone tissue engineering scaffolds显示文摘Tissue engineering is promising in realizing successful treatments of human body tissue loss that current methods cannot treat well or achieve satisfactory clinical outcomes.In scaffold-based bone tissue engineering,a high performance scaffold underpins the success of a bone tissue engineering strategy and a major direction in the field is to produce bone tissue engineering scaffolds with desirable shape,structural,physical,chemical and biological features for enhanced biological performance and for regenerating complex bone tissues.Three-dimensional(3D)printing can produce customized scaffolds that are highly desirable for bone tissue engineering.The enormous interest in 3D printing and 3D printed objects by the science,engineering and medical communities has led to various developments of the 3D printing technology and wide investigations of 3D printed products in many industries,including biomedical engineering,over the past decade.It is now possible to create novel bone tissue engineering scaffolds with customized shape,architecture,favorable macro-micro structure,wettability,mechanical strength and cellular responses.This article provides a concise review of recent advances in the R&D of 3D printing of bone tissue engineering scaffolds.It also presents our philosophy and research in the designing and fabrication of bone tissue engineering scaffolds through 3D printing.Chong Wang Wei Huang Yu Zhou Libing He Zhi He Ziling Chen Xiao He Shuo Tian Jiaming Liao Bingheng Lu Yen Wei Min Wang 2020Bioactive Materials2020,5,1:20
2Mssbauer spectroscopic study of Fe-Mg tourmalines with different Fe contents显示文摘We studied four tourmalines with different Fe contents from Xinjiang,Sichuan,and Yunnan provinces of China using M ssbauer spectroscopy and single crystal X-ray diffraction.The valence and location of Fe in the four tourmalines and two heat-treated tourmalines have been investigated.The experimental results showed that Fe in the four tourmalines at room temperature had two valence states and two locations,i.e.Fe2+(Y),Fe2+(Z),Fe3+(Y).After being heated at 850℃ for 48 and 72 h,Fe elements in tourmaline were nearly completely oxidized and mainly occupied Y sites,and a small amount of Fe3+ shifted to Z sites.Simultaneously,the amount of mixed valence state Fe 2.5+ progressively increased with heating time,and electron delocalization occurred between the adjacent sites [Fe2+-Fe3+].ZHAO ChangChun LIAO LiBing 2012Science China Earth Sciences2012,55,9:3
3Recent progress on lanthanide complexes/clay minerals hybrid luminescent materials显示文摘The unique luminescent performance of lanthanide complexes/clay minerals hybrid materials has been fascinating many researchers for recent decades.It not only retains the excellent luminescent characteristics of lanthanide complexes but also improves the poor stability of the complexes.In this article,we introduce the luminescence mechanism of lanthanide complexes and point out the necessity of their combination with clay minerals.After the analysis of the structure and interlayer environment differences of 1:1-type and 2:1-type clay minerals,the intercalation methods(covalent grafting and ion exchange)appropriate for different clay minerals are summarized with examples.Based on the luminescence characteristics of the hybrid materials,the applications of these materials as luminescent probes in recognition of specific metal cations and molecules,detection of pH value,and temperature are reviewed.Finally,the current problems in the preparation of lanthanide complexes/clay minerals hybrid luminescent materials and shortcomings that need improvement in their performance are analyzed,and the application prospect is forecast.Ga Zhang Lefu Mei Junjie Ding Ke Su Qingfeng Guo Guocheng Lv Libing Liao 2022Journal of Rare Earths2022,40,9:2
4Ultrasound-assisted preparation and charaterization of anionic sufactant modified montmorillonites显示文摘Zhang Zepeng Liao Libing Xia Zhiguo 0,,04:1
5Load TiO2 or TiO2-N on the porous carbon显示文摘CHEN Jie MEI Lefu LIAO Libing 2012Key Engineering Materials2012,5125,:1
6RT instability in cylindrical implosion of jelly ring显示文摘Yang Libing Liao Haidong Sun Chenwei 2004Chin Phys2004,13,10:1
7Preparation and Composition-structure-thermal Stability Relation of a Novel Open-framework Vanadium Phosphate (H3NCH2CH2NH3)3显示文摘Yang Zanzhong Liao Libing Du Hongbing 2002Journal of University of Science and Technology Beijing (Mineral Metallurgy Materials)2002,9,1:1
8Influence of Interlayer Cations on Organic Intercalation of Montmorillonite显示文摘Wu Limei Liao Libing Lv Guocheng 2015Journal of Colloid and Interface Science2015,454,:1
9The effect of interlayer cations on the expansion of vermiculite显示文摘Huo Xiaoxu Wu Limei Liao Libing 2012Pow- der Techn2012,224,:1
10HvWRKY2 acts as an immunity suppressor and targets HvCEBiP to regulate powdery mildew resistance in barley显示文摘Plants use a sophisticated immune system to perceive pathogen infection and activate immune responses in a tightly controlled manner.In barley,Hv WRKY2 acts as a repressor in barley disease resistance to the powdery mildew fungus,Blumeria graminis f.sp.hordei(Bgh).However,the molecular features of Hv WRKY2 in its DNA-binding and repressor functions,as well as its target genes,are uncharacterized.We show that the W-box binding of Hv WRKY2 requires an intact WRKY domain and an upstream sequence of~75 amino acids,and the Hv WRKY2 W-box binding activity is linked to its repressor function in disease resistance.Chromatin immunoprecipitation(ChIP)-seq analysis identified HvCEBiP,a putative chitin receptor gene,as a target gene of Hv WRKY2 in overexpressing transgenic barley plants.ChIP-qPCR and Electrophoretic Mobility Shift Assay(EMSA)verified the direct binding of Hv WRKY2 to a W-boxcontaining sequence in the HvCEBiP promoter.Hv CEBiP positively regulates resistance against Bgh in barley.Our findings suggest that Hv WRKY2 represses barley basal immunity by directly targeting pathogen-associated molecular pattern(PAMP)recognition receptor genes,suggesting that Hv CEBiP and likely chitin signaling function in barley PAMP-triggered immune responses to Bgh infection.Deshui Yu Renchun Fan Ling Zhang Pengya Xue Libing Liao Meizhen Hu Yanjun Cheng Jine Li Ting Qi Shaojuan Jing Qiuyun Wang Arvind Bhatt Qian-Hua Shen 2023The Crop Journal2023,11,1:1
11Slr0151 in Synechocystis sp. PCC 6803 is required for efficient repair of photosystem Ⅱ under high-light condition显示文摘Cyanobacteria are ancient photosynthetic prokareyotes that have adapted successfully to adverse environments including high-light irradiation. Although it is known that the repair of photodamaged photosystem Ⅱ(PSⅡ) in the organisms is a highly regulated process, our knowledge of the molecular components that regulate each step of the process is limited.We have previously identified a hypothetical protein Slr0151 in the membrane fractions of cyanobacterium Synechocystis sp.PCC 6803. Here, we report that Slr0151 is involved in PSⅡ repair of the organism. We generated a mutant strain(Dslr0151)lacking the protein Slr0151 and analyzed its characteristics under normal and high-light conditions. Targeted deletion of slr0151 resulted in decreased PSⅡ activity in Synechocystis. Moreover,the mutant exhibited increased photoinhibition due to impairment of PSⅡ repair under high-light condition. Further analysis using in vivo radioactive labeling and 2-D blue native/sodium dodecylsulfate polyacrylamide gel electrophoresis indicated that the PSⅡ repair cycle was hindered at the levels of D1 synthesis and disassembly and/or assembly of PSⅡ in the mutant. Protein interaction assays demonstrated that Slr0151 interacts with D1 and CP43 proteins. Taken together,these results indicate that Slr0151 plays an important role in regulating PSⅡ repair in the organism under high-light stress condition.Haomeng Yang Libing Liao Tingting Bo Lei Zhao Xuwu Sun Xuefeng Lu Birgitta Norling Fang Huang 2014Journal of Integrative Plant Biology2014,56,12:1
12A mechanistic study of ciprofloxacin removal by kaolinite显示文摘Zhaohui Li Hanlie Hong Libing Liao Caren J. Ackley Laura A. Schulz Roberta A. MacDonald Amanda L. Mihelich Shannon M. Emard 2011Colloids and Surfaces B: Biointerfaces2011,,1:1
13Micro-electrolysis of Cr (VI) in the nanoscale zero-valent iron loaded activated carbon 显示文摘Wu Limei Liao Libing Lv Guocheng 2013Journal of Hazardous Materials2013,,:1
14Luminescence properties of a new greenish blue emitting phosphor Na 5 Ca 4 (PO 4 ) 4 F:Eu 2+显示文摘Haiyi Xiao Zhiguo Xia Libing Liao Jun Zhou Jiaqing Zhuang 2012Journal of Alloys and Compounds2012,,:1
15Synergistic effect of cationic and anionic surfactants for the modification of Ca-montmo- rillonite显示文摘ZHANG Zepeng ZHANG Jichu LIAO Libing 2013Materials Research Bulletin2013,48,5:1
16A novel blue-purple Ce^(3+) doped whitlockite phosphor:Synthesis,crystal structure,and photoluminescence properties显示文摘At present,the rare earth(RE) ions doped phosphors have attracted more and more attention because of their excellent properties.In this paper,a series of novel blue-purple β-Ca_(3)(PO_(4))_(2):Ce^(3+) phosphors were synthesized by a high temperature solid phase method.The X-ray diffraction(XRD),infrared spectrum,energy dispersive spectroscopy(EDS),scanning electron microscopy(SEM),X-ray photoelectron spectroscopy(XPS),photoluminescence excitation and emission spectra were used to investigate the crystal structure,composition and the luminescent properties of the resulting samples.The phosphor shows a strong absorption in the ultraviolet band.Under the excitation of 269 nm,the phosphor emits a strong purple fluorescence ranging from 360 to 520 nm.When Ce^(3+) doping content is 0.07 mol,the strongest luminescence intensity is reached,and the concentration quenching mechanism is dipole-dipole(d-d)interaction for Ce^(3+) based on Dexter theory.Yuli Yuan Haoran Lin Jing'ao Cao Qingfeng Guo Fei Xu Libing Liao Lefu Mei 2021Journal of Rare Earths2021,39,6:1
17Preparation and Characterization of Hydroxyiron-Montmorillonite Complexes显示文摘Hydroxy Fe ions react slowly with montmorillonite by intercalation into their interlayer space and adsorption on their surface to form various hydroxyiron montmorillonite complexes. Hydroxyiron montmorillonite complexes are assumed to have the ability to adsorb anions such as H 2PO - 4, HPO 2- 4, CrO 2- 4, CrO - 2, H 2AsO - 4, HAsO 2- 4 , AsO 3- 4 and F -, which may come from weathered rocks or waste industrial water, and result in concentration of P, Cr, As and F in soil. In this paper, hydroxy Fe ions including Fe(OH) 2+ , Fe(OH) + 2 and Fe 2(OH) 2+ 2 are prepared through hydrolysis of iron in acid solutions with different pH values. Corresponding hydroxyiron montmorillonite complexes are obtained by intercalation and adsorption of these hydroxy Fe ions into the interlayer space and on the surface of montmorillonite. The obtained hydroxyiron montmorillonite complexes are characterized with XRD and DTA, showing that they have similar basal space and thermal stability with Fe montmorillonite.Liao Libing Jia Fuli Faculty of Materials Science and Engineering, China University of Geossciences, Beijing 100083, China 2000Journal of Earth Science2000,19,3:1
18Cr(Ⅵ)Retention and Transport Through Fe(Ⅲ)-Coated Natural Zeolite显示文摘Du Gaoxiang Li Zhaohui Liao Libing 2012J Hazard Mater2012,,:1
19Bmi-1,a Polycomb Group Protein,Plays an Essential Role in Tumorigenesis and Metastasis显示文摘Dysregulation of polycomb group protein Bmi-1 expression has been linked with an invasive phenotype of certain human cancers and poor prognosis of patients; however, the underlying mechanisms areLibing SONG Jun LI Wenting LIAO Yan FENG Wanli LIU Yixin ZENG Musheng ZENG 2009中国肺癌杂志2009,12,6:0
20Mineralogical Study on A Graphite Tailing from Luobei, China显示文摘China produces the largest amount of graphite raw materials in the world and the largest amount of graphite tailings at the same time. At present, graphite tailings in China are up to 200 million tones, which not only occupy large area of land, cause environmental pollutions, the collapes of the tailings dam also threaten the life of local residents.HAI Yun LIAO Libing DU Gaoxiang L Guocheng 2013矿物学报2013,33,S1:0
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