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| 1 | Recent advances in organic-based materials for resistive memory applications显示文摘With the rapid development of data-driven human interaction,advanced datastorage technologies with lower power consumption,larger storage capacity,faster switching speed,and higher integration density have become the goals of future memory electronics.Nevertheless,the physical limitations of conventional Si-based binary storage systems lag far behind the ultrahigh-density requirements of post-Moore information storage.In this regard,the pursuit of alternatives and/or supplements to the existing storage technology has come to the forefront.Recently,organic-based resistive memory materials have emerged as promising candidates for next-generation information storage applications,which provide new possibilities of realizing high-performance organic electronics.Herein,the memory device structure,switching types,mechanisms,and recent advances in organic resistive memory materials are reviewed.In particular,their potential of fulfilling multilevel storage is summarized.Besides,the present challenges and future prospects confronted by organic resistive memory materials and devices are discussed. | Yang Li Qingyun Qian Xiaolin Zhu Yujia Li Mayue Zhang Jingni Li Chunlan Ma Hua Li Jianmei Lu Qichun Zhang | 2020 | InfoMat2020,2,6: | 7 |
| 2 | Growth kinetics of 1-2 mm and 3-4 mm colonies of Nostoc sphaeroides(Cyano-phyta)in outdoor culture显示文摘 | Zhongyang Deng Chunlan Yan Fan Lu | 2008 | Biotechnology Letters2008,,30: | 1 |
| 3 | Growth kinetics of 1–2?mm and 3–4?mm colonies of Nostoc sphaeroides (Cyanophyta) in outdoor culture显示文摘 | Zhongyang Deng Chunlan Yan Fan Lu Qiang Hu Zhengyu Hu | 2008 | Biotechnology Letters2008,,10: | 1 |
| 4 | Effect of pre oxidation on the development of porosity in activated carbons from petroleum coke 显示文摘 | Chunlan Lu Shaoping Xu Wang Mei | 2007 | Carbon2007,45,1: | 1 |
| 5 | Effect of pre--carbonization of petroleum cokes on chemical activation process with KOH显示文摘 | Lu Chunlan Xu Shaoping Gan Yixiong Liu Shuqin and Liu Changhou | 2005 | Carbon2005,43,: | 1 |
| 6 | Effect of Pre-oxidation on the Development of Porosity in Activated Carbons from Petroleum Coke 显示文摘 | LU Chunlan XU Shaoping WANG Mei | 2007 | Carbon2007,45,1: | 1 |
| 7 | Effect ofpre-carbonization of petroleum tion process with KOH 显示文摘 | Lu Chunlan Xu Shaoping Gan Yixiong | 2005 | cokes on chemical activa Carbon2005,43,11: | 1 |
| 8 | Smart Interfacing between Co-Fe Layered Double Hydroxide and Graphitic Carbon Nitride for High-efficiency Electrocatalytic Nitrogen Reduction显示文摘Bimetallic compounds such as hydrotalcite-type layered double hydroxides(LDHs)are promising electrocatalysts owing to their unique electronic structures.However,their abilities toward nitrogen adsorption and reduction are undermined since the surface-mantled,electronegative-OH groups hinder the charge transfer between transition metal atoms and nitrogen molecules.Herein,a smart interfacing strategy is proposed to construct a coupled heterointerface between LDH and 2D g-C_(3)N_(4),which is proven by density functional theory(DFT)investigations to be favorable for nitrogen adsorption and ammonia desorption compared with neat LDH surface.The interfaced LDH and g-C_(3)N_(4) is further hybridized with a self-standing TiO_(2) nanofibrous membrane(NM)to maximize the interfacial effect owing to its high porosity and large surface area.Profited from the synergistic superiorities of the three components,the LDH@C_(3)N_(4)@TiO_(2) NM delivers superior ammonia yield(2.07×10^(−9) mol s^(−1) cm^(−2))and Faradaic efficiency(25.3%),making it a high-efficiency,noble-metal-free catalyst system toward electrocatalytic nitrogen reduction. | Xiaohui Wu Lu Tang Yang Si Chunlan Ma Peng Zhang Jianyong Yu Yitao Liu Bin Ding | 2023 | Energy & Environmental Materials2023,6,2: | 0 |
| 9 | Targeting PDE4 as a promising therapeutic strategy in chronic ulcerative colitis through modulating mucosal homeostasis显示文摘Phosphodiesterase-4(PDE4) functions as a catalyzing enzyme targeting hydrolyzation of intracellular cyclic adenosine monophosphate(c AMP) and inhibition of PDE4 has been proven to be a competitive strategy for dermatological and pulmonary inflammation. However, the pathological role of PDE4 and the therapeutic feasibility of PDE4 inhibitors in chronic ulcerative colitis(UC) are less clearly understood. This study introduced apremilast, a breakthrough in discovery of PDE4 inhibitors,to explore the therapeutic capacity in dextran sulfate sodium(DSS)-induced experimental murine chronic UC. In the inflamed tissues, overexpression of PDE4 isoforms and defective c AMP-mediating pathway were firstly identified in chronic UC patients. Therapeutically, inhibition of PDE4 by apremilast modulated c AMP-predominant protein kinase A(PKA)-c AMP-response element binding protein(CREB)signaling and ameliorated the clinical symptoms of chronic UC, as evidenced by improvements on mucosal ulcerations, tissue fibrosis, and inflammatory infiltrations. Consequently, apremilast maintained a normal intestinal physical and chemical barrier function and rebuilt the mucosal homeostasis by interfering with the cross-talk between human epithelial cells and immune cells. Furthermore, we found that apremilast could remap the landscape of gut microbiota and exert regulatory effects on antimicrobial responses and the function of mucus in the gut microenvironment. Taken together, the present studyrevealed that intervene of PDE4 provided an infusive therapeutic strategy for patients with chronic and relapsing UC. | Heng Li Yao Zhang Moting Liu Chen Fan Chunlan Feng Qiukai Lu Caigui Xiang Huimin Lu Xiaoqian Yang Bing Wu Duowu Zou Wei Tang | 2022 | Acta Pharmaceutica Sinica B2022,12,1: | 0 |