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5篇 您的检索式:作者名="Runfeng Lin"
    题名 作者 年代 出处 被引量
1MOF-Like 3D Graphene-Based Catalytic Membrane Fabricated by One-Step Laser Scribing for Robust Water Purification and Green Energy Production显示文摘Increasing both clean water and green energy demands for survival and development are the grand challenges of our age.Here,we successfully fabricate a novel multifunctional 3D graphene-based catalytic membrane(3D-GCM)with active metal nanoparticles(AMNs)loading for simultaneously obtaining the water purification and clean energy generation,via a“green”one-step laser scribing technology.The as-prepared 3D-GCM shows high porosity and uniform distribution with AMNs,which exhibits high permeated fluxes(over 100 L m^(−2) h^(−1))and versatile super-adsorption capacities for the removal of tricky organic pollutants from wastewater under ultra-low pressure-driving(0.1 bar).After adsorption saturating,the AMNs in 3D-GCM actuates the advanced oxidization process to self-clean the fouled membrane via the catalysis,and restores the adsorption capacity well for the next time membrane separation.Most importantly,the 3D-GCM with the welding of laser scribing overcomes the lateral shear force damaging during the long-term separation.Moreover,the 3D-GCM could emit plentiful of hot electrons from AMNs under light irradiation,realizing the membrane catalytic hydrolysis reactions for hydrogen energy generation.This“green”precision manufacturing with laser scribing technology provides a feasible technology to fabricate high-efficient and robust 3D-GCM microreactor in the tricky wastewater purification and sustainable clean energy production as well.Xinyu Huang Liheng Li Shuaifei Zhao Lei Tong Zheng Li Zhuiri Peng Runfeng Lin Li Zhou Chang Peng Kan-Hao Xue Lijuan Chen Gary J.Cheng Zhu Xiong Lei Ye 2022Nano-Micro Letters2022,14,11:2
2Interfacial Assembly Directed Unique Mesoporous Architectures:From Symmetric to Asymmetric显示文摘CONSPECTUS:Functional mesoporous materials have experienced flourishing developments over the past 30 years,and they are now a big family including large variety of compositions and architectures.Due to large surface area,high pore volume,tunable pore size,and unique mesostructures,mesoporous nanomaterials have been widely used in catalysis,energy conversion and storage,drug delivery,etc.Out of the various methods of architecting mesoporous materials,the soft-templating method that allows regulating the architecture by tuning the assembly process,is used mostly for fabricating mesoporous materials.In soft templating methods,amphiphilic surfactants and precursors assemble into“soft”micelles,and micelles further assemble into mesoporous materials.Usually,micelles homogeneously nucleate and assemble into mesoporous nanomaterials.Such a homogeneous assembly process naturally leads to“routine”structures such as nanospheres or other symmetric architectures.Introduction of nanoparticles during the micelle assembly process results in conventional core@shell structures,which though combining the mesoporous shell and functional core,is still simple.Nowadays,growing demands in diverse applications urgently require mesoporous nanomaterials with novelty in mesostructures,compositions,surface properties,morphologies,functionalities,etc.Therefore,researchers have been seeking to gain better control of the micelles’assembly process,pursuing the synthesis of mesoporous nanomaterials with unique architectures,especially morphology,mesostructure,surface chemistry,etc.Recently,the effect of“interface”during micelles’assembly process has aroused great attention.The introduction of an interface into the reaction system turns the micelles’homogeneous assembly into a heterogeneous one,altering their assembly behavior and thus leading to mesoporous nanomaterials with unique architectures.By manipulation of the interfacial-assembly behavior of micelles,a series of mesoporous nanomaterials with unique architectures have been developed,with structures ranging from symmetric to asymmetric.In this Account,the recent progresses in interfacial-assembly-directed mesoporous nanomaterials with unique architectures,both the fabrication and applications are systematic reviewed.The architectures of the obtained mesoporous nanomaterials are categorized into symmetric and asymmetric,including virus-like,bouquet-like,multishell hollow structures,and also Janus,multipods,hemisphere structures,etc.We introduced how interfaces such as nanoparticle−surface,water−oil interface,macropore scaffold interfaces,etc.are utilized to direct the assembly of micelles.The methods of controlling micelles’interfacial-assembly behavior,such as biphasic assembly method,interfacial-energy method,interface tension method,and so on are highlighted.The applications of these unique mesoporous nanomaterials in fields of catalysis,energy conversion,and biomedicine are surveyed.At the end of the review,a brief summary of the field,as well as shortcomings,challenges,and perspectives of the field are also included.Tiancong Zhao Liang Chen Runfeng Lin Pengfei Zhang Kun Lan Wei Zhang Xiaomin Li Dongyuan Zhao 2020Accounts of Materials Research2020,1,1:1
3Silafluorene moieties as promising building blocks for constructing wide-energy-gap host materials of blue phosphorescent organic light-emitting devices显示文摘In this article, we reported the synthesis and characterization of a novel silafluorene-based host material, 1,3-bis(5-methyl-5Hdibenzo[b,d]silol-5-yl)benzene(Me-DBSi B), for blue phosphorescent organic light-emitting devices(PHOLEDs). The MeDBSi B was constructed by linking 9-methyl-9-silafluorene units to the phenyl framework through the sp3-hybridized silica atom to maintain high singlet and triplet energy, as well as to enhance thermal and photo-stability. The calculated result shows that the phenyl core does not contribute to both the highest occupied molecular orbital and lowest unoccupied molecular orbital. Wide optical energy gap of 4.1 e V was achieved. When the Me-DBSi B was used as the host and iridium(III) bis[(4,6-difluorophenyl)pyridinato-N,C2′]picolate(Firpic) as the guest, a maximum current efficiency was 14.8 cd/A, lower than the counterpart of 1,3-bis(9-carbazolyl)benzene(28 cd/A). The unbalanced barrier for electron and hole injection to host layer may be responsible for low efficiency. Even so, our results show that silafluorene moieties are promising building blocks for constructing wide-energy-gap host materials.Dongdong Wang Qingqing Liu Yue Yu Yong Wu Xinwen Zhang Hua Dong Lin Ma Guijiang Zhou Bo Jiao Zhaoxin Wu Runfeng Chen 2015Science China Chemistry2015,58,6:0
4Two-dimensional materials-based integrated hardware显示文摘In recent years,two-dimensional(2D)materials-based fundamental preparing process such as high-quality wafer-level single crystal thin film synthesis technology and high-performance electrode preparing technology has developed rapidly.In addition,the integrated application prospect of 2D materials has been preliminarily verified,owing to the flat and clean interface between 2D materials and substrates.From the perspective of electronics and optoelectronics based on 2D materials,this paper will summarize the recent studies of integrated circuit hardware,integrated optoelectronic hardware,and hetero-integrated hardware,showing their advantages and potential application.Zhuiri PENG Runfeng LIN Zheng LI Langlang XU Xiangxiang YU Xinyu HUANG Wenhao SHI Xiao HE Xiaohan MENG Lei TONG Xiangshui MIAO Lei YE 2023Science China(Information Sciences)2023,66,6:0
5Design of a highly potent GLP-1R and GCGR dual-agonist for recovering hepatic fibrosis显示文摘Currently, there is still no effective curative treatment for the development of late-stage liver fibrosis. Here, we have illustrated that TB001, a dual glucagon-like peptide-1 receptor/glucagon receptor(GLP-1 R/GCGR) agonist with higher affinity towards GCGR, could retard the progression of liver fibrosis in various rodent models, with remarkable potency, selectivity, extended half-life and low toxicity. Four types of liver fibrosis animal models which were induced by CCl_(4), a-naphthyl-isothiocyanate(ANIT), bile duct ligation(BDL) and Schistosoma japonicum were used in our study. We found that TB001 treatment dose-dependently significantly attenuated liver injury and collagen accumulation in these animal models. In addition to decreased levels of extracellular matrix(ECM) accumulation during hepatic injury, activation of hepatic stellate cells was also inhibited via suppression of TGF-β expression as well as downstream Smad signaling pathways particularly in CCl_(4)-and S. japonicum-induced liver fibrosis. Moreover, TB001 attenuated liver fibrosis through blocking downstream activation of proinflammatory nuclear factor kappa B/NF-kappa-B inhibitor alpha(NFκB/IKBa) pathways as well as cJun N-terminal kinase(JNK)-dependent induction of hepatocyte apoptosis. Furthermore, GLP-1 R and/or GCGR knock-down results represented GCGR played an important role in ameliorating CCl_(4)-induced hepatic fibrosis. Therefore, TB001 can be used as a promising therapeutic candidate for the treatment of multiple causes of hepatic fibrosis demonstrated by our extensive pre-clinical evaluation of TB001.Nazi Song Hongjiao Xu Jiahua Liu Qian Zhao Hui Chen Zhibin Yan Runling Yang Zhiteng Luo Qi Liu Jianmei Ouyang Shuohan Wu Suijia Luo Shuyin Ye Runfeng Lin Xi Sun Junqiu Xie Tian Lan Zhongdao Wu Rui Wang Xianxing Jiang 2022Acta Pharmaceutica Sinica B2022,12,5:0
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