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1A mussel-inspired supramolecular hydrogel with robust tissue anchor for rapid hemostasis of arterial and visceral bleedings显示文摘In recent years,the developed hemostatic technologies are still difficult to be applied to the hemostasis of massive arterial and visceral hemorrhage,owing to their weak hemostatic function,inferior wet tissue adhesion,and low mechanical properties.Herein,a mussel-inspired supramolecular interaction-cross-linked hydrogel with robust mechanical property(308.47±29.20 kPa)and excellent hemostatic efficiency(96.5%±2.1%)was constructed as a hemostatic sealant.Typically,we combined chitosan(CS)with silk fibroin(SF)by cross-linking them through tannic acid(TA)to maintain the structural stability of the hydrogel,especially for wet tissue adhesion ability(shear adhesive strength=29.66±0.36 kPa).Compared with other materials reported previously,the obtained CS/TA/SF hydrogel yielded a lower amount of blood loss and shorter time to hemostasis in various arterial and visceral bleeding models,which could be ascribed to the synergistic effect of wound closure under wet state as well as intrinsic hemostatic activity of CS.As a superior hemostatic sealant,the unique hydrogel proposed in this work can be exploited to offer significant advantages in the acute wound and massive hemorrhage with the restrictive access of therapeutic moieties.Ziwen Qiao Xueli Lv Shaohua He Shumeng Bai Xiaochen Liu Linxi Hou Jingjing He Dongmei Tong Renjie Ruan Jin Zhang Jianxun Ding Huanghao Yang 2021Bioactive Materials2021,6,9:14
2Kuroshio warm filament and the source of the warm water of the Tsushima Current显示文摘Characteristics and evolution of the Kuroshio frontal eddies and warm filaments are analyzed according to two series of satellite images (March 5 to 7, 1986 and April 14 to 16, 1988). The results show that the frontal eddies in the East China Sea are generated at the shelf break and move along the continental slope at a speed of 15 cm/s with the Kuroshio. The frontal eddies occur about every 10 d and evolve to be warm filaments a few hundred km in length and 30-40 km in width in the area west of the Yaku-shima. Meanwhile, the existence of the warm filament was also found in the area by analysing the hydrographic data in the area west of Kyushu during May 24-June 5, 1988.The Kuroshio warm filaments move westward opposite to the Kuroshio and then turn northward at the shelf break and become the main source of the warm water of the Tsushima Warm Current. A simple dynamic explanation for the process is presented in this paper.Guo Binghuo, Xiu Shumeng, Haruo Ishii and Yasuaki Nakamura First Institute of Oceanography, State Oceanic Administration, Oingdao, 266003, ChinaHydrographic Department, Maritime Safety Agency, Tokyo, JapanSeikai Fisheries Research Institute, Fisheries Agency Nagasaki, Japan 1991Acta Oceanologica Sinica1991,10,3:6
3Melatonin enhances radiofrequency-induced NK antitumor immunity,causing cancer metabolism reprogramming and inhibition of multiple pulmonary tumor development显示文摘Surgery is the comm on treatme nt for early lung cancer with multiple pulm onary no dules,but it is often accompanied by the problem of significant malignancy of other nodules in non-therapeutic areas.In this study,we found that a combined treatment of local rad iofreq ue ncy ablati on(RFA)and melatonin(MLT)greatly improved clinical outcomes for early lung cancer patie nts with multiple pulmonary nodules by minimizing lung function injury and reducing the probability of malignant transformation or enlargement of nodules in non-ablated areas.Mechanically,as demonstrated in an associated mouse lung tumor model,RFA not only effectively remove treated tumors but also stimulate antitumor immunity,which could inhibit tumor growth in non-ablated areas.MLT enhanced RFA-stimulated NK activity and exerted synergistic antitumor effects with RFA.Transcriptomics and proteomics analyses of residual tumor tissues revealed enhanced oxidative phosphorylation and reduced acidification as well as hypoxia in the tumor microenvironment,which suggests reprogrammed tumor metabolism after combined treatment with RFA and MLT.Analysis of residual tumor further revealed the depressed activity of MAPK,NF-kappa B,Wnt,and Hedgehog pathways and upregulated P53 pathway in tumors,which was in line with the inhibited tumor growth.Combined RFA and MLT treatment also reversed the Warburg effect and decreased tumor malignancy.These findings thus demonstrated that combined treatment of RFA and MLT effectively inhibited the malignancy of non-ablated nodules and provided an innovative non-invasive strategy for treating early lung tumors with multiple pulmonary nodules.Trial registration:www.chictr.org.cn,identifier ChiCTR2100042695,http://gffzz62a03ee25e6f4a77hnpp5xvqcq9uc6bkw.ffgz.tsg.suse.edu.cn/showproj.aspx?proj=120931.Ming Li Bingjie Hao Menghuan Zhang Russel J.Reiter Shumeng Lin Tiansheng Zheng Xiangyun Chen Yanbei Ren Liduo Yue Baigenzhin Abay Guojie Chen Xiao Xu Yufeng Shi Lihong Fan 2021Signal Transduction and Targeted Therapy2021,6,10:6
4Imbalance of the reciprocally inhibitory loop between the ubiquitin-specific protease USP43 and EGFR/PI3K/AKT drives breast carcinogenesis显示文摘Lin He Xinhua Liu Jianguo Yang Wanjin Li Shumeng Liu Xujun Liu Ziran Yang Jie Ren Yue Wang Lin Shan Chengjian Guan Fei Pei Liandi Lei Yu Zhang Xia Yi Xiaohan Yang Jing Liang Rong Liu Luyang Sun Yongfeng Shang 2018Cell Research2018,28,9:5
5Scalable synthesis of sub-lO0 nm hollow carbon nanospheres for energy storage applications显示文摘Hongyu Zhao Fan Zhang Shumeng Zhang Shengnan He Fei Shen Xiaogang Han Yadong Yin Chuanbo Gao 2018Nano Research2018,11,4:4
6Influence of pore size optimization in catalyst layer on the mechanism of oxygen transport resistance in PEMFCs显示文摘In PEMFC,the oxygen transport resistance severely hinders the cell from achieving high performance.In this paper,pore-forming agent was used to optimize the pore size distribution of the catalyst layer(CL),and to study its effect on the mechanism of oxygen transport resistance,including molecular diffusion resistance,Knudsen diffusion resistance,and local O2 resistance in CL.The results showed that with the pore formation the cell performance had a significant improvement at high current density,mainly due to its better oxygen transport properties,especially under low platinum conditions.The addition of pore-forming agent moved the pore diameter toward a larger pore diameter with a range from 70 to 100 nm,and also obtaining a higher cumulative pore volume.It was found that the increase of the cumulative pore volume and larger pore size were conducive to the diffusion of oxygen molecules in CL,and the resistance caused by which was the dominant part in total transport resistance.Further tests indicated that the improvement of molecular diffusion resistance was much larger than that of Knudsen diffusion resistance in the catalyst layer after pore formed.In addition,the optimized pore structure will also get a higher number of effective pores,which resulted in an increased effective area of the ionomer on the Pt surface.The higher effective area of the ionomer was particularly beneficial for the reduction of local O_(2) resistance with low Pt loading.Shumeng Guan Fen Zhou Jinting Tan Mu Pan 2020Progress in Natural Science:Materials International2020,30,6:2
7Research on the Work-rest Scheduling in the Manual Order Picking Systems to Consider Human Factors显示文摘As the status of order picking in the warehousing and distribution system has been raised,the work-rest scheduling of picking becomes particularly important.Although science and technology have developed rapidly,manual picking is still essential and indispensable.However,previous researches focused on the study of the sequencing,ignoring human factors.The paper presents a work-rest schedule model in parts to picker picking system.Two objectives are proposed that include minimizing the picking time and minimizing picking error rate.And workers'fatigue,workload is taken into account in the manual order picking systems because the fatigue can have a large influence on the picking time and the picking error rate.A genetic algorithm is used to solve a multi-objective optimization problem that the model concerns and looking for a Pareto front as the most effective methods for solving this problem.Once the original data is given,the work-rest scheduling model is built and the work sequence,and the number of breaks are determined to be chosen by decision makers.In addition,a case study of the model is used to confirm that the model is effective and it is necessary to consider the human factor in the picking system.Xiaosong Zhao Na Liu Shumeng Zhao Jinhui Wu Kun Zhang Rui Zhang 2019Journal of Systems Science and Systems Engineering2019,28,3:1
8Non-conjugated Polynorbornene Hosts with High Triplet Energy Levels for Solution-processed Narrowband Blue OLEDs显示文摘Three polymer hosts(namely PNB-tBuCz,PNB-Ac,PNB-TAc)containing non-conjugated polynorbornene(PNB)backbone and hole-transporting arylamine segments(carbazole,acridan and dendritic teracridan)in side chains are developed for solution-processed narrowband blue organic light-emitting diodes(OLEDs).It is found that the non-conjugated polynorbornenes can keep high triplet energy(ET)levels in range of 3.12-3.20 eV by interrupting the conjugation of repeating units,making them capable as host materials for blue emitters.Meanwhile,by increasing the electron-donating capability of side chain arylamine from carbazole to acridan and dendritic teracridan,the highest occupied molecular orbital(HOMO)levels for the polymer hosts are elevated from-5.50 eV to-5.11 eV,beneficial for reducing the hole injection barrier from anode to emissive layer.As a result,solution-processed OLEDs employing polynorbornenes with dendritic teracridan side chain(PNB-TAc)as host and boron,selenium,nitrogen-containing multiple resonance thermally activated delayed fluorescence emitter as dopant reveal efficient narrowband blue electroluminescence with emission peak at 474 nm,full-width at half maximum of 30 nm,together with maximum external quantum efficiency of 20.2%,representing the state-of-the-art device efficiency for solution-processed OLEDs with narrowband blue emission.LI Qiang CHEN Liang WANG Xingdong WANG Shumeng SHAO Shiyang WANG Lixiang 2023Chemical Research in Chinese Universities2023,39,5:1
9The ubiquitin ligase Pelil inhibits ICOS and thereby Tfh-mediated immunity显示文摘T follicular helper(Tfh)cells are crucial for regulating autoimmune inflammation and protective immunity against viral infection.However,the molecular mechanism controlling Tfh cell differentiation is poorly understood.Here,through two mixed bone marrow chimeric experiments,we identified Peli1,a T cell-enriched E3 ubiquitin ligase,as an intrinsic regulator that inhibits Tfh cell differentiation.Peli1 deficiency significantly promoted c-Rel-mediated inducible T-cell costimulator(ICOS)expression,and PELI1 mRNA expression was negatively associated with ICOS expression on human CD4^(+)T cells.Mechanistically,increased ICOS expression on Peli1-KO CD4^(+)T cells enhanced the activation of PI3K-AKT signaling and thus suppressed the expression of Klf2,a transcription factor that inhibits Tfh differentiation.Therefore,reconstitution of Klf2 abolished the differences in Tfh differentiation and germinal center reaction between WT and Peli1-KO cells.As a consequence,Peli1-deficient CD4^(+)T cells promoted lupus-like autoimmunity but protected against H1N1 influenza virus infection in mouse models.Collectively,our findings established Peli1 as a critical negative regulator of Tfh differentiation and indicated that targeting Peli1 may have beneficial therapeutic effects in Tfhrelated autoimmunity or infectious diseases.Xinfang Huang Shumeng Hao Junli Liu Yuanyuan Huang Manman Liu Chunyuan Xiao Yan Wang Siyu Pei Tao Yu Jing Xu Haikun Wang Dongfang Dai Xiao Su Yichuan Xiao 2021Cellular & Molecular Immunology2021,18,4:1
10Precisely engineering a dual-drug cooperative nanoassembly for proteasome inhibition-potentiated photodynamic therapy显示文摘Photodynamic therapy(PDT) has been widely investigated for cancer therapy. The intracellular accumulation of reactive oxygen species(ROS)-damaged protein facilitates tumor cell apoptosis. However, there is growing evidence that the ubiquitin-proteasome pathway(UPP) significantly impedes PDT by preventing the enrichment of ROS-damaged proteins in tumor cells. To tackle this challenge, we report a facile dual-drug nanoassembly based on the discovery of an interesting co-assembly of bortezomib(BTZ, a proteasome inhibitor) and pyropheophorbide a(PPa) for proteasome inhibition-mediated PDT sensitization.The precisely engineered nanoassembly with the optimal dose ratio of BTZ and PPa demonstrates multiple advantages, including simple fabrication, high drug co-loading efficiency, flexible dose adjustment,good colloidal stability, long systemic circulation, favorable tumor-specific accumulation, as well as significant enrichment of ROS-damaged proteins in tumor cells. As a result, the cooperative nanoassembly exhibits potent synergistic antitumor activity in vivo. This study provides a novel dual-drug engineering modality for multimodal cancer treatment.Fujun Yang Qingyu Ji Rui Liao Shumeng Li Yuequan Wang Xuanbo Zhang Shenwu Zhang Haotian Zhang Qiming Kan Jin Sun Zhonggui He Bingjun Sun Cong Luo 2022Chinese Chemical Letters2022,33,4:1
11Self‐Host Blue‐Emitting Iridium Dendrimer with Carbazole Dendrons: Nondoped Phosphorescent Organic Light‐Emitting Diodes<link href='#nss'/>显示文摘Debin Xia Bin Wang Bo Chen Shumeng Wang Baohua Zhang Junqiao Ding Lixiang Wang Xiabin Jing Fosong Wang 2014Angew Chem Int Ed2014,,4:1
12Customizable Ligand Exchange for Tailored Surface Property of Noble Metal Nanocrystals显示文摘It is highly desirable,while still challenging,to obtain noble metal nanocrystals with custom capping ligands,because their colloidal synthesis relies on specific capping ligands for the shape control while conventional ligand exchange processes suffer from“the strong replaces the weak”limitation,which greatly hinders their applications.Herein,we report a general and effective ligand exchange approach that can replace the native capping ligands of noble metal nanocrystals with virtually any type of ligands,producing flexibly tailored surface properties.The key is to use diethylamine with conveniently switchable binding affinity to the metal surface as an intermediate ligand.As a strong ligand,it in its original form can effectively remove the native ligands;while protonated,it loses its binding affinity and facilitates the adsorption of new ligands,especially weak ones,onto the metal surface.By this means,the irreversible order in the conventional ligand exchange processes could be overcome.The efficacy of the strategy is demonstrated by mutual exchange of the capping ligands among cetyltrimethylammonium,citrate,polyvinylpyrrolidone,and oleylamine.This novel strategy significantly expands our ability to manipulate the surface property of noble metal nanocrystals and extends their applicability to a wide range of fields,particularly biomedical applications.Qikui Fan Hao Yang Juan Ge Shumeng Zhang Zhaojun Liu Bo Lei Tao Cheng Youyong Li Yadong Yin Chuanbo Gao 2020Research2020,,1:1
13Dual inhibition of glycolysis and oxidative phosphorylation by aptamer-based artificial enzyme for synergistic cancer therapy显示文摘Dual inhibition of glycolysis and oxidative phosphorylation(OXPHOS)can break the metabolic plasticity of cancer cells to inhibit most energy supply and lead to effective cancer therapy.However,the pharmacokinetic difference among drugs hinders these two inhibitions to realize a uniform temporal and spatial distribution.Herein,we report an aptamer-based artificial enzyme for simultaneous dual inhibition of glycolysis and OXPHOS,which is constructed by arginine aptamer modified carbon-dots-doped graphitic carbon nitride(AptCCN).AptCCN can circularly capture intracellular arginine attribute to the specific binding ability of arginine aptamers to arginine,and further catalyze the oxidation of enriched arginine to nitric oxide(NO)under red light irradiation.In vitro and in vivo experiments showed that arginine depletion and NO stress could inhibit glycolysis and OXPHOS,leading to energy blockage and apoptosis of cancer cells.The presented aptamer-based artificial enzyme strategy provides a new path for cell pathway regulation and synergistic cancer therapy.Xiao Fang Meng Yuan Junduan Dai Qianying Lin Yuhong Lin Wenli Wang Yifan Jiang Haihui Wang Fang Zhao Junye Wu Shumeng Bai Chunhua Lu Huanghao Yang 2022Nano Research2022,15,7:0
14Boron-, Sulfur- and Nitrogen-Doped Tridecacyclic Aromatic Emitters with Multiple Resonance Effect for Narrowband Red Emission显示文摘Two novel boron(B),sulfur(S),nitrogen(N)-doped polycyclic aromatic hydrocarbon multiple resonance emitters(DBNS and DBNS-tBu)are designed and synthesized for narrowband red emission by embedding two pairs of S and N atoms and two B atoms in para-positions of central benzene rings within a tridecacyclic aromatic skeleton to form donor-π-donor(D-π-D)and acceptor-π-acceptor(A-π-A)structures,which not only exhibit emission maximum at 641 nm with small full width at half maximum of 39 nm,but also combine high photoluminescent quantum efficiency(85%)and rapid reverse intersystem crossing(kRISC=2.2×10^(5) s^(−1)).Yinuo Wang Kaiyuan Zhang Fan Chen xingdong Wang Qingqing Yang Shumeng Wang Shiyang Shao Lixiang Wang 2022Chinese Journal of Chemistry2022,40,22:0
15Chromodomain protein CDYL is required for transmission/restoration of repressive histone marks显示文摘象通过代的压抑的 histone 修正那样的 epigenetic 信息的忠诚传播或恢复为房间身份的维护是批评的。我们这里报导那 chromodomain 象 Y 一样蛋白质(CDYL ) ,包含 chromodomain 抄写 corepressor,身体上与染色质集会因素 1 被联系(CAF-1 ) 并且 replicative helicase 看建筑群。我们证明 CDYL 衔接 CAF-1 和看,便于在 DNA 复制期间的 histone 转移和免职。我们证明到复制的 CDYL 成员修改 histone 酶 G9a, SETDB1,和 EZH2 分叉,导致最新扔的 histone H3 上的 H3K9me2/3 和 H3K27me2/3 的增加。显著地, CDYL 的弄空阻碍早 S 阶段前进并且敏化房间到 DNA 损坏。我们的数据显示 CDYL 在压抑的 histone 标记的传播 / 恢复起一个重要作用,从而为房间身份的维护保存 epigenetic 风景。Yongqing Liu Shumeng Liu Shuai Yuan Huajing Yu Yu Zhang Xiaohan Yang Guojia Xie Zhe Chen Wanjin Li Bosen Xu Luyang Sun Yongfeng Shang Jing Liang 2017Journal of Molecular Cell Biology2017,9,3:0
16Metal complexes induced ferroptosis for anticancer therapy显示文摘Metal complexes for anti-tumor treatment have been developed rapidly in recent decades since the application of cisplatin in clinics.However,some tumor cells are resistant to apoptosis and not sensitive to metallodrugs that function through the apoptotic pathway.Recently,metal complexes have been reported to cause ferropto-sis against tumor cells,which offers new opportunities for anticancer therapy.In this perspective,ferroptosis-inducing metal complexes and their working mechanisms are introduced,while the challenges and opportunities are also discussed.Shumeng Li Hao Yuan Yuncong Chen Zijian Guo 2023Fundamental Research2023,3,4:0
17The existence of a nonclassical TCA cycle in the nucleus that wires the metabolic-epigenetic circuitry显示文摘The scope and variety of the metabolic intermediates from the mitochondrial tricarboxylic acid(TCA)cycle that are engaged in epigenetic regulation of the chromatin function in the nucleus raise an outstanding question about how timely and precise supply/consumption of these metabolites is achieved in the nucleus.We report here the identification of a nonclassical TCA cycle in the nucleus(nTCA cycle).We found that all the TCA cycle-associated enzymes including citrate synthase(CS),aconitase 2(ACO2),isocitrate dehydrogenase 3(IDH3),oxoglutarate dehydrogenase(OGDH),succinyl-CoA synthetase(SCS),fumarate hydratase(FH),and malate dehydrogenase 2(MDH2),except for succinate dehydrogenase(SDH),a component of electron transport chain for generating ATP,exist in the nucleus.We showed that these nuclear enzymes catalyze an incomplete TCA cycle similar to that found in cyanobacteria.We propose that the nTCA cycle is implemented mainly to generate/consume metabolic intermediates,not for energy production.We demonstrated that the nTCA cycle is intrinsically linked to chromatin dynamics and transcription regulation.Together,our study uncovers the existence of a nonclassical TCA cycle in the nucleus that links the metabolic pathway to epigenetic regulation.Xujun Liu Wenzhe Si Lin He Jianguo Yang Yani Peng Jie Ren Xiaoping Liu Tong Jin Huajing Yu Zihan Zhang Xiao Cheng Wenting Zhang Lu Xia Yunchao Huang Yue Wang Shumeng Liu Lin Shan Yu Zhang Xiaohan Yang Haixia Li Jing Liang Luyang Sun Yongfeng Shang 2021Signal Transduction and Targeted Therapy2021,6,12:0
18Structural insights into photosynthetic cyclic electron transport显示文摘During photosynthesis,light energy is utilized to drive sophisticated biochemical chains of electron transfers,converting solar energy into chemical energy that feeds most life on earth.Cyclic electron transfer/flow(CET/CEF)plays an essential role in efficient photosynthesis,as it balances the ATP/NADPH ratio required in various regulatory and metabolic pathways.Photosystem I,cytochrome b6f,and NADH dehydrogenase(NDH)are large multisubunit protein complexes embedded in the thylakoid membrane of the chloroplast and key players in NDH-dependent CEF pathway.Furthermore,small mobile electron carriers serve as shuttles for electrons between these membrane protein complexes.Efficient electron transfer requires transient interactions between these electron donors and acceptors.Structural biology has been a powerful tool to advance our knowledge of this important biological process.A number of structures of the membrane-embedded complexes,soluble electron carrier proteins,and transient complexes composed of both have now been determined.These structural data reveal detailed interacting patterns of these electron donor-acceptor pairs,thus allowing us to visualize the different parts of the electron transfer process.This review summarizes the current state of structural knowledge of three membrane complexes and their interaction patterns with mobile electron carrier proteins.Shumeng Zhang Baohua Zou Peng Cao Xiaodong Su Fen Xie Xiaowei Pan Mei Li 2023Molecular Plant2023,16,1:0
19Investigating the crucial roles of aliphatic tails in disulfide bond-linked docetaxel prodrug nanoassemblies显示文摘Disulfide bond-bridging strategy has been extensively utilized to construct tumor specificity-responsive aliphatic prodrug nanoparticles(PNPs) for precise cancer therapy. Yet, there is no research shedding light on the impacts of the saturation and cis-trans configuration of aliphatic tails on the self-assembly capacity of disulfide bond-linked prodrugs and the in vivo delivery fate of PNPs. Herein, five disulfide bond-linked docetaxelfatty acid prodrugs are designed and synthesized by using stearic acid, elaidic acid, oleic acid, linoleic acid and linolenic acid as the aliphatic tails, respectively. Interestingly, the cistrans configuration of aliphatic tails significantly influences the self-assembly features of prodrugs, and elaidic acid-linked prodrug with a trans double bond show poor self-assembly capacity. Although the aliphatic tails have almost no effect on the redox-sensitive drug release and cytotoxicity, different aliphatic tails significantly influence the chemical stability of prodrugs and the colloidal stability of PNPs, thus affecting the in vivo pharmacokinetics, biodistribution and antitumor efficacy of PNPs. Our findings illustrate how aliphatic tails affect the assembly characteristic of disulfide bond-linked aliphatic prodrugs and the in vivo delivery fate of PNPs, and thus provide theoretical basis for future development of disulfide bond-bridged aliphatic prodrugs.Yuequan Wang Cong Luo Shuang Zhou Xinhui Wang Xuanbo Zhang Shumeng Li Shenwu Zhang Shuo Wang Bingjun Sun Zhonggui He Jin Sun 2021Asian Journal of Pharmaceutical Sciences2021,16,5:0
20Intercalated MXene-based layered composites:Preparation and application显示文摘Combining high conductivity,hydrophilicity and excellent electrochemical perfo rmance in one,MXe nes have attracted increasing attention since their inception.However,easy to stack caused by the van der Waals’force between the layers limits their practical application.Fortunately,intercalating other substances between layers of MXe nes and getting intercalated MXene-based layered composites(IMLCs)with open structure can improve their physical and chemical properties effectively.Larger available surface helps expose more active sites and enlarged layer spacing facilitates ion transport.In addition,other substances fixed in the interlayers by MXenes’two-dimensional confinement effect can produce synergistic effect and expand their applicable range greatly.This review is dedicated to summarizing the preparation methods and applications of IMLCs,emphasizing the advantages of them in the fields of energy storage,catalysis,sensors,electromagnetic interference(EMI)shielding and biomedicine.Furthermore,prospects and further developments in these gratifying fields are also commented.Shumeng Wu He Wang Li Li Meixia Guo Zhichong Qi Qingyou Zhang Yanmei Zhou 2020Chinese Chemical Letters2020,31,4:0
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