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| 1 | Wet-chemistry synthesis of cobalt carbide nanoparticles as highly active and stable electrocatalyst for hydrogen evolution reaction显示文摘转变金属碳化物(TMC ) nanomaterials 正在答应选择到磅,并且广泛地为电气化学的氢进化反应被用作异构的 electrocatalysts (她的) 。在这个工作,综合的导致溴化物的湿化学的策略公司 2 C nanoparticles (NP ) 被开发。如此的 NP 展出了高 electrocatalytic 活动(= 为 j = 的 181 mV 10 | Siwei Li Ce Yang Zhen Yin Hanjun Yang Yifu Chen Lili Lin Mengzhu Li Weizhen Li Gang HU Ding Ma | 2017 | Nano Research2017,10,4: | 7 |
| 2 | Expression of NAC1 up-stream regulatory region and its relationship to the lateral root initiation induced by gibberellins and auxins显示文摘A 1050 bp up-stream regulatory fragment of the transcription factor gene NAC1 in Arabidopsis thaliana was isolated using polymerase chain reaction(PCR)based techniques.The fragment was used to substitute the 35S promoter of the pBI121 plasmid to construct a β-glucuronidase gene(GUS)expression system.The construct was introduced into tobacco(Nico- tiana tabaccum)plants by the Agrobacterium-mediated transferring method.GUS expression pattern was studied by using the transgenic lines.The results showed that the GUS driven by the NAC1 up-stream regulatory region was specifically expressed in the root meristem region,basal areas of the lateral root primordium and the lateral roots.The GUS expression was induced by 3-indolebutyric acid (IBA)and gibberellins(GA3 and GA4+7).The results indicated that the up-stream regulatory fragment of NAC1 responded to plant hormones.The fragment might be involved in both auxins and gibberel- lins signaling in promoting the development of lateral roots. | WANG Youhua 1 ,DUAN Liusheng 1 ,LU Mengzhu 2 ,LI Zhaohu 1 ,WANG Minjie 2 &ZHAI Zhixi 1 1.State Key Laboratory of Plant Physiology and Biochemistry,Department of Agronomy,College of Agronomy and Biotech- nology,China Agricultural University,Beijing 100094,China 2.Forestry Institute,Chinese Academy of Forestry,Beijing 100091,China | 2006 | Science China(Life Sciences)2006,49,5: | 5 |
| 3 | Isolation and identification of novel casein-derived bioactive peptides and potential functions in fermented casein with Lactobacillus helveticus显示文摘The present study here establishes a complete and effective method for isolating,purifying and identifying extracellular and intracellular peptides,and also describes the characters and bioactivities of peptides from fermented casein with Lactobacillus helveticus.Intracellular peptides are much larger in quantity and more complex in composition than extracellular peptides,between which the correlation reveals proteolytic and metabolic mechanisms.In addition,totally 241 different peptide sequences were identified by Nano LC–MS/MS from casein(212)and Lactobacillus helveticus proteins(29).These casein-derived peptides mostly originated from-casein,followed byS1-casein,-casein,andS2-casein,and came from extracell(69)and intracell(143),in which common peptides have a total of 27.Forty-four of the identified peptides were previously described as bioactive,including angiotensinconverting enzyme(ACE)-inhibitory,antioxidant,immunomodulating,antimicrobial,DPP-IV inhibitory,antiamnesic and anticancer effects and so on.Thirteen peptides with the potential of some biological activities are obtained,which were described in previous studies.A total of 47 novel peptides of 5 to 26 amino acids that were not disclosed were obtained.The new sources of natural bioactive peptides may have the very high application value as potential new peptide drugs for treatment human diseases.The product peptide DELQDKIHPF found in both extracell and intracell was quantitatively analyzed using the MRM mode of UPLC-U3Q,23.1 and 9.76 ng/mL,respectively.The quantitative analysis of the potential bioactive peptide may also advance the production of peptide products in the future. | Mengzhu Fan Tingting Guo Wanru Li Jing Chen Fushuo Li Chao Wang Yi Shi David Xi-an Li Shaohui Zhang | 2019 | Food Science and Human Wellness2019,8,2: | 5 |
| 4 | Highly efficient K-Fe/C catalysts derived from metal-organic frameworks towards ammonia synthesis显示文摘Fe-based catalysts have been discovered as the best elementary metal-based heterogeneous catalysts for the ammonia synthesis in industrial application during the last century.Herein,a novel and scalable strategy is developed to prepare the K-promoted Fe/C catalyst with extremely high Fe loading (> 50 wt.%) through pyrolysis of the Fe-based metal-organic framework (MOF) xerogel.The obtained K-Fe/C catalysts exhibited superior activity and stability towards ammonia synthesis.The weight-specific reaction rate of Fe/C with K2O as promoter can achieve 12.4 mmol·g-1·h-1 at 350 ℃ and 30.4 mmol·g-1·h-1 at 400 ℃,approximately four and two times higher than that of the commercial fused-iron catalyst (3.4 mmol·g-1·h-1 at 350 ℃ and 16.7 mmol·g-1·h-1 at 400 ℃) under the same condition,respectively.The excellent performance of K-Fe/C can be ascribed to the inherited structure derived from the metal-organic frame precursors and the promotion of potassium,which can modify the binding energy of reactant molecules on the Fe surface,transfer electrons to iron for effective activation of nitrogen,prevent agglomeration of Fe nanoparticle (NPs) and restrain side reaction of carbon matrix to methane. | Pengqi Yan Wenhan Guo Zibin Liang Wei Meng Zhen Yin Siwei Li Mengzhu Li Mengtao Zhang Jie Yan Dequan Xiao Ruqiang Zou Ding Ma | 2019 | Nano Research2019,12,9: | 4 |
| 5 | The SOC1-like gene BoMADS50 is associated with the flowering of Bambusa oldhamii显示文摘Bamboo is known for its edible shoots and beautiful texture and has considerable economic and ornamental value.Unique among traditional flowering plants,many bamboo plants undergo extensive synchronized flowering followed by large-scale death,seriously affecting the productivity and application of bamboo forests.To date,the molecular mechanism of bamboo flowering characteristics has remained unknown.In this study,a SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1(SOC1)-like gene,BoMADS50,was identified from Bambusa oldhamii.BoMADS50 was highly expressed in mature leaves and the floral primordium formation period during B.oldhamii flowering and overexpression of BoMADS50 caused early fl owering in transgenic rice.Moreover,BoMADS50 could interact with APETALA1/FRUITFULL(AP1/FUL)-like proteins(BoMADS 14-1/2,BoMADS15-1/2)in vivo,and the expression of BoMADS50 was signi ficantly promoted by BoMADS14-1,further indicating a synergistic effect between BoMADS50 and BoAP1/FUL-like proteins in regulating B.oldhamii flowering.We also identi fi ed four additional transcripts of BoMADS50(BoMADS50-1/2/3/4)with different nucleotide variations.Although the protein-CDS were polymorphic,they had flowering activation functions similar to those of BoMADS50.Yeast one-hybrid and transient expression assays subsequently showed that both BoMADS50 and BoMADS50-1 bind to the promoter fragment of itself and the SHORT VEGETATIVE PHASE(SVP)-like gene BoSVP,but only BoMADS50-1 can positively induce their transcription.Therefore,nucleotide variations likely endow BoMADS50-1 with strong regulatory activity.Thus,BoMADS50 and BoMADS50-1/2/3/4 are probably important positive flowering regulators in B.oldhamii.Moreover,the functional conservatism and speci ficity of BoMADS50 and BoMADS50-1 might be related to the synchronized and sporadic flowering characteristics of B.oldhamii. | Dan Hou Ling Li Tengfei Ma Jialong Pei Zhongyu Zhao Mengzhu Lu Aimin Wu Xinchun Lin | 2021 | Horticulture Research2021,8,1: | 4 |
| 6 | PagGRF12a interacts with PagGIF1b to regulate secondary xylem development through modulating PagXND1a expression in Populus alba×P.glandulosa显示文摘Growth-regulating factors(GRFs)are important regulators of plant development and growth,but their possible roles in xylem development in woody plants remain unclear.Here,we report that Populus alba×Papulus glandulosa PagGRF12a negatively regulates xylem development in poplar.PagGRF12a is expressed in vascular tissues.Compared to non-transgenic control plants,transgenic poplar plants overexpressing PagGRF12a exhibited reduced xylem width and plants with repressed expression of PagGRF12a exhibited increased xylem width.Xylem NAC domain 1(XND1)encodes a NAC domain transcription factor that regulates xylem development and transcriptional analyses revealed that PagXND1a is highly upregulated in PagGRF12a-overexpressing plants and downregulated in PagGRF12a-suppressed plants,indicating that PagGRF12a may regulate xylem development through PagXND1a.Transient transcriptional assays and chromatin immunoprecipitation-polymerase chain reaction assays confirmed that PagGRF12a directly upregulates PagXND1a.In addition,PagGRF12a interacts with the GRF-Interacting Factor(GIF)PagGIF1b,and this interaction enhances the effects of PagGRF12a on PagXND1a.Our results indicate that PagGRF12a inhibits xylem development by upregulating the expression of PagXND1a. | Jinnan Wang Houjun Zhou Yanqiu Zhao Cheng Jiang Jihong Li Fang Tang Yingli Liu Shutang Zhao Jianjun Hu Xueqin Song MengZhu Lu | 2021 | Journal of Integrative Plant Biology2021,63,10: | 3 |
| 7 | CDK7-YAP-LDHD axis promotes D-lactate elimination and ferroptosis defense to support cancer stem cell-like properties显示文摘Reprogrammed cellular metabolism is essential for maintaining cancer stem cells(CSCs)state.Here,we report that mitochondrial D-lactate catabolism is a necessary initiating oncogenic event during tumorigenesis of esophageal squamous cell carcinoma(ESCC).We discover that cyclin-dependent kinase 7(CDK7)phosphorylates nuclear Yes-associated protein 1(YAP)at S127 and S397 sites and enhances its transcription function,which promotes D-lactate dehydrogenase(LDHD)protein expression.Moreover,LDHD is enriched significantly in ESCC-CSCs rather than differentiated tumor cells and high LDHD status is connected with poor prognosis in ESCC patients.Mechanistically,the CDK7-YAP-LDHD axis helps ESCC-CSCs escape from ferroptosis induced by D-lactate and generates pyruvate to satisfy energetic demands for their elevated self-renewal potential.Hence,we conclude that esophageal CSCs adopt a D-lactate elimination and pyruvate accumulation mode dependent on CDK7-YAP-LDHD axis,which drives stemness-associated hallmarks of ESCC-CSCs.Reasonably,targeting metabolic checkpoints may serve as an effective strategy for ESCC therapy. | Mengzhu Lv Ying Gong Xuesong Liu Yan Wang Qingnan Wu Jie Chen Qingjie Min Dongyu Zhao Xianfeng Li Dongshao Chen Di Yang Danna Yeerken Rui Liu Jinting Li Weimin Zhang Qimin Zhan | 2023 | Signal Transduction and Targeted Therapy2023,8,9: | 1 |
| 8 | Expression characteristics of GFP driven by NAC1 promoter and its responses to auxin and gibberellin显示文摘在上游的 1050 bp 碎片在 Arabidopsis thaliana 的抄写因素基因 NAC1 的抄写开始地点被放大并且克隆进原生质标志 pRD420 构造一块草地在 NAC1 的控制下面的荧光灯的蛋白质(GFP ) 熔化系统倡导者。Plasmids 被调停 Agrobacterium 的方法介绍进烟草与 NAC1-GFP 的 NAC1-GFP 基因,和表示模式改革工厂并且是对植物生长素和赤霉素(GA ) 的回答被观察。GFP 被发现在根明确地积累,并且在植物生长素的治疗以后被检测, N-1-Naphthylphthalamic 酸(NPA,一个植物生长素对手) 或 GA3。NAC1 倡导者驾驶的 GFP 的表示不仅被植物生长素而且由气体导致,这被显示,建议 NAC1 调停了发信号的植物生长素并且煤气的发信号在侧面的根开发包含了。 | WANG Youhua DUAN Liusheng LU Mengzhu LI Zhaohu WANG Minjie ZHAI Zhixi | 2006 | Progress in Natural Science:Materials International2006,16,7: | 1 |
| 9 | R158Q and G212S,novel pathogenic compound heterozygous variants in SLC12A3 of Gitelman syndrome显示文摘The dysfunction of Na^(+)-Cl^(−)cotransporter(NCC)caused by mutations in solute carrier family12,member 3 gene(SLC12A3)primarily causes Gitelman syndrome(GS).In identifying the pathogenicity of R158Q and G212S variants of SLC12A3,we evaluated the pathogenicity by bioinformatic,expression,and localization analysis of two variants from a patient in our cohort.The prediction of mutant protein showed that p.R158Q and p.G212S could alter protein’s three-dimensional structure.Western blot showed a decrease of mutant Ncc.Immunofluorescence of the two mutations revealed a diffuse positive staining below the plasma membrane.Meanwhile,we conducted a compound heterozygous model—Ncc^(R156Q/G210S)mice corresponding to human NCC R158Q/G212S.Ncc^(R156Q/G210S)mice clearly exhibited typical GS features,including hypokalemia,hypomagnesemia,and increased fractional excretion of K^(+)and Mg^(2+)with a normal blood pressure level,which made Ncc^(R156Q/G210S)mice an optimal mouse model for further study of GS.A dramatic decrease and abnormal localization of the mutant Ncc in distal convoluted tubules contributed to the phenotype.The hydrochlorothiazide test showed a loss of function of mutant Ncc in Ncc^(R156Q/G210S)mice.These findings indicated that R158Q and G212S variants of SLC12A3 were pathogenic variants of GS. | Zongyue Li Huixiao Wu Shuoshuo Wei Moke Liu Yingzhou Shi Mengzhu Li Ning Wang Li Fang Bo Xiang Ling Gao Chao Xu Jiajun Zhao | 2022 | Frontiers of Medicine2022,16,6: | 1 |
| 10 | An improved draft genome sequence of hybrid Populus alba×Populus glandulosa显示文摘Populus alba × P.glandulosa clone 84 K,derived from South Korea,is widely cultivated in China and used as a model in the molecular research of woody plants because of hi gh gene transformation efficiency.Here,we combined63-fold coverage Illumina short reads and 126-fold coverage PacBio long reads to assemble the genome.Due to the hi gh heterozygosity level at 2.1% estimated by k-mer analysis,we exploited TrioCanu for genome assembly.The PacBio clean subreads of P.alba × P.glandulosa were separated into two parts according to the similarities,compared with the parental genomes of P.alba and P.glandulosa.The two parts of the subreads were assembled to two sets of subgenomes comprising subgenome A(405.31 Mb,from P.alba)and subgenome G(376.05 Mb,from P.glandulosa) with the contig N50 size of 5.43 Mb and 2.15 Mb,respectively.A high-quality P.alba × P.glandulosa genome assembly was obtained.The genome size was 781.36 Mb with the contig N50 size of 3.66 Mb and the longest contig was 19.47 Mb.In addition,a total of 176.95 Mb(43.7%),152.37 Mb(40.5%)of repetitive elements were identified and a total of 38,701 and 38,449 protein-coding genes were predicted in subgenomes A and G,respectively.For functional annotation,96.98% of subgenome A and 96.96% of subgenome G genes were annotated with public databases.This de novo assembled genome will facilitate systematic and comprehensive study,such as multi-omics analysis,in the model tree P.alba X P.glandulosa. | Xiong Huang Song Chen Xiaopeng Peng Eun-Kyung Bae Xinren Dai Guiming Liu Guanzheng Qu Jae-Heung Ko Hyoshin Lee Su Chen Quanzi Li Mengzhu Lu | 2021 | Journal of Forestry Research2021,32,4: | 1 |
| 11 | A telomere-to-telomere gap-free assembly of soybean genome显示文摘Dear Editor,Soybean(Glycine max),one of the world's most important crops,represents an indispensable source of edible oil and protein for both humans and livestock.The first soybean reference genome of the Williams 82 cultivar(Wm82)was assembled using a wholegenome shotgun approach integrated with physical and highdensity genetic maps in 2010(Schmutz et al.,2010).In addition to the first reference genome,de novo genome assemblies have been released recently for dozens of cultivated soybean accessions with the application of long-read sequencing technology(Li et al.,2014;Shen et al.,2018;Liu et al.,2020).Although those assemblies provide valuable resources for functional genomics and molecular breeding,there are still a number of unresolved gaps that impede the exploration of complex genomic regions such as centromeres and telomeres。 | Longfei Wang Mengzhu Zhang Mengna Li Xinyu Jiang Wu Jiao Qingxin Song | 2023 | Molecular Plant2023,16,11: | 1 |
| 12 | Enriched gestation activates the IGF pathway to evoke embryo-adult benefits to prevent Alzheimer’s disease显示文摘Background:Building brain reserves before dementia onset could represent a promising strategy to prevent Alzheimer’s disease(AD),while how to initiate early cognitive stimulation is unclear.Given that the immature brain is more sensitive to environmental stimuli and that brain dynamics decrease with ageing,we reasoned that it would be effective to initiate cognitive stimulation against AD as early as the fetal period.Methods:After conception,maternal AD transgenic mice(3×Tg AD)were exposed to gestational environment enrichment(GEE)until the day of delivery.The cognitive capacity of the offspring was assessed by the Morris water maze and contextual fear-conditioning tests when the offspring were raised in a standard environment to 7 months of age.Western blotting,immunohistochemistry,real-time PCR,immunoprecipitation,chromatin immunoprecipitation(ChIP)assay,electrophysiology,Golgi staining,activity assays and sandwich ELISA were employed to gain insight into the mechanisms underlying the beneficial effects of GEE on embryos and 7–10-month-old adult offspring.Results:We found that GEE markedly preserved synaptic plasticity and memory capacity with amelioration of hallmark pathologies in 7–10-m-old AD offspring.The beneficial effects of GEE were accompanied by global histone hyperacetylation,including those at bdnf promoter-binding regions,with robust BDNF mRNA and protein expression in both embryo and progeny hippocampus.GEE increased insulin-like growth factor 1(IGF1)and activated its receptor(IGF1R),which phosphorylates Ca^(2+)/calmodulin-dependent kinase IV(CaMKIV)at tyrosine sites and triggers its nuclear translocation,subsequently upregulating histone acetyltransferase(HAT)and BDNF transcription.The upregulation of IGF1 mimicked the effects of GEE,while IGF1R or HAT inhibition during pregnancy abolished the GEE-induced CaMKIV-dependent histone hyperacetylation and BDNF upregulation.Conclusions:These findings suggest that activation of IGF1R/CaMKIV/HAT/BDNF signaling by gestational environment enrichment may serve as a promising strategy to delay AD progression. | Enjie Liu Qiuzhi Zhou Ao-Ji Xie Mengzhu Li Shujuan Zhang Hezhou Huang Zhenyu Liuyang Yali Wang Bingjin Liu Xiaoguang Li Dongsheng Sun Yuping Wei Xiaochuan Wang Qun Wang Dan Ke Xifei Yang Ying Yang Jian-Zhi Wang | 2019 | Translational Neurodegeneration2019,8,1: | 1 |
| 13 | Design,synthesis,and evaluation of PD-L1 degraders to enhance T cell killing activity against melanoma显示文摘Inhibitor targeting immune checkpoint is a promising new anticancer therapy.Blocking the interaction between PD-1 and PD-L1 can reverse the immunosuppression state and improve the lethality of immune cells to tumor cells.Here,we report PROTAC-based PD-L1 degraders to enhance T cell killing activity against melanoma.Four series of PD-L1 degraders were designed and synthesized to VHL,CRBN,MDM2 or c IAP E3 ligase system,in which CRBN-ligand-based compound BMS-37-C3 was identified as the most active PROTAC molecule.BMS-37-C3 also significantly enhanced the killing ability of T cells in a co-culture model of A375 and T cells.Furthermore,western blot data and flow cytometry demonstrated that BMS-37-C3 could reduce the protein levels of PD-L1 in dose and time dependent manner,which may provide a new therapeutic method for tumor immunotherapy. | Yang Liu Mengzhu Zheng Zhilu Ma Yirong Zhou Junfeng Huo Wenbo Zhang Yu Liu Yuanyuan Guo Xuechen Zhou Hua Li Lixia Chen | 2023 | Chinese Chemical Letters2023,34,5: | 0 |
| 14 | Fine-tuning brassinosteroid biosynthesis via 3′UTR-dependent decay of CPD mRNA modulates wood formation in Populus显示文摘Brassinosteroids(BRs)are plant hormones that regulate wood formation in trees.Currently,little is known about the post-transcriptional regulation of BR synthesis.Here,we show that during wood formation,fine-tuning BR synthesis requires 3′UTR-dependent decay of Populus CONSTITUTIVE PHOTOMORPHOGENIC DWARF 1(PdCPD1).Overexpression of PdCPD1 or its 3′UTR fragment resulted in a significant increase of BR levels and inhibited secondary growth.In contrast,transgenic poplars repressing PdCPD13′UTR expression displayed moderate levels of BR and promoted wood formation.We show that the Populus GLYCINE-RICH RNA-BINDING PROTEIN1(PdGRP1)directly binds to a GU-rich element in 3′UTR of Pd CPD1,leading to its mRNA decay.We thus provide a post-transcriptional mechanism underlying BRs synthesis during wood formation,which may be useful for genetic manipulation of wood biomass in trees. | Dian Wang Xiaoning Hao Li Xu Mengyan Zhao Congpeng Wang Xihao Yu Yingzhen Kong Mengzhu Lu Gongke Zhou Guohua Chai Xianfeng Tang | 2023 | Journal of Integrative Plant Biology2023,65,8: | 0 |
| 15 | Construction of Highly Efficient Photocatalyst with Core-Shell Au@Ag/C@SiO_(2)Hybrid Structure towards Visible-Light-Driven Photocatalytic Reduction显示文摘Main observation and conclusion Herein,we report a rational construction of Au@Ag/C@SiO_(2)system with Au@Ag core-shell nanoparticles(NPs)as a promising photocatalyst based on the plasmonic coupling effect for the first time towards the photoreduction of nitroaromatic compounds under visible light.The combination and elaborate construction of Au@Ag NPs,carbon microspheres and mesoporous SiO_(2)shell can endow this system with several outstanding features towards photocatalytic reaction.Firstly,the broadband light harvesting across ultraviolet-visible-near infrared(UV-vis-NIR)region can be achieved due to the comprehensive effect of surface plasmonic resonance(SPR)coupling model of Au and Ag,near-field scattering light of carbon microspheres and light reflecting effect of SiO_(2)shell,resulting in the production of more electrons for phororeduction reaction.Secondly,the carbon microspheres in Au@Ag/C@SiO_(2)system possess electron-rich property due to their strong electron-withdrawing ability,which can act as the Lewis acid and Lewis basic site,and promote the stepwise hydrogenation of nitrobenzene.Thirdly,Au@Ag/C@SiO_(2)exhibits excellent reusability because of the protection of SiO_(2)shell,which restricts metal NPs inside the spheres and protects them from aggregation and being lost during reaction process.Our present work demonstrates the significance of construction of hybrid nanostructures based on the plasmonic coupling effect,which can be a promising approach to design efficient photocatalyst towards organic synthesis under visible light. | Huiqin An Shunyuan Xiao Xiaohui Zhao Lifang Cao Ting Liu Mengzhu Li Bing Wang Zhen Yin | 2021 | Chinese Journal of Chemistry2021,39,10: | 0 |
| 16 | SARS-CoV-2:structure,host,virus source and pathogenesis显示文摘Cancer is a serious threat to human life and a big problem in clinical treatment.Some natural active substances extracted from Traditional Chinese Medicine can effectively inhibit the growth of cancer cells,which is a new direction for finding more effective anticancer drugs.Osthole is a natural coumarin compound extracted from Traditional Chinese Medicines such as Cnidium monnieri,Angelica pubescens and Peucedanum praeruptorum Dunn.It has significant inhibitory activity against a variety of cancers.This paper summarizes the anticancer effects and molecular mechanisms of osthole in the treatment of cancers in recent years in order to provide references for further research. | Mingxue Li Yueying Yang Yang Liu Mengzhu Zheng Dejuan Sun Hua Li Lixia Chen | 2021 | Asian Journal of Traditional Medicines2021,16,1: | 0 |
| 17 | Broadband and High-Temperature-Resistant Microwave Absorber Using Additively Manufactured Ceramic Substrate显示文摘This paper presents an approach to achieve broadband absorption and temperature resistance using ceramic sub-strates.A specially formulated slurry suitable for additive manufacturing technology was developed to fabricate ceramic substrates with lattice structures.The lattice structure not only reduces the weight of the absorber but also facilitates the broadening of the absorption bandwidth.The experimental results demonstrate that the pro-posed structure exhibits absorption rates exceeding 88%within the frequency range of 19.9-30.41 GHz,with a relative absorption bandwidth of 41.8%under normal incidence.Furthermore,the absorber’s performance was assessed under high temperatures of up to 200℃,revealing absorption spectra that closely match the initially measured spectrum.Additive-manufactured ceramic lattice structures present a promising avenue for designing multifunctional broadband microwave absorbers capable of withstanding elevated temperatures. | Baihong Chi Kuan Lu Pengfei Wang Mengzhu Li Yuanyuan Li Xinyu Geng Guangsheng Deng | 2023 | Chinese Journal of Mechanical Engineering(Additive Manufacturing Frontiers)2023,2,4: | 0 |
| 18 | Geoacoustic inversion for bottom parameters in a thermocline environment in the northern area of the South China Sea显示文摘Bottom acoustic parameters have important influence on the application of underwater acoustic propagation and source location.The acoustic parameters of the seabed in the northern of the South China Sea(SCS)were inversed using the experiment data from an acoustic experiment in 2015.Based on the comprehensive analysis of the influence of the sound speed fluctuation and the geoacoustic model on seabed inversion,the multi-parameter hybrid acoustic inversion scheme is improved by selecting the equivalent mean sound speed profile(SSP)and half-infinite liquid bottom model to save the inversion dimensions in the matched field processing(MFP)inversion.The inverted bottom sound speed and density are in good agreement with the core sampling measurements.The nonlinear empirical relationship of the attenuation coefficient with frequency is given out.The inversion results are meaningful to the sound propagation research and application in the northern area of the SCS. | LI Mengzhu LI Zhenglin Li Qianqian | 2020 | Chinese Journal of Acoustics2020,39,1: | 0 |
| 19 | 三阴性乳腺癌基因组与转录组全景图:亚型及治疗策略显示文摘文章简介三阴性乳腺癌(triple-negative breast cancer,TNBC)是雌激素受体、孕激素受体和HER-2均为阴性的一群乳腺癌,缺乏有效靶向治疗,预后差,是乳腺癌学界的世界性难题。近年的研究表明TNBC是一个异质性很强的群体,为更全面而深入地认识这类疾病,寻找精准治疗的突破口,研究团队全面分析了465例原发性三阴性乳腺癌(TNBC)队列的临床、基因组学和转录组学数据。 | Yi-Zhou Jiang Ding Ma Chen Suo Jinxiu Shi Mengzhu Xue Xin Hu Yi Xiao Ke-Da Yu Yi-Rong Liu Ying Yu Yuanting Zheng Xiangnan Li Chenhui Zhang Pengchen Hu Jing Zhang Qi Hua Jiyang Zhang Wanwan Hou Luyao Ren Ding Bao Bingying Li Jingcheng Yang Ling Yao Wen-Jia Zuo Shen Zhao Yue Gong Yi-Xing Ren Ya-Xin Zhao Yun-Song Yang Zhenmin Niu Zhi-Gang Cao Daniel G.Stover Claire Verschraegen Virginia Kaklamani Anneleen Daemen John R.Benson Kazuaki Takabe Fan Bai Da-Qiang Li 王鹏 石乐明 黄薇 邵志敏 | 2020 | 科学新闻2020,,2: | 0 |
| 20 | In-situ catalytic decomposition of emitted ammonia from municipal solid waste gasification by Ni–M bimetallic catalysts supported on sewage sludge-derived biochar显示文摘Gasification technology can effectively realize energy recovery from municipal solid waste(MSW)to reduce its negative impact on the environment.However,ammonia,as a pollutant derived from MSW gasification,needs to be treated because its emission is considered harmful to mankind.This work aims to decompose the NH3 pollutant from MSW gasification by an in-situ catalytic method.The MSW sample is composed of rice,paper,polystyrene granules,rubber gloves,textile and wood chips.Ni–M(M=Co,Fe,Zn)bimetallic catalysts supported on sewage sludge-derived biochar(SSC)were prepared by co-impregnation method and further characterized by X-ray diffraction,N2 isothermal adsorption,scanning electron microscopy,transmission electron microscopy and NH3 temperature programmed desorption.Prior to the experiments,the catalysts were first homogeneously mixed with the MSW sample,and then in-situ catalytic tests were conducted in a horizontal fixed-bed reactor.The effect of the second metal(Co,Fe,Zn)on the catalytic performance was compared to screen the best Ni-M dual.It was found that the Ni–Co/SSC catalyst had the best activity toward NH3 decomposition,whose decomposition rate reached 40.21%at 650℃.The best catalytic performance of Ni–Co/SSC can be explained by its smaller Ni particle size that facilitates the dispersion of active sites as well as the addition of Co reducing the energy barrier for the associative decomposition of NH species during the NH3 decomposition process.Besides,the activity of Ni–Co/SSC increased from 450℃to 700℃as the NH3 decomposition reaction was endothermic. | Xueyu Ding Yaji Huang Xinxin Dong Jiaqi Zhao Mengzhu Yu Xinqi Tian Jinlei Li Xuewei Zhang Yuxin Li Zekun Wei | 2023 | Waste Disposal and Sustainable Energy2023,5,2: | 0 |