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| 1 | Dopant-Controlled Synthesis of Water-Soluble Hexagonal NaYF_(4) Nanorods with Efficient Upconversion Fluorescence for Multicolor Bioimaging显示文摘A novel strategy is proposed to directly synthesize water-soluble hexagonal NaYF4 nanorods by doping rare-earth ions with large ionic radius (such as La^(3+), Ce^(3+), Pr^(3+), Nd^(3+), Sm^(3+), Eu^(3+), and Gd^(3+)), and the dopant- controlled growth mechanism is studied. Based on the doping effect, we fabricated water-soluble hexagonal NaYF4:(Yb,Er)/La and NaYF4:(Yb,Er)/Ce nanorods, which exhibited much brighter upconversion fluorescence than the corresponding cubic forms. The sizes of the nanorods can be adjusted over a broad range by changing the dopant concentration and reaction time. Furthermore, we successfully demonstrated a novel depth-sensitive multicolor bioimaging for in vivo use by employing the as-synthesized NaYF4:(Yb,Er)/La nanorods as probes. | Xuefeng Yu Min Li Mengyin Xie Liangdong Chen Yan Li Ququan Wang | 2010 | Nano Research2010,3,1: | 27 |
| 2 | Advances in the application of quantum dots in tumor markers investigation显示文摘Tumor markers have been of vital importance in cancer diagnosis,treatment and monitoring. However,the sen-sitivity of current tumor markers for early diagnosis is low,reducing the clinical usefulness of tumor markers. Quantum dots are new fluorescent nanoparticles with unique photophysical and chemical properties,thus having a great potential impact on the investigation of cancer pathogenesis,early diagnosis,targeted therapy,prognosis and monitoring,when combined with tumor markers. The current research is focused on the detection of specific tumor markers or molecules based on tangible carriers such as cells and tissues. One of the most promising clinical applications would be to explore the potential of this highly sensitive labeling technique for the detecting and imagining tumor markers in serum and other body fluids,where some progresses have already been made recently. How to detect early cancer based solely on invisible carriers would be the next step of quantum dots bio-probes in clinical use,so as to develop a new detection technique with greater sensitivity,specificity,rapidity and availability. | Chuang Chen Liangdong Chen Zhiling Zhang Yan Li | 2008 | The Chinese-German Journal of Clinical Oncology2008,7,3: | 6 |
| 3 | Effect of Salinity on the Zooplankton Community in the Pearl River Estuary显示文摘Understanding the relationship between the zooplankton distribution and salinity may provide key information to understand ecosystem function under the condition of a global mean sea level rise caused by global climate change.However,little is known about how increasing salinity level will affect the entire zooplankton community on a large scale.Here we completed 1 year of field investigations on the Pearl River Estuary and analyzed the distribution and structure of the zooplankton community.A total of 68 zooplankton species were identified during the survey.The number and diversity(richness,evenness,Shannon index,and Simpson’s index)of the zooplankton species decreased as salinity increased from 0.10 to 21.26.Salinity negatively affected the abundances of rotifers,cladocerans,and total zooplankton,while it had little effect on copepod abundance.Some salt-tolerant species,such as Keratella tropica,Polyarthra vulgaris,and Paracalanus crassirostris,survived at high-salinity sites.A pattern was observed at all sites:the peak in copepod abundance always occurred when rotifers were abundant(sites S1 and S2)or after rotifer abundance reached a maximum level(sites S3,S4,and S5).In general,salinity was the most important environmental factor shaping zooplankton biodiversity and abundance.This study provides insight into potential biodiversity and structure of the zooplankton community in response to salinity change. | YUAN Danni CHEN Liangdong LUAN Leilei WANG Qing YANG Yufeng | 2020 | Journal of Ocean University of China2020,19,6: | 5 |
| 4 | The electrolyte comprising more robust water and superhalides transforms Zn-metal anode reversibly and dendrite-free显示文摘A great challenge for all aqueous batteries,including Zn-metal batteries,is the parasitic hydrogen evolution reaction on the low-potential anode.Herein,we report the formula of a highly concentrated aqueous electrolyte that mitigates hydrogen evolution by transforming water molecules more inert.The electrolyte comprises primarily ZnCl_(2) and LiCl as an additive,both of which are inexpensive salts.The O-H covalent bonds in water get strengthened in a chemical environment that has fewer hydrogen bonding interactions and a greater number of Zn-Cl superhalides,as suggested by integrated characterization and simulation.As a result,the average Coulombic efficiency of zincmetal anode is raised to an unprecedented>99.7%at 1mA cm^(−2).In the new electrolyte,the plating/stripping processes leave the zinc-metal anode dendrite-free,and the zinc-metal anode delivers stable plating/stripping cycles for 4000 hours with an areal capacity of 4 mAh cm^(−2) at 2mA cm^(−2).Furthermore,the high Coulombic efficiency of zinc-metal anode in the ZnCl_(2)-LiCl mixture electrolyte is demonstrated in full cells with a limited anode.The V_(2)O_(5)·H_(2)O||Zn full cell with an N/P mass ratio of 1.2 delivers a stable life of more than 2500 cycles,and the LiMn_(2)O_(4)||Zn hybrid cell with an N/P mass ratio of 0.6 exhibits 1500 cycles in its stable life. | Chong Zhang Woochul Shin Liangdong Zhu Cheng Chen Joerg C.Neuefeind Yunkai Xu Sarah I.Allec Cong Liu Zhixuan Wei Aigerim Daniyar Jia‐Xing Jiang Chong Fang P.Alex Greaney Xiulei Ji | 2021 | Carbon Energy2021,3,2: | 3 |
| 5 | Dimericbiscognienynes B and C: New diisoprenyl-cyclohexene-type meroterpenoid dimers from Biscogniauxia sp.显示文摘Dimericbiscognienynes B and C(1 and 2), two new diisoprenyl-cyclohexene-type meroterpenoid dimers,were isolated from Biscogniauxia sp. 71-10-1-1. Their structures, including the absolute configurations,were determined by spectroscopic analyses and ECD experiments. Meroterpenoids are special natural products that originate from mixed terpenoid-nonterpenoid pathway. As a member of meroterpenoid family, diisoprenyl-cyclohexene/ane-type meroterpenoids composed of two isoprenyl chains(C5 unit)and a cyclohexene/ane moiety(C6 unit), featuring diverse skeleton structures with wide range of bioactivities. In these reported diisoprenyl-cyclohexene/ane-type meroterpenoids, only three dimers were identified. The discovery of the two new dimers added members of this rare class of meroterpenoids. | Huan Zhao Meizhi Wang Guodong Chen Dan Hu Enqing Li Yibo Qu Libing Zhou Liangdong Guo Xinsheng Yao Hao Gao | 2019 | Chinese Chemical Letters2019,30,1: | 3 |
| 6 | Recent development of ceria-based (nano) composite materials for low temperature ceramic fuel cells and electrolyte-free fuel cells显示文摘 | Liangdong Fan Chengyang Wang Mingming Chen | 2013 | Journal of Power Sources2013,1,234: | 1 |
| 7 | Tripodalsporormielones A-C,unprecedented cage-like polyketides with complex polyvdent bridged and fused ring systems显示文摘A chemical investigation on Sporormiella sp.led to the isolation and structural elucidation of tripodalsporormielones Ae C(1-3),a new class of polyketide possessing unprecedented cage-like skeletons with polyvdent bridged and fused ring systems.These polyketides with cage-like skeletons were characterized as a high non-protonated carbon-containing system,which resulted in few HMBC correlations observed and made the accurate structures hard to be obtained by NMR.Especially,some signals of non-protonated sp;carbons are weak and even unobservable in compound 1.In order to establish the structure of 1,the calculated NMR with DP4 evaluation was applied to determine the structure from the plausible structure candidates obtained from the detailed NMR analysis.Based on NMR experiments and calculated NMR,the structures of isolated compounds were established and confirmed by X-ray technology.Through chiral isolation,the optically pure enantiomers of 1 and 3 were obtained,and their absolute configurations were determined based on ECD quantum chemical calculation.Based on the isolated compounds and our previous work,1-3 would be derived from 3-methylorcinaldehyde,and their plausible biosynthetic mechanism was proposed.Furthermore,1 exhibited obvious short-term memory improvement activity on an Alzheimer’s disease fly model. | Guodong Chen Bingxin Zhao Meijuan Huang Jia Tang Yanbing Li Liangdong Guo Rongrong He Dan Hu Xinsheng Yao Hao Gao | 2021 | Acta Pharmaceutica Sinica B2021,11,11: | 1 |
| 8 | Secreted phosphoprotein 1 promotes angiogenesis of glioblastoma through upregulating PSMA expression via transcription factor HIF1α显示文摘Glioblastoma multiforme(GBM)is a highly vascularized malignant brain tumor.Our previous study showed that prostate-specific membrane antigen(PSMA)promotes angiogenesis of GBM.However,the specific mechanism underlying GBM-induced PSMA upregulation remains unclear.In this study,we demonstrate that the GBM-secreted cytokine phosphoprotein 1(SPP1)can regulate the expression of PSMA in human umbilical vein endothelial cells(HUVECs).Our mechanistic study further reveals that SPP1 regulates the expression of PSMA through the transcription factor HIF1α.Moreover,SPP1 promotes HUVEC migration and tube formation.In addition,HIF1α knockdown reduces the expression of PSMA in HUVECs and blocks the ability of SPP1 to promote HUVEC migration and tube formation.We further confirm that SPP1 is abundantly expressed in GBM,is associated with poor prognosis,and has high clinical diagnostic value with considerable sensitivity and specificity.Collectively,our findings identify that the GBM-secreted cytokine SPP1 upregulates PSMA expression in endothelial cells via the transcription factor HIF1α,providing insight into the angiogenic process and promising candidates for targeted GBM therapy. | Wenjing Tu Hui Zheng Liangdong Li Changshuai Zhou Mingtao Feng Lei Chen Deheng Li Xin Chen Bin Hao Huaping Sun Yiqun Cao Yang Gao | 2023 | Acta Biochimica et Biophysica Sinica2023,55,3: | 0 |
| 9 | Enhanced cathodic activity by tantalum inclusion at B-site of La_(0.6)Sr_(0.4)Co_(0.4)Fe_(0.6)O_(3)based on structural property tailored via camphor-assisted solid-state reaction显示文摘Lanthanum strontium cobalt ferrite(LSCF)is an appreciable cathode material for solid oxide fuel cells(SOFCs),and it has been widely investigated,owing to its excellent thermal and chemical stability.However,its poor oxygen reduction reaction(ORR)activity,particularly at a temperature of≤800℃,causes setbacks in achieving a peak power density of>1.0 W·cm^(-2),limiting its application in the commercialization of SOFCs.To improve the ORR of LSCF,doping strategies have been found useful.Herein,the porous tantalum-doped LSCF materials(La_(0.6)Sr_(0.4)Co_(0.4)Fe_(0.5)7Ta_(0.03)O_(3)(LSCFT-0),La_(0.6)Sr_(0.4)Co_(0.4)Fe_(0.5)4Ta0.06O_(3),and La_(0.6)Sr_(0.4)Co_(0.4)Fe_(0.5)Ta0.1O_(3))are prepared via camphor-assisted solid-state reaction(CSSR).The LSCFT-0 material exhibits promising ORR with area-specific resistance(ASR)of 1.260,_(0.5)80,0.260,0.100,and 0.06Ω·cm^(2)at 600,650,700,750,and 800℃,respectively.The performance is about 2 times higher than that of undoped La_(0.6)Sr_(0.4)Co_(0.4)Fe_(0.6)O_(3)with the ASR of 2.515,1.191,_(0.5)96,0.320,and 0.181Ω·cm^(2)from the lowest to the highest temperature.Through material characterization,it was found that the incorporated Ta occupied the B-site of the material,leading to the enhancement of the ORR activity.With the use of LSCFT-0 as the cathode material for anode-supported single-cell,the power density of>1.0 W·cm^(-2)was obtained at a temperature<800℃.The results indicate that the CSSR-derived LSCFT is a promising cathode material for SOFCs. | Dingyu XIONG Sefiu Abolaji RASAKI Yangpu LI Liangdong FAN Changyong LIU Zhangwei CHEN | 2022 | Journal of Advanced Ceramics2022,11,8: | 0 |