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| 1 | Optical analysis of a hybrid solar concentrating Photovoltaic /Thermal (CPV/T) system with beam splitting technique显示文摘A novel hybrid solar concentrating Photovoltaic/Thermal (CPV/T) system with beam splitting technique is presented. In this system, a beam splitter is used to separate the concentrated solar radiation into two parts: one for the PV power generation and the other for thermal utility. The solar concentrator is a flat Fresnel-type concentrator with glass mirror reflectors. It can concentrate solar radiation onto solar cells with high uniformity, which is beneficial to improving the efficiency of solar cells. The thermal receiver is separated to the solar cells, and therefore, the thermal fluid can be heated to a relatively high temperature and does not affect the performance of solar cells. A dimensionless model was developed for the performance analysis of the concentrating system. The effects of the main parameters on the performance of the concentrator were analyzed. The beam splitter with coating materials Nb2O3 /SiO2 was designed by using the needle optimization technique, which can reflect about 71% of the undesired radiation for silicon cell(1.1m < 3m) to the thermal receiver for thermal utility. The performance of this CPV/T system was also theoretically analyzed. | HU Peng ZHANG Qian LIU Yang SHENG ChunChen CHENG XiaoFang CHEN ZeShao | 2013 | Science China(Technological Sciences)2013,56,6: | 10 |
| 2 | Complementation of Wild-Type and Drug-Resistant Hepatitis B Virus Genomes to Maintain Viral Replication and Rescue Virion Production under Nucleos(t)ide Analogs显示文摘As the open reading frames of hepatitis B virus(HBV)genomes are overlapping,resistance mutations(MTs)in HBV polymerase may result in stop codon MTs in hepatitis B surface proteins,which are usually detected as a mixed population with wild-type(WT)HBV.The question was raised how the coexistence of nucleos(t)ide analogs(NAs)resistance MTs and WT sequences affects HBV replication.In the present study,HBV genomes with frequently detected reverse transcriptase(RT)/surface truncation MTs,rtA181T/sW172^*,rtV191I/sW182^*and rtM204I/sW196^*,were phenotypically characterized alone or together with their WT counterparts in different ratios by transient transfection in the absence or presence of Nas.In the absence of Nas,RT/surface truncation MTs impaired the expression and secretion of HBV surface proteins,and had a dose-dependent negative effect on WT HBV virion secretion.However,in the presence of Nas,coexistence of MTs with WT maintained viral replication,and the presence of WT was able to rescue the production of MT HBV virions.Our findings reveal that complementation of WT and MT HBV genomes is highly effective under drug treatment. | Chunchen Wu Baolin Li Xiaoyong Zhang Kaitao Zhao Yingshan Chen Yifei Yuan Yan Liu Rongjuan Chen Dongping Xu Xinwen Chen Mengji Lu | 2019 | Virologica Sinica2019,34,4: | 4 |
| 3 | Poly-β-hydroxybutyrate alleviated diarrhea and colitis via Lactobacillus johnsonii biofilm-mediated maturation of sulfomucin显示文摘Maintainance of sulfomucin is a key end point in the treatment of diarrhea and inflammatory bowel disease(IBD).However,the mechanisms underlying the microbial sense to sulfomucin are poorly understood,and to date,there are no therapies targeting the secretion and maturation of sulfomucin in IBD.Herein,we biosynthesized poly-β-hydroxybutyrate(PHB)and found that PHB could alleviate inflammation caused by diarrhea and colitis by enhancing the differentiation of sulfomucin.Microbiota transplantation and clearance together demonstrate that PHB promoting sulfomucin is mediated by Lactobacillus johnsonii(L.johnsonii).Further studies revealed that PHB provides a favorable niche for L.johnsonii biofilm formation to resist disturbance and support its growth.L.johnsonii-biofilm alleviates colitis by regulating fucose residues to promote goblet cell differentiation and subsequent sulfomucin maturation.Importantly,PHB alleviates colitis by enhancing sulfomucin secretion and maturation in a L.johnsonii-dependent manner.PHB represents a class of guardians,acting as a safe probiotic-biofilm delivery system that significantly promotes probiotic proliferation.Altogether,this study adds weight to the possible role of probiotics and functional materials in the treatment of intestinal inflammation.The application of PHB and biofilm self-coating L.johnsonii carries high translational potential and may be of clinical relevance. | Ning Ma Pingting Guo Jingyu Chen Zengkai Qi Chunchen Liu Jiakun Shen Yiwei Sun Xiyue Chen Guo-Qiang Chen Xi Ma | 2023 | Science China(Life Sciences)2023,66,7: | 2 |
| 4 | All-Polymer Solar Cells and Photodetectors with Improved Stability Enabled by Terpolymers Containing Antioxidant Side Chains显示文摘It is of vital importance to improve the long-term and photostability of organic photovoltaics,including organic solar cells(OSCs)and organic photodetectors(OPDs),for their ultimate industrialization.Herein,two series of terpolymers featuring with an antioxidant butylated hydroxytoluene(BHT)-terminated side chain,PTzBI-EHp-BTBHTx and N2200-BTBHTx(x=0.05,0.1,0.2),are designed and synthesized.It was found that incorporating appropriate ratio of benzothiadiazole(BT)with BHT side chains on the conjugated backbone would induce negligible effect on the molecular weight,absorption spectra and energy levels of polymers,however,which would obviously enhance the photostability of these polymers.Consequently,all-polymer solar cells(all-PSCs)and photodetectors were fabricated,and the all-PSC based on PTzBI-EHp-BTBHT0.05:N2200 realized an optimal power conversion efficiency(PCE)approaching~10%,outperforming the device based on pristine PTzBI-EHp:N2200.Impressively,the all-PSCs based on BHT-featuring terpolymers displayed alleviated PCEs degradation under continuous irradiation for 300 h due to the improved morphological and photostability of active layers.The OPDs based on BHT-featuring terpolymers achieved a lower dark current at−0.1 bias,which could be stabilized even after irradiation over 400 h.This study provides a feasible approach to develop terpolymers with antioxidant efficacy for improving the lifetime of OSCs and OPDs. | Chunyang Zhang Ao Song Qiri Huang Yunhao Cao Zuiyi Zhong Youcai Liang Kai Zhang Chunchen Liu Fei Huang Yong Cao | 2023 | Nano-Micro Letters2023,15,9: | 1 |
| 5 | Amino acid substitutions at positions 122 and 145 of hepatitis b virus surface antigen (HBsAg) determine the antigenicity and immunogenicity of HBsAg and influence in vivo HBsAg clearance显示文摘 | Chunchen W Wanyu D Liu D | | 0,,08: | 1 |
| 6 | Microbial community coexisting with harmful alga Karenia mikimotoi and microbial control of algal bloom in laboratory显示文摘Algicidal bacteria have been frequently isolated from algal blooming areas.However,knowledge regarding the microbial communities coexisting with microalgae and their potential application in preventing harmful algal blooms(HABs)is limited.In this study,we investigated the composition of the microbial community coexisting with harmful alga Karenia mikimotoi and its responses to algal control via nutrient stimulation or by adding algicidal strain in microcosms.The microorganisms inhabiting the K.mikimotoi culture consisted of 24 identifi ed phyla,including dominant Proteobacteria(relative abundance 76.24%±7.28%)and Bacteroidetes(22.67%±8.32%).Rhodobacteraceae,Phaeodactylibacter,and Maritimibacter predominated during the algal cultivation.Both the added nutrient and fermentation broth of algicidal strain Pseudoalteromonas QF1 caused a massive death of K.mikimotoi and substantial changes in the coexisting microbial community,in which Rhodobacteraceae and Phaeodactylibacter signifi cantly decreased,while Halomonas and Alteromonas increased.Core operational taxonomic units(OTUs)analysis indicated that 13 OTUs belonging to Rhodobacteraceae,Maritimibacter,Marivita,Nisaea,Phaeodactylibacter,Citreicella,Halomonas,Alteromonas,Marinobacter,Muricauda,and Pseudoalteromonas dominated the changes of the microbial communities observed in the K.mikimotoi culture with or without treatments.Collectively,this study indicated that microbial community inhabiting K.mikimotoi culture includes potential algicidal bacteria,and improves our knowledge about microbial community succession during biocontrol of K.mikimotoi via nutrient stimulation or by adding isolated algicidal strains. | Li SUN Peike GAO Yu LI Chao WANG Ning DING Junfeng CHEN Yuhao SONG Chunchen LIU Lun SONG Renjun WANG | 2022 | Journal of Oceanology and Limnology2022,40,3: | 1 |
| 7 | Enhanced host immune responses in presence of HCV facilitate HBV clearance in coinfection显示文摘Hepatitis B virus(HBV)/Hepatitis C virus(HCV)coinfection is frequently observed because of the common infection routine.Despite the reciprocal inhibition exerted by HBV and HCV genomes,the coinfection of HBV and HCV is associated with more severe forms of liver diseases.However,the complexity of viral interference and underlying pathological mechanism is still unclarified.With the demonstration of absence of direct viral interplay,some in vitro studies suggest the indirect effects of viral-host interaction on viral dominance outcome.Here,we comprehensively investigated the viral replication and host immune responses which might mediate the interference between viruses in HBV/HCV coinfected Huh7-NTCP cells and immunocompetent HCV human receptors transgenic ICR mice.We found that presence of HCV significantly inhibited HBV replication in vitro and in vivo irrespective of the coinfection order,while HBV did not affect HCV replication.Pathological alteration was coincidently reproduced in coinfected mice.In addition to the participation of innate immune response,an involvement of HCV in up-regulating HBV-specific immune responses was described to facilitate HBV clearance.Our systems partially recapitulate HBV/HCV coinfection and unveil the uncharacterized adaptive anti-viral immune responses during coinfection,which renews the knowledge on the nature of indirect viral interaction during HBV/HCV coinfection. | Shuhui Liu Kaitao Zhao Xi Su Xiaoxiao Gao Yongxuan Yao Ranran Kong Yun Wang Chunchen Wu Mengji Lu Xinwen Chen Rongjuan Pei | 2022 | Virologica Sinica2022,37,3: | 1 |
| 8 | High brightness NIR-Ⅱ nanofluorophores based on fused-ring acceptor molecules显示文摘It is challenging to develop molecular fluorophores in the second near-infrared(NIR-Ⅱ)window with long wavelength emission and high brightness,which can improve the performance of biological imaging.Herein,we report a molecular engineering approach to afford NIR-Ⅱ fluorophores with these merits based on fused-ring acceptor(FRA)molecules.Dioctyl 3,4-propylenedioxy thiophene(PDOT-C8)is utilized as the bridging donor to replace 3-ethylhexyloxy thiophene(3-EHOT),leading to more than 20 times enhancement of brightness.The nanofluorophores(NFs)based on the optimized CPTIC-4F molecule exhibit an emission peak of 1,110 nm with a fluorescence quantum yield(QY)of 0.39%(QY of IR-26 is 0.050%in dichloroethane as reference)and peak absorption coefficient of 14.5 x 10^4 M^-1·cm^-1 in aqueous solutions,which are significantly higher than those of 3-EHOT based COTIC-4F NFs.It is found that PDOT-C8 can weaken intermolecular aggregation,enhance protection of molecular backbone from water,and decrease backbone distortion,beneficial for the high brightness.Compared with indocyanine green with same injection dose,CPTIC-4F NFs show 10 times higher signal-to-background ratio for whole body vessels imaging at 1,300 nm long pass filters. | Xingfu Zhu Chunchen Liu Zhubin Hu Haile Liu Jiang Wang Yang Wang Xinyuan Wang Rui Ma Xiaodong Zhang Haitao Sun Yongye Liang | 2020 | Nano Research2020,13,9: | 1 |
| 9 | Recent progress in side chain engineering of Y-series non-fullerene molecule and polymer acceptors显示文摘Organic solar cells(OSCs) have drawn considerable attention in the last decade due to the great potential of light weight,flexibility, and low-cost solution processing. Particularly, Y-series non-fullerene acceptors(NFAs) including small molecular acceptors(SMAs) and polymerized small molecular acceptors(PSMAs) have become research hot spots due to their excellent power conversion efficiency. Side chain engineering is crucial to adjust the solubility and crystallinity of NFAs, which will significantly affect the morphology of active layers and the efficiency of OSCs. However, the understanding of side chain engineering on NFAs is still limited and lacks a systematic review. This review aims to provide a brief summary of the recent developments in side chain engineering of NFAs, with a special focus on the design and application of Y-series SMAs and PSMAs for high-efficiency non-fullerene organic solar cells(NF-OSCs). In addition, the review also points out challenges and provides useful guidance regarding side chain regulation for Y-series NFAs. | Li Tian Chunchen Liu Fei Huang | 2024 | Science China Chemistry2024,67,3: | 0 |
| 10 | Furan Donor for NIR-II Molecular Fluorophores with Enhanced Bioimaging Performance显示文摘The second near-infrared(NIR-II,1,000 to 1,700 nm)molecular fluorophores containing donor–acceptor–donor conjugated backbone have attracted substantial attention due to their outstanding advantages,such as stable emission and facilely tuned photophysical properties.However,it is still challenging for them to simultaneously achieve high brightness and red-shifted absorption and emission.Herein,furan is adopted as the D unit to construct NIR-II fluorophores,demonstrating red shift of absorption,enhanced absorption coefficient,and fluorescent quantum yield when compared with the generally used thiophene counterparts.The high brightness and desirable pharmacokinetics of the optimized fluorophore,IR-FFCHP,endows improved performance for angiography and tumor-targeting imaging.Furthermore,dual-NIR-II imaging of tumor and sentinel lymph nodes(LNs)has been achieved with IR-FFCHP and PbS/CdS quantum dots,enabling the in vivo imaging navigated LN surgery in tumor-bearing mice.This work demonstrates the potential of furan for constructing bright NIR-II fluorophores for biological imaging. | Chunchen Liu Mengfei Li Huilong Ma Zhubin Hu Xinyuan Wang Rui Ma Yingying Jiang Haitao Sun Shoujun Zhu Yongye Liang | 2023 | Research2023,,3: | 0 |
| 11 | Bilayer nicorandil-loaded small-diameter vascular grafts improve endothelial cell function via PI3K/AKT/eNOS pathway显示文摘For the surgical treatment of cardiovascular disease(CVD),there is a clear and unmet need in developing small-diameter(diameter<6 mm)vascular grafts.In our previous work,sulfated silk fibroin(SF)was successfully fabricated as a potential candidate for preparing vascular grafts due to the great cytocompatibility and hemocompatibility.However,vascular graft with single layer is difficult to adapt to the complex internal environment.In this work,polycaprolactone(PCL)and sulfated SF were used to fabricate bilayer vascular graft(BLVG)to mimic the structure of natural blood vessels.To enhance the biological activity of BLVG,nicorandil(NIC),an FDA-approved drug with multi-bioactivity,was loaded in the BLVG to fabricate NIC-loaded BLVG.The morphology,chemical composition and mechanical properties of NIC-loaded BLVG were assessed.The results showed that the bilayer structure of NIC-loaded BLVG endowed the graft with a biphasic drug release behavior.The in vitro studies indicated that NIC-loaded BLVG could significantly increase the proliferation,migration and antioxidation capability of endothelial cells(ECs).Moreover,we found that the potential biological mechanism was the activation of PI3K/AKT/eNOS signaling pathway.Overall,the results effectively demonstrated that NIC-loaded BLVG had a promising in vitro performance as a functional small-diameter vascular graft. | Zheng Xing Chen Zhao Chunchen Zhang Yubo Fan Haifeng Liu | 2021 | Bio-Design and Manufacturing2021,4,1: | 0 |
| 12 | Highly efficient organic solar cells with improved stability enabled by ternary copolymers with antioxidant side chains显示文摘The stability of organic solar cells(OSCs)remains a major concern for their ultimate industrialization due to the photo,oxygen,and water susceptibility of organic photoactive materials.Usually,antioxidant additives are blended as radical scavengers into the active layer.However,it will induce the intrinsic morphology instability and adversely affect the efficiency and long-term stability.Herein,the antioxidant dibutylhydroxytoluene(BHT)group has been covalently linked onto the side chain of benzothiadiazole(BT)unit,and a series of ternary copolymers D18-Cl-BTBHTx(x=0,0.05,0.1,0.2)with varied ratio of BHT-containing side chains have been synthesized.It was found that the introduction of BHT side chains would have a negligible effect on the photophysical properties and electronic levels,and the D18-Cl-BTBHT0.05:Y6-based OSC achieved the highest power conversion efficiency(PCE)of 17.6%,which is higher than those based active layer blended with BHT additives.More importantly,the unencapsulated device based on D18-Cl-BTBHTx(x=0.05,0.1,0.2)retained approximately 50%of the initial PCE over 30 hours operation under ambient conditions,significantly outperforming the control device based on D18-Cl(90%degradation in PCE after 30 h).This work provides a new structural design strategy of copolymers for OSCs with simultaneously improved efficiency and stability. | Ao Song Qiri Huang Chunyang Zhang Haoran Tang Kai Zhang Chunchen Liu Fei Huang Yong Cao | 2023 | Journal of Semiconductors2023,44,8: | 0 |
| 13 | Research on multi-color OLED with bi-directional charge transfer using Ag:Mg as intermediate electrode显示文摘Organic light-emitting devices(OLEDs) have received widespread attention due to their excellent luminescence performance and flexibility.In this work,we demonstrate a novel two-color OLED,in which the forward and reverse units are vertically stacked together using Ag:Mg as an intermediate electrode for charge injection and transfer.Due to the extremely thin Ag:Mg film layer has a relatively smooth surface,it plays a critical role in the reverse unit light emission of the device.Thus,it is realized that the device emits green and red light when forward and reverse voltages are applied respectively.This provides a new possibility for future OLEDs lighting and display developments.The OLEDs were prepared by using such Ag:Mg intermediate electrodes,and a maximum brightness of 451.14 cd/m^(2) and an external quantum efficiency(EQE) of 3.82% were obtained at a small current density. | LIU Linna GAO Xiongwei WAN Chunchen ZHANG Fanghui | 2023 | Optoelectronics Letters2023,19,6: | 0 |
| 14 | Repurposing of Antazoline Hydrochloride as an Inhibitor of Hepatitis B Virus DNA Secretion显示文摘Hepatitis B virus(HBV) belongs to Hepadnaviridae family and mainly infects hepatocytes, which can cause acute or chronic hepatitis. Currently, two types of antiviral drugs are approved for chronic infection clinically: interferons and nucleos(t)ide analogues. However, the clinical cure for chronic infection is still rare, and it is a huge challenge for all researchers to develop high-efficiency, safe, non-tolerant, and low-toxicity anti-HBV drugs. Antazoline hydrochloride is a first-generation antihistamine with anticholinergic properties, and it is commonly used to relieve nasal congestion and in eye drops. Recently, an in vitro high-throughput evaluation system was constructed to screen nearly 800 compounds from the Food and Drug Administration(FDA)-approved Drug Library. We found that arbidol hydrochloride and antazoline hydrochloride can effectively reduce HBV DNA in the extracellular supernatant in a dose-dependent manner, with EC_(50) of4.321 lmol/L and 2.910 lmol/L in HepAD38 cells, respectively. Moreover, the antiviral effects and potential mechanism of action of antazoline hydrochloride were studied in different HBV replication systems. The results indicate that antazoline hydrochloride also has a significant inhibitory effect on HBV DNA in the extracellular supernatant of Huh7 cells,with an EC_(50) of 2.349 lmol/L. These findings provide new ideas for screening and research related to HBV agents. | Jing Li Yangyang Hu Yifei Yuan Yinan Zhao Qiqi Han Canyu Liu Xue Hu Yuan Zhou Yun Wang Yu Guo Chunchen Wu Xinwen Chen Rongjuan Pei | 2021 | Virologica Sinica2021,36,3: | 0 |
| 15 | ARTICLE OPEN Viral dynamics and antibody responses in people with asymptomatic SARS-CoV-2 infection显示文摘Over 40% of the coronavirus disease 2019(COVID-19)COVID-19 patients were asymptomatically infected with severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)and the immune responses of these asymptomatic individuals is a critical factor for developing the strategy to contain the COVID-19 pandemic.Here,we determined the viral dynamics and antibody responses among 143 asymptomatic individuals identified in a massive screening of more than 5 million people in eight districts of Wuhan in May 2020.Asymptomatic individuals were admitted to the government-designated centralized sites in accordance with policy.The incidence rate of asymptomatic infection is〜2.92/100,000.These individuals had low viral copy numbers(peaked at 315 copies/mL)and short-lived antibody responses with the estimated diminish time of 69 days.The antibody responses in individuals with persistent SARS-CoV-2 infection is much longer with the estimated diminish time of 257 days.These results imply that the immune responses in the asymptomatic individuals are not potent enough for preventing SARS-CoV-2 re-infection,which has recently been reported in recovered COVID-19 patients.This casts doubt on the efficacy of forming'herd-immunity'through natural SARS-CoV-2 infection and urges for the development of safe and effective vaccines. | Zhiwei Sui Xinhua Dai Qingbin Lu Yulan Zhang Min Huang Shufen Li Tao Peng Jie Xie Yongzhuo Zhang Chunchen Wu Jianbo Xia Lianhua Dong Jiayi Yang Wenfeng Huang Siyuan Liu Ziquan Wang Ke Li Qingfang Yang Xi Zhou Ying Wu Wei Liu Xiang Fang Ke Peng | 2021 | Signal Transduction and Targeted Therapy2021,6,6: | 0 |