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| 1 | Cooperative effects of hydrogen sulfide and nitric oxide on delaying softening and decay of strawberry显示文摘Hydrogen sulfide(H2S)and nitric oxide(NO)as two signal molecules play prominent roles in plant response to biotic stress.The combination effects of these two molecules on ripening and decay of postharvest strawberry were investigated.Strawberries were first dipped in distilled water,0.8 mmol/L NaHS solution,5μmmol/L sodium nitroprusside(SNP)solution,and combinative solutions of 0.8 mmol/L NaHS and 5μmmol/L SNP for 10 min,respectively,and then stored at 20°C.Results showed that the effects of the co-treatment of 0.8 mmol/L NaHS solution and 5μmmol/L SNP solution were superior to that of other treatments.The former could suppress the percentage of fruit decay,inhibit respiration rate,maintain the original crust color,and slow down the decrease of firmness and the change of relative conductivity,which preserved the fruit quality.Further investigation showed that co-treatment of hydrogen sulfide and nitric oxide maintained higher activities of chitinase(CHI)and beta-1,3-glucanase(GNS),and lowered activities of pectin methylesterase(PME),polygalacturonase(PG)and endo-β-1,4-glucanase(EGase).The study indicated that the synergistic function of H2S and NO could effectively prolong the shelf life and reduce the decay rate of harvested strawberry. | Zhang Chang Shi Jingying Zhu Liqin Li Changle Wang Qingguo | 2014 | International Journal of Agricultural and Biological Engineering2014,7,6: | 12 |
| 2 | Human ACE2-Functionalized Gold“Virus-Trap”Nanostructures for Accurate Capture of SARS-CoV-2 and Single-Virus SERS Detection显示文摘The current COVID-19 pandemic urges the extremely sensitive and prompt detection of SARS-CoV-2 virus.Here,we present a Human Angiotensin-converting-enzyme 2(ACE2)-functionalized gold“virus traps”nanostructure as an extremely sensitive SERS biosensor,to selectively capture and rapidly detect S-protein expressed coronavirus,such as the current SARS-CoV-2 in the contaminated water,down to the single-virus level.Such a SERS sensor features extraordinary 106-fold virus enrichment originating from high-affinity of ACE2 with S protein as well as“virus-traps”composed of oblique gold nanoneedles,and 109-fold enhancement of Raman signals originating from multi-component SERS effects.Furthermore,the identification standard of virus signals is established by machine-learning and identification techniques,resulting in an especially low detection limit of 80 copies mL^(−1) for the simulated contaminated water by SARS-CoV-2 virus with complex circumstance as short as 5 min,which is of great significance for achieving real-time monitoring and early warning of coronavirus.Moreover,here-developed method can be used to establish the identification standard for future unknown coronavirus,and immediately enable extremely sensitive and rapid detection of novel virus. | Yong Yang Yusi Peng Chenglong Lin Li Long Jingying Hu Jun He Hui Zeng Zhengren Huang Zhi-Yuan Li Masaki Tanemura Jianlin Shi John R.Lombardi Xiaoying Luo | 2021 | Nano-Micro Letters2021,13,7: | 6 |
| 3 | Photoelectrochemical regeneration of all vanadium redox species for construction of a solar rechargeable flow cell显示文摘Energy storage is pivotal for the continuous utilization of solar energy suffering from the intermittency issue. Herein, we demonstrate a solar rechargeable flow cell(SRFC) based on photoelectrochemical regeneration of vanadium redox species for in-situ solar energy harvest and storage. In this device, TiO_2 and MWCNT/acetylene black(MWCNT/AB) composite are served as the photoanode and the counter electrode,respectively, with all vanadium redox couples, VO_2^+/VO^(2+)and VO^(2+)/V^(3+), as solar energy storage media.Benefitting from solar energy, the cell can be photocharged under a bias as low as 0.1 V, which is much lower than the discharge voltage of ~0.5 V. Photocharged under the optimized condition, the cell delivers a discharge energy of 23.0 mWh/L with 67.4% input electric energy savings. This prototype work may inspire the rational design for cost-effective solar energy storage devices. | Shichao Liao Jingying Shi Chunmei Ding Mingyao Liu Fengqiang Xiong Nan Wang Jian Chen Can Li | 2018 | Journal of Energy Chemistry2018,27,1: | 2 |
| 4 | Recombiant Protein Expression in Pichia pastoris 显示文摘 | Cereghino J L Jingying Shi | 2000 | Molecular Biotechnology2000,16,: | 1 |
| 5 | Roles of cocatalysts in Pt–PdS/CdS with exceptionally high quantum efficiency for photocatalytic hydrogen production显示文摘 | Jinhui Yang Hongjian Yan Xiuli Wang Fuyu Wen Zhijun Wang Dayong Fan Jingying Shi Can Li | 2012 | Journal of Catalysis2012,,: | 1 |
| 6 | Photocatalytic Overall Water Splitting Promoted by an α–β phase Junction on Ga<sub>2</sub>O<sub>3</sub>显示文摘 | Xiang Wang Qian Xu Mingrun Li Shuai Shen Xiuli Wang Yaochuan Wang Zhaochi Feng Jingying Shi Hongxian Han Can Li | 2012 | Angew Chem Int Ed2012,,52: | 1 |
| 7 | Microwave-assisted hydrothermal synthesis of perovskite Na-Ta0 3 nanocrystals and their photocatalytic properties显示文摘 | SHI Jingying LIU Guiji WANG Nan | 2012 | Journal of Materials Chemistry2012,2,18: | 1 |
| 8 | Improving the performance of CdS/P3HT hybrid inverted solar cells by interfacial modification显示文摘 | Min Zhong Dong Yang Jian Zhang Jingying Shi Xiuli Wang Can Li | 2011 | Solar Energy Materials and Solar Cells2011,,1: | 1 |
| 9 | Direct splitting of H 2 S into H 2 and S on CdS-based photocatalyst under visible light irradiation显示文摘 | Guijun Ma Hongjian Yan Jingying Shi Xu Zong Zhibing Lei Can Li | 2008 | Journal of Catalysis2008,,1: | 1 |
| 10 | Browninginhibition on fresh-cut chestnut kernel by exogenousnitric oxide显示文摘 | Jingying Shi Jinxiu Li Shuhua Zhu | 2011 | International Journal of Food Science andTechnology2011,,46: | 1 |
| 11 | Visible-light-driven hydrogen production with extremely high quantum efficiency on Pt–PdS/CdS photocatalyst显示文摘 | Hongjian Yan Jinhui Yang Guijun Ma Guopeng Wu Xu Zong Zhibin Lei Jingying Shi Can Li | 2009 | Journal of Catalysis2009,,2: | 1 |
| 12 | Carrier mobility tuning of MoS_(2) by strain engineering in CVD growth process显示文摘Strain engineering is proposed to be an effective technology to tune the properties of two-dimensional(2D)transition metal dichalcogenides(TMDCs).Conventional strain engineering techniques(e.g.,mechanical bending,heating)cannot conserve strain due to their dependence on external action,which thereby limits the application in electronics.In addition,the theoretically predicted strain-induced tuning of electrical performance of TMDCs has not been experimentally proved yet.Here,a facile but effective approach is proposed to retain and tune the biaxial tensile strain in monolayer MoS_(2) by adjusting the process of the chemical vapor deposition(CVD).To prove the feasibility of this method,the strain formation model of CVD grown MoS_(2) is proposed which is supported by the calculated strain dependence of band gap via the density functional theory(DFT).Next,the electrical properties tuning of strained monolayer MoS_(2) is demonstrated in experiment,where the carrier mobility of MoS_(2) was increased by two orders(~0.15 to~23 cm^(2)·V^(−1)·s^(−1)).The proposed pathway of strain preservation and regulation will open up the optics application of strain engineering and the fabrication of high performance electronic devices in 2D materials. | Yongfeng Chen Wenjie Deng Xiaoqing Chen Yi Wu Jianwei Shi Jingying Zheng Feihong Chu Beiyun Liu Boxing An Congya You Liying Jiao Xinfeng Liu Yongzhe Zhang | 2021 | Nano Research2021,14,7: | 0 |
| 13 | Pre-harvest and post-harvest application of benzothiadiazole for controlling anthracnose and extending shelf life of harvested banana显示文摘Anthracnose,caused by the fungus Colletotrichum musae,is a serious latent post-harvest disease of banana,which results in major economic losses during transportation and storage.Benzo-thiadiazole-7-carbothioic acid S-methyl ester(BTH),a functional analogue of the plant endogenous hormone-like compound salicylic acid(SA),has been known to possess resistant effects on some diseases caused by fungi.The aim of present study was to select an appropriate BTH concentration and an appropriate stage of banana ripening for its application in controlling anthracnose and extending shelf life of harvested banana fruit.Different concentrations of BTH(50,100,200 and 300μg/mL)were applied at different stages of banana fruit ripening,including one week,two weeks and one month before harvest.The results suggest that while the concentrations of BTH ranging from 50μg/mL to 200μg/mL in both pre-harvest and post-harvest application,this could control anthracnose of harvested banana fruit,the appropriate concentration of BTH in both pre-harvest and post-harvest treatment was 100μg/mL and the best time of BTH treatment was two weeks before harvest.Examination of quality parameters including peel color and firmness indicated that 100μg/mL BTH treatment delayed banana fruit ripening at room temperature. | Li Xueping Shi Jingying Zhu Xiaoyang Wang Jinghua Yuan Zhenxin Luo Jun Liu Tongxin Wang Rong Rao Shen Chen Weixin | 2013 | International Journal of Agricultural and Biological Engineering2013,6,4: | 0 |
| 14 | Oxygen and Glucose Transportation and Distribution on 3D Osteochondral Scaffold in Silico Model显示文摘Nutrients supply especially like nutrients and oxygen play vital role in tissue engineering process.It is found that tissue could not grow very well in the middle of the scaffold because few nutrients could transport to the middle.Nutrient limitations would reduce cell proliferation and differentiation.In that case,there is urgent need to understand the nutrient distribution for both in vitro and in vivo study,as no technology is able for researchers to observe the nutrients transport during those process.In this paper,a numerical model coupling with VOF(volume of fluid)model and species transport model together for predicting the distribution of oxygen and glucose in the scaffold after implantation in to the site is developed.Comparing with our previous in vivo tests,the regenerated tissue distribution has a similar trend as oxygen distribution rather than glucose.The reported scaffold manufactured by additive manufacturing provided a good interconnected structure which facilitated the nutrient transportation in the scaffold.Considering nutrient transportation,this numerical model could be used in better understanding the nutrients transportation in the scaffold,and leading to a better understanding of tissue formation in the scaffold. | Ziyu Liu Hao Huang Jingying Yang Maryam Tamaddon Haoyu Wang Yingying Gu Zhenyun Shi Chaozong Liu | 2022 | Journal of Bionic Engineering2022,19,4: | 0 |
| 15 | Combination of wound healing with 1-methylcyclopropene and wound detection by iodine solution to maintain the quality of sweet potato during long-term storage显示文摘Wound healing treatment after harvest is a critical step to protect sweet potatoes from pathogens.The method of phloroglucinol staining is commonly used for detecting callus.However,this method is not easy to identify the degree of callus as the color change is not obvious compared with non-curing roots for some cultivars.A new method based on the principle of starch test by iodine was developed for the detection of wound healing.After healing,the reducing sugar content increased while the starch content decreased to a lower level compared to that of the non-curing roots.Moreover,the antioxidant capacity of the sweet potato after wound healing was higher than that in the control.Wound healing combined with ethylene,1-methylcyclopropene(1-MCP),chlorpropham or abscisic acid were studied for inhibiting sprout of sweet potato root caused by high temperature during curing.The results showed ethylene and 1-MCP treatment had no negative effect on wound healing.Moreover,1-MCP treatment was the most effective one on the suppression of sprouting and decay of sweet potato.The results indicate that iodine solution staining is a useful and rapid method to identify the wound healing extent,and 1-MCP treatment can effectively inhibit root sprouting during wound healing and the subsequent long-term storage. | Jixuan Cao Pei Liu Xuejiao Wang Qingguo Wang Jingying Shi | 2021 | International Journal of Agricultural and Biological Engineering2021,14,3: | 0 |