|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Production of L-phenylalanine from trans-cinnamic acids by high- level expression of phenylalanine ammonia lyase gene from Rhodosporidium toruloides in Escherichia coli显示文摘 | JIA Shiru CUI Jiandong LI Yan | 2008 | Biochemical Engineering Journal2008,42,: | 1 |
| 2 | Biosynthesis of spherical Fe 3 O 4 /bacterial cellulose nanocomposites as adsorbents for heavy metal ions显示文摘 | Huixia Zhu Shiru Jia Tong Wan Yuanyuan Jia Hongjiang Yang Jing Li Lin Yan Cheng Zhong | 2011 | Carbohydrate Polymers2011,,4: | 1 |
| 3 | Production of L-phenylalaninefrom trans-cinnamic acids by high-levelexpression of phenylalanine am-monia lyase gene from Rhodosporidium toruloides in Escherichia coli显示文摘 | JIA Shiru CUI Jiandong LI Yan | 2008 | Biochemical Engineering Journal2008,42,3: | 1 |
| 4 | Effect of solid bed-materials on vegetative cells of Nostoc flagelliforme显示文摘 | XueFeng Chen ShiRu Jia SiJun Yue Ning Wang ChengTao Li Yue Wang | 2010 | Journal of Applied Phycology2010,,3: | 1 |
| 5 | Worldwide trends in dairy production and consumption and Calcium intake: is promoting c:nsumption :f dairy products a sustainable solution for inadequate Calcium intake? 显示文摘 | Wang Youfa Li Shiru | 2008 | Food NutrBull2008,29,3: | 1 |
| 6 | Bioconversion of lignocellulosic biomass into bacterial nanocellulose:challenges and perspectives显示文摘Nanocellulose has various outstanding properties and great potential for replacing petrochemical products.The utilization of lignocellulose to produce nanocellulose is of great significance to the sustainable development of the economy and society.However,the direct extraction of nanocellulose from lignocellulose by chemical method is challenged by toxic chemicals utilization,energy and time consumption,and waste water generation.Therefore,this paper addressed the conversion of lignocellulosic biomass into bacterial nanocellulose(BNC)by the biological method.Moreover,this article highlights the recent advances in potentials and challenges of lignocellulosic biomass for BNC production through the bioconversion process,including biomass pretreatment,enzymatic hydrolysis,glucose and xylose fermentation,GA accumulation,and inhibitor tolerant.The development in metabolic and evolutionary engineering to enhance the production capacity of BNC-producing strain is also discussed.It is expected to provide guidance on the effective bioproduction of nanocellulose from lignocellulosic biomass. | Wenchao Li Yuqing Shen Huan Liu Xinxin Huang Bin Xu Cheng Zhong Shiru Jia | 2023 | Green Chemical Engineering2023,4,2: | 0 |
| 7 | Intrinsically patterned corrals in monolayer Ag_(5)Se_(2) and selective molecular co-adsorption显示文摘Functionalized two-dimensional(2D)materials play an important role in both fundamental sciences and practical applications.The construction and precise control of patterns at the atomic-scale are necessary for selective and multiple functionalization.Here we report the fabrication of monolayer pentasilver diselenide(Ag_(5)Se_(2)),a new type of intrinsically patterned 2D material,by direct selenization of a Ag(111)surface.The atomic arrangement is determined by a combination of scanning tunneling microscopy(STM),low-energy electron diffraction(LEED),and density-functional-theory(DFT)calculations.Large-scale STM images exhibit a quasi-periodic pattern of stoichiometric triangular domains with a side length of~15 nm and apical offsets.The boundaries between triangular domains are sub-stoichiometric.Deposition of different molecules on the patterned Ag_(5)Se_(2) exhibits selective adsorption behavior.Pentacene molecules preferentially adsorb on the boundaries,while tetracyanoquinodimethane(TCNQ)molecules adsorb both on the boundaries and the triangular domains.By co-depositing pentacene and TCNQ molecules,we successfully construct molecular corrals with pentacene on the boundaries encircling TCNQ molecules on the triangular domains.The realization of epitaxial large-scale and high-quality,monolayer Ag_(5)Se_(2) extends the family of intrinsically patterned 2D materials and provides a paradigm for dual functionalization of 2D materials. | Jianchen Lu Shiru Song Shuai Zhang Yang Song Yun Cao Zhenyu Wang Li Huang Hongliang Lu Yu-Yang Zhang Sokrates T.Pantelides Shixuan Du Xiao Lin Hong-Jun Gao | 2022 | Nano Research2022,15,7: | 0 |
| 8 | A dual enzyme-phosphate hybrid nanoflower for glutamate detection显示文摘The enzyme hybrid nanoflower has gained interests in biosensors due to their simple synthesis and high efficiency.In this study,glutamate oxidase(GLOX)and horseradish peroxidase(HRP)hybrid nanoflowers(GLOX&HRP-HNFs)were successfully prepared for the detection of glutamic acid(Glu).The effects of the synthesis conditions on the activity of GLOX&HRP-HNFs were investigated.Results revealed that the maximum activity of GLOX&HRP-HNFs was under 4 mM phosphate radical,2.5 mM MnSO4,0.04 mg/mL GLOX,and 0.16 mg/mL HRP.After immobilization,no significant differences were observed in optimum pH and temperature values of the GLOX and HRP.The GLOX&HRP-HNFs exhibited higher storage stability and resistance to organic solvents than free GLOX and HRP.Additionally,the GLOX&HRP-HNFs maintained 69%of its primary activity after 6 cycles.More important,the GLOX&HRP-HNFs exhibited a good linear range from 1 to 100μM(R^(2)=0.9979)and a low limit of detection(LOD)of 0.59μM for glutamate.These results suggest that the GLOX&HRP-HNFs is a promising candidate for applications in biosensing for the detection of glutamate. | Peikun Li Jiahui Jia Zixin Geng Saizhao Pang Ruirui Wang Muhammad Bilal Hongjie Bian Jiandong Cui Shiru Jia | 2023 | Particuology2023,,12: | 0 |
| 9 | CAEXPO Sees Laos Old Tree Tea's Change from Nameless to State Gifts显示文摘During the 19h China-ASEAN Expo(CAEXPO),plenty of visitors were atracted early in the morning to the Laos Pavilion.Many of them were siting at the table set by Laotian tea merchants,savoring cups of tea and chatting.It has been years since the Laos old tree tea exhibition area in the Pavilion buzzes with visitors while other booths see only several. | Li Min Zhang Shiru Wen Xiaqing(译) | 2023 | 中国-东盟博览2023,,5: | 0 |