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| 1 | Properties of natural rubber vulcanizates containing mechanochemically devulcanized ground tire rubber显示文摘 | Xinxing Zhang Canhui Lu Mei Liang | 2009 | Journal of Polymer Research2009,,4: | 1 |
| 2 | Properties of natural rubber vulcanizates containing mechanochemically devulcanized ground tire rubber显示文摘 | Xinxing Zhang Canhui Lu Mei Liang | | 0,,: | 1 |
| 3 | Preparation of low-density polyethylene / low-temperature expandable graphite composites with high thermal conductivity by an in situ expansion melt blending process 显示文摘 | Wu Hejun Lu Canhui Zhang Wei | 2013 | Materials & Design2013,52,: | 1 |
| 4 | Surface Graft Copolymerization of Poly (methyl methaerylate) onto Waste Tire Rubber Pow- der Through Ozonization显示文摘 | Ping Fang Canhui Lu | 2011 | Journal of Applied Polymer Science2011,122,: | 1 |
| 5 | Preparation and Characterization of Carbon Microfiber Through Shear Pulverization Using Pan- mill Equipment 显示文摘 | Shi Feng Lu Canhui Liang Mei | 2010 | JMEPEG2010,19,: | 1 |
| 6 | Morphological and structural development of hardwood cellulose during mechanochemical pretreatment in solid state through pan-milling显示文摘 | Wei Zhang Mei Liang Canhui Lu | 2007 | Cellulose2007,,5: | 1 |
| 7 | Aerogels from quaternary ammonium-functionalized cellulose nanofibers for rapid removal of Cr(VI) from water显示文摘 | Xu He Long Cheng Yaru Wang Jiangqi Zhao Wei Zhang Canhui Lu | 2014 | Carbohydrate Polymers2014,,: | 1 |
| 8 | Properties of natural rubber vulcanizates containing mechanochemically devulcanized ground tire rubber显示文摘 | Xinxing Zhang Canhui Lu Mei Liang | 2009 | Journal of Polymer Research2009,,4: | 1 |
| 9 | Flexible and Transparent Paper- Based Ionic Diode Fabricated from Oppositely Charged Microfibrillated Cellulose显示文摘 | Zhang Wei Zhang Xiaodan Lu Canhui | 2012 | Journal of Physical Chemis- try C2012,116,16: | 1 |
| 10 | Morphological and structural development of hardwood cellulose during mechanochemical pretreatment in solid state through pan-milling显示文摘 | Zhang Wei Liang Mei Lu Canhui | 2007 | Cellulose2007,14,5: | 1 |
| 11 | Extraction of cellulose nanofibrils from dry softwood pulp using high shear homogenization显示文摘 | Jiangqi Zhao Wei Zhang Xiaodan Zhang Xinxing Zhang Canhui Lu Yulin Deng | 2013 | Carbohydrate Polymers2013,,2: | 1 |
| 12 | Phase separation in plants:New insights into cellular compartmentalization显示文摘A fundamental challenge for cells is how to coordinate various biochemical reactions in space and time. To achieve spatiotemporal control, cells have developed organelles that are surrounded by lipid bilayer membranes. Further, membraneless compartmentalization, a process induced by dynamic physical association of biomolecules through phase transition offers another efficient mechanism for intracellular organization. While our understanding of phase separation was predominantly dependent on yeast and animal models, recent findings have provided compelling evidence for emerging roles of phase separation in plants. In this review, we first provide an overview of the current knowledge of phase separation, including its definition, biophysical principles, molecular features and regulatory mechanisms. Then we summarize plant-specific phase separation phenomena and describe their functions in plant biological processes in great detail. Moreover, we propose that phase separation is an evolutionarily conserved and efficient mechanism for cellular compartmentalization which allows for distinct metabolic processes and signaling pathways, and is especially beneficial for the sessile lifestyle of plants to quickly and efficiently respond to the changing environment. | Xiumei Xu Canhui Zheng Dandan Lu Chun‐Peng Song Lixin Zhang | 2021 | Journal of Integrative Plant Biology2021,63,11: | 1 |
| 13 | The DELLA-ABI4-HY5 module integrates light and gibberellin signals to regulate hypocotyl elongation显示文摘Plant growth is coordinately controlled by various environmental and hormonal signals,of which light and gibberellin(GA)signals are two critical factors with opposite effects on hypocotyl elongation.Although interactions between the light and GA signaling pathways have been studied extensively,the detailed regulatory mechanism of their direct crosstalk in hypocotyl elongation remains to be fully clarified.Previously,we reported that ABA INSENSITIVE 4(ABI4)controls hypocotyl elongation through its regulation of cellelongation-related genes,but whether it is also involved in GA signaling to promote hypocotyl elongation is unknown.In this study,we showthat promotion of hypocotyl elongation by GA is dependent on ABI4 activation.DELLAs interact directly with ABI4 and inhibit its DNA-binding activity.In turn,ABI4 combined with ELONGATED HYPOCOTYL 5(HY5),a key positive factor in light signaling,feedback regulates the expression of the GA2ox GA catabolism genes and thus modulates GA levels.Taken together,our results suggest that the DELLA-ABI4-HY5 module may serve as a molecular link that integrates GA and light signals to control hypocotyl elongation. | Haibo Xiong Dandan Lu Zhiyuan Li Jianghao Wu Xin Ning Weijun Lin Zechen Bai Canhui Zheng Yang Sun Wei Chi Lixin Zhang Xiumei Xu | 2023 | Plant Communications2023,4,5: | 0 |
| 14 | Dual cross-linked MXene/cellulose nanofiber/nickel alginate film with improved mechanical properties and electromagnetic interference shielding performance显示文摘Electromagnetic interference pollution has raised urgent demand for the development of electromagnetic interference shielding materials.Transition metal carbides(MXenes)with excellent conductivity have shown great potential in electromagnetic interference(EMI)shielding materials,while the poor mechanical strength,flexibility,and structural stability greatly limit their further applications.Here,cellulose nanofibers and sodium alginate are incorporated with MXene nanosheets as flexible matrices to construct strong and flexible mussellike layered MXene/Cellulose nanofiber/Sodium Alginate composite films,and nickel ions are further introduced to induce metal coordination crosslinking of alginate units.Benefited from the dual-crosslinked network structure of hydrogen bonding and metal coordination,the tensile strength,Young’s modulus,and toughness of the MXene/cellulose nanofiber/nickel alginate composite film are significantly increased.After subsequent reduction by ascorbic acid,excess nickel ions are reduced to nickel nanoparticles and uniformly dispersed within the highly conductive composite film,which further improved its hysteresis loss effect toward the incident electromagnetic waves.Consequently,the MXene/cellulose nanofiber/nickel alginate-Ni composite film presents a considerably enhanced electromagnetic interference shielding effectiveness(47.17 dB)at a very low thickness of 29μm.This study proposes a feasible dual-crosslinking and subsequent reduction strategy to synergistically enhance the mechanical properties and electromagnetic interference shielding performance of MXene-based composite materials. | Pengcheng Deng Shiyi Feng Canhui Lu Zehang Zhou | 2023 | Frontiers of Chemical Science and Engineering2023,17,10: | 0 |
| 15 | Shear stress-induced delamination method for the mass production of Ti_(3)C_(2)Tx MXene nanosheets显示文摘MXene nanosheets are considered advantageous for functional materials,but current delamination methods to prepare MXene nanosheets have many limitations including high cost,small production scale,low efficiency,and deteriorated structure integrity of obtained nanosheets.Here,we propose a simple,efficient,and scalable shear stress-induced delamination(SSID)strategy to boost the production of single-/few-layered Ti3C2Tx MXene nanosheets.Molecular dynamics simulation indicates that the pan mill-type grinding discs create a strong hydrodynamic flow field,which exerts gigantic shear stress to substantially delaminate the multilayered MXene stacks into homogeneously dispersed MXene nanosheets.Furthermore,shear stress generated from vigorous water flow has limited fragmentation effect,ensuring large lateral size and good structure integrity to the obtained MXene nanosheets as evidenced by the morphological and structural characterizations.Compared to conventional delamination methods,this novel SSID strategy exhibits great advantages in terms of efficiency,scalability and the properties of resultant MXene nanosheets,which opens up great opportunity for the scalable production and commercialization of high-performance MXene-based materials. | Zehang Zhou Lingfei Wei Ya Yi Shiyi Feng Zeying Zhan Dong Tian Canhui Lu | 2023 | Journal of Materiomics2023,9,6: | 0 |