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汪伟 博士 发表学术期刊论文 (Publications)
l SCI收录论文
[1] Yang Y.M.#,
Hu T.Y.#, Fan H.D., Shi L., Zhang S.Y., Liu Z., Ju X.J., Xie R., Wang
W.*, Chu L.Y., 2024. Bioinspired anti-freezing 3D-printable conductive
hydrogel microfibers for highly-sensitive and wide-range detection of ultralow
and high strains. Green Chemical Engineering, 5(1): 132-143. (#Contributed equally)
This work has been featured in the Front
Cover [2] Zhang M.J., Cao Q., Yuan Y.M., Guo X.H., Pan D.W., Xie R., Ju X.J., Liu Z.,
Wang W.*, Chu L.Y., 2024. Functional nanoemulsions: Controllable
low-energy nanoemulsification and advanced biomedical
application. Chinese Chemical Letters (2022
IF = 9.1), 35(2): 108710. [3] Chen Y.X.,
Yuan Y.M., Yang H.Y., Wang Q., Ren Y., Guo X.H., Zhang P., Zhang M.J.*,
Wang W.*, Chu L.Y., 2024. Hierarchical porous tannic-acid-modified
MOFs/alginate particles with synergized adsorption-photocatalysis for water remediation.
Separation and Purification Technology (2022
IF = 8.6), 330: 125435. [4] Su Y.Y., Deng
C.F., Pan D.W.*, Xie R., Ju X.J., Liu Z., Wang W.*, Chu L.Y., 2024. Simple and flexible production
of controllable emulsion droplets from open-type co-flow microfluidics. Chemical
Engineering Science (2022 IF = 4.7), 293: 120027. [5] Zhang S.Y., Pan D.W.*, Fan H.D., Shi L., Yang Y.M., Liu Z., Ju
X.J., Xie R., Wang W.*, Chu L.Y., 2024. Stretchable conductive Janus hydrogel with controllable porous structures
for high-performance strain sensing. Journal of Polymer Science (2022
IF=3.4), in press.
Invited Paper for the Special Issue on 70 Years of Polymer Science
at Sichuan University [6] Fan Z.W., Zhang J., Zuo B.Y., Tian X.B., Wang Z.F., Ju X.J., Xie R., Wang W., Pan D.W., Liu Z.*, Chu L.Y., 2024. Biomimetic Guttation Feature
in Two-dimensional Hydrotalcite Membranes for Self-sustaining Water Purification.
Advanced Functional Materials (2022
IF=19.0), in press. [7] Gong J.Y., Zhou X.L., Faraj Y., Zou L.B., Zhou C.H., Xie R., Wang W., Liu Z., Pan D.W., Ju X.J.*, Chu L.Y., 2024. Coumarin-based light-responsive
composite nanochannel membranes for precise controlled release of pesticides.
Advanced Functional Materials (2022
IF=19.0), 34(21): 2314642. [8] Zhu Y.H., Zhou
C.Y., Peng X., Wang W., Liu Z., Xie R., Pan D.W., Ju X.J.*,
Chu L.Y., 2024. Dialdehyde starch cross-linked aminated gelatin sponges with excellent
hemostatic performance and biocompatibility. Carbohydrate Polymers (2022
IF = 11.2), 342: 122326. [9] Li Y., Gong
J.Y., Wang P., Fu H., Yousef F., Xie R., Wang W., Liu Z., Pan D.W., Ju
X.J.*, Chu L.Y., 2024. Dissolving microneedle system containing Ag
nanoparticle-decorated silk fibroin microspheres and antibiotics for synergistic
therapy of bacterial biofilm infection. Journal of Colloid and Interface Science
(2022 IF = 9.9), 661: 123-138. [10] Wang P., Gong
J.Y., Li Y., Tian X.B.*, Xie R., Ju X.J., Wang W., Pan D.W., Liu Z.*, Chu L.Y., 2024. Superamphophilic antimicrobial membrane
engineered with zinc-coordinated metallo-polymeric framework
nanocoating. Journal of Membrane Science (2022
IF = 9.5), 702: 122779. [11] Jiang L.L., Deng Y.Z., Luo T., Xie R., Ju X.J., Wang W., Pan D.W., Liu Z.*, Chu L.Y., 2024. A smart membrane with
negative thermo-responsiveness in battery electrolyte solution. Journal of Membrane Science (2022 IF = 9.5), 692: 122266. [12] Lv X.B., Xie R.*, Ji J.Y., He P., Yuan Y.F., Ju X.J., Wang W., Liu Z., Chu L.Y., 2024. Enhancing stability
and ionic sieving efficiencies of GO membranes via copper ion crosslinking and
tannic acid intercalation Separation and Purification Technology (2022
IF = 8.6), 336: 126232. [13] Yang S.H.,
Song W.L., Fan L.L., Deng C.F., Xie R., Wang W., Liu Z., Pan D.W., Ju X.J.,*
Chu L.Y.*, 2024. Microfluidic fabrication of monodisperse microcapsules
with gas core. Lab on a Chip (2022 IF = 6.1), in press. [14] Yang L., Yang
H.Y., Ju X.J., Wang W., Liu Z., Pan D.W., Xie R.*, Chu L.Y., 2024. A Photonic Crystal Gel for Naked-Eye Detection of Uric Acid with
High Sensitivity and Specificity. Industrial & Engineering Chemistry Research
(2022 IF = 4.2), 63(24): 10615-10626. [15] Long Y.H.,
Ju X.J.*, Yang S.H., Chen S.K.,
Xie R., Wang W., Liu Z., Pan D.W., Chu L.Y.*,
2024. Microfluidic Fabrication of Monodisperse Hyaluronic Acid Microspheres
with Excellent Biocompatibility and Tunable Physicochemical Properties. Industrial
& Engineering Chemistry Research (2022
IF = 4.2), 63(15): 6632-6643. [16] Jiao K., Zhang T.X., Wang W., Xie R., Ju X.J., Liu Z.,
Pan D.W.*, Chu L.Y.*, 2024. Effects of Rheological
Properties of Non-Newtonian Middle Fluids on the Formation Dynamics of Double
Emulsions in Co-Flowing Microfluidic Emulsification. Industrial & Engineering
Chemistry Research (2022 IF = 4.2), 63(15): 6644-6654. 2023 [17] Wang W., Li B.Y., Zhang M.J., Su Y.Y., Pan D.W., Liu
Z., Ju X.J., Xie R., Faraj Y., Chu L.Y.*, 2023. Microfluidic Emulsification
Techniques for Controllable Emulsion Production and Functional Microparticle Synthesis.
Chemical Engineering
Journal (2022
IF = 15.1), 452: 139277. Invited Paper
for the Special Issue on Mesoscales in Chemical Engineering [18]
Liu Y. H.#, An N.#, Tian L., Yang P., Wang W.*,
Liu B.C.*, 2023. Multifunctional carbon aerogel granules designed for column reactor
for efficient treatment of shale gas flowback and produced water. Chemical Engineering Journal (2022 IF = 15.1), 459: 141544. (#Contributed equally) [19]
Chen C., Cai Q.W., Zhan C.Z., Wang B.C., Li
P.F., Xie R., Ju X.J., Liu Z., Wang W.*, Chu L.Y.*, 2023. Controllable Fabrication
of Highly Uniform Sub-10 nm Nanoparticles from Spontaneous Confined Nanoemulsification. Small (2022
IF = 13.3), 19(34): 2300801. This work has been featured in the Inside
Back Cover [20] Tian X.Y., Sun M.W., Wen G.Y., Cao M., Pan D.W., Xie R., Ju X.J., Liu Z.,
Wang W.*, Chu L.Y.*, 2023. Ultrasensitive Hydrogel
Grating Detector for Real-Time Continuous-Flow Detection of Trace Threat Pb2+.
Journal of Hazardous Materials (2022
IF = 13.6), 443: 130289. [21]
Su Y. Y., Pan D. W.,* Deng C. F.,
Yang S. H., Faraj Y., Xie R., Ju X.J., Liu Z., Wang W.*, Chu
L.Y., 2023. Facile and Scalable Rotation-Based Microfluidics for Controllable
Production of Emulsions, Microparticles, and Microfibers. Industrial & Engineering Chemistry Research
(2022 IF = 4.2), 62(10): 4373-4387 [22] Deng C.F., Yang S.H., Xie R., Ju X.J., Liu Z.,
Pan D.W., Xu J.H., Luo G.S., Wang W.*, Chu L.Y.*,
2023. Flexible fractal integration of microfluidic
modules for controllable mass production of monodisperse microdroplets. Industrial & Engineering Chemistry Research (2022 IF = 4.2), 62(32): 12690-12702. [23] Tian X.Y., Zhang T.T., Wen G.Y., Yang S.H., Pan D.W., Xie R., Ju X.J., Liu Z., Wang W.*, Chu L.Y.*, 2023. Highly-Sensitive
Hydrogel Gratings for Real-Time Detection of Trace Hexavalent Chromium Ions in
Water. Industrial
& Engineering Chemistry Research (2022 IF = 4.2), 62(30): 11885-11893. [24] Wen S., Ju
X.J.*, Liu W.Y., Liu Y.Q., Pu X.Q., Liu Z., Wang W., Xie R., Faraja Y., Chu L.Y., 2023. Ca-alginate-based Janus capsules
with pumping effect for intestinal-targeted controlled-release. Engineering
(2022 IF = 12.8), in press. [25] Li D.Y., Wang
W., Chu L.Y., Deng N.N.*, 2023. Tunable Structural Coloration in Eccentric
Water-in-Oil-in-Water Droplets. Nano Letters (2022
IF = 10.8), in press. [26] Jiang Q.R., Pu X.Q., Deng C.F., Wang
W., Liu Z., Xie R., Pan D.W., Zhang W.J.*, Ju X.J.*,
Chu L.Y., 2023. Microfluidic controllable preparation of iodine-131-labeled microspheres
for radioembolization therapy of liver tumors. Advanced Healthcare Materials
(2022 IF = 10.0), in press. [27] Wang F., Liu Z.*, Zou L.B., Xie R., Ju X.J., Wang W., Pan D.W., Chu L.Y.*, 2023. A universal model for
describing responsive performances of both positively and negatively responsive
smart gating membranes. Journal of Membrane Science (2022 IF = 9.5), 668: 121235. [28] Li Y., Ju X.J.*,
Fu H., Zhou C.H., Gao Y., Wang J., Xie R., Wang W., Liu Z., Chu L.Y., 2023. Composite separable microneedles for transdermal
delivery and controlled release of salmon calcitonin for osteoporosis therapy.
ACS Applied Materials & Interfaces (2022 IF = 9.5), 15(1): 638-650. [29] Liu L.Y., Liu
Z.*, Wang Q.Y., Wang F., Li J., Xie R., Ju X.J., Wang W., Pan D.W., Chu L.Y.*, 2023. Porous functional materials
with excellent solar-thermal and electro-thermal properties for desalination of
saline water. Separation and Purification Technology (2022 IF = 8.6), 310: 123184. [30] Sun M.W.#,
Li Z.#, Wang Q.Y.#, Zhang N.*, Xie R., Ju X.J.,
Wang W., Liu Z.*,
Chu L.Y., 2023. MoS2 laminate membranes with structural-phase-dependent
permeation for molecular separation. Cell Reports Physical Science (2022 IF =
8.9), 4(2): 101239. (#Contributed equally) [31] Tang X.Y., Liu Z.*, Liu W.Y., Pu X.Q., Liu L.Y., Chen S.K., Xie
R., Ju X.J., Wang W., Chu L.Y.*, 2023. Moisture-Responsive Actuators Based on Hyaluronic Acid with Biocompatibility
and Fast Response as Smart Breather Valves. ACS Applied Polymer
Materials (2022 IF = 5.0), 5(1): 815-827. [32] Jia Z.H., Xie
R.*, Hu Y.Q., Ju X.J., Wang W., Liu Z., Chu L.Y., 2023. Thermochromic photonic
crystal microspheres with uniform color display and wide coloration range. Macromolecular
Rapid Communications (2022 IF = 4.6), 44(5): 202200800. [33] Cao T.X., Xie
R., Ju X.J., Wang W., Pan D.W., Liu Z.*, Chu L.Y., 2023. Biomimetic
two-dimensional composited membranes for ion separation and desalination. Industrial
& Engineering Chemistry Research (2022 IF = 4.2), in press. [34] Tao C., Zhang T.X., Ge S.X., Huang W.X.,
Wang W., Pan D.W.*, Chu L.Y., 2023. Dimensionless Analyses of
Liquid-Liquid-Liquid Three-Phase Flow Patterns in a Confined Microchannel.
Industrial & Engineering Chemistry Research (2022 IF = 4.2), 62(29): 11735-11743. [35] Chen S.K.,
Pan D.W., Liu Z., Wang W., Xie R., Mu X.T.*, Ju X.J.*,
Chu L.Y., 2023. Microfluidic fabrication of calcium alginate/chitosan composite
microcapsules with ultrathin shells for peroxidase immobilization. Industrial
& Engineering Chemistry Research (2022 IF = 4.2), 62(26): 10101-10111. [36] Yang S.H., Ju X.J.*, Deng C.F., Cai Q.W., Tian X.Y., Xie R., Wang
W., Liu Z., Pan D.W., Chu L.Y.*, 2023. In Vitro Study on Effects of Physico-Chemo-Mechanical Properties of Embolic Microspheres
on Embolization Performances. Industrial & Engineering Chemistry Research
(2022 IF = 4.2), 62(6): 2636-2648. [37] Wang F., Liu
Z.*, Xie R., Ju X.J., Wang W., Pan D.W., Chu L.Y.*,
2023. Poly(N-isopropylmethacrylamide-co-4-acrylamidobenzo-18-crown-6)
microgels with expanded networks for excellent adsorption of lead(II) ions. Particuology (2022 IF = 3.5), 77: 105-115.
Invited Paper for the Special Issue of “2022 Emerging Investigators
in Particuology” [38] Chen S.K.,
Ju X.J.*, Wei J., Wang W., Chu L.Y., 2023. Controllable Preparation of
Monodisperse Chitosan Microspheres Based on Microfluidic Technology. Journal
of Chemical Education (2022 IF = 3.0), in press. [39] Zhang C., Xie R.*, Liu Z., Ju X.J., Wang W.,
Chu L.Y.*, 2023. Hollow Fiber Membranes with Knitted Braid-like Structures for Process
Intensification via Generation of Dean Vortices. Separation Science and Technology
(2022 IF = 2.8), in press.
Invited Paper for the Special Issue on Membrane-based Solutions for
Global Separation Challenges 2022 [40] Wang W., Li P.F., Xie R., Ju X.J., Liu Z.,
Chu L.Y.*, 2022. Designable Micro-/Nano-Structured Smart Polymeric
Materials. Advanced Materials (2022 IF = 29.4), 34(46): 2107877.
Invited Paper This work has
been featured in the Inside Back Cover [41]
Wen G.Y., Zhou X.L., Tian X.Y., Xie R., Ju X.J.,
Liu Z., Faraj Y., Wang W.*, Chu L.Y.*, 2022. Smart
Hydrogels with Wide-Visible-Color Tunability. NPG Asia Materials (2022 IF = 9.7), 14: 29. [42]
Wen G.Y., Zhou X.L., Tian X.Y., Hu T.Y., Xie
R., Ju X.J., Liu Z., Pan D.W., Wang W.*, Chu L.Y.*,
2022. Real-Time Quantitative Detection of UV Radiation Dose Based on Photochromic
Hydrogel and Photo-Resistance. Chemistry of Materials (2022 IF = 8.6), 34(17): 7947-7958. [43]
Deng C.F., Su Y.Y., Yang S.H., Jiang Q.R., Xie
R., Ju X.J., Liu Z., Pan D.W., Wang W.*, Chu L.Y.*,
2022. Designable microfluidic ladder networks from backstepping microflow analysis
for mass production of monodisperse microdroplets. Lab on a Chip (2022 IF = 6.1), 22(24): 4962-4973. [44]
Zhang P., Li Y.H.,
Chen L., Zhang M.J.*, Ren Y., Chen Y.X., Hu Z., Wang Q., Wang W.*,
Chu L.Y., 2022. Hierarchical porous metal-organic framworks/polymer microparticles
for enhanced catalytic degradation of organic contaminants. Frontiers of Chemical Science and Engineering (2022 IF = 4.5), 16(6): 939-949.
Invited Paper [45]
Zhao J.J., Wang
W.*, Cai Q.W., Wang F., Xie R., Ju X.J., Liu Z., Chu L.Y.*,
2022. Efficient Detection of Hyperkalemia with Highly Transparent and Ion-Recognizable
Hydrogel Grating Sensors. Industrial & Engineering Chemistry Research (2022 IF = 4.2), 61: 2483-2493. [46]
Zhang Y.#,
Wang B.C.#, Wang P., Ju X.J., Zhang M.J.*, Xie R., Liu Z.,
Wang W.*, Chu L.Y., 2022. Microfluidic Fabrication of Hydrogel
Microparticles with MOF-Armoured Multi-Enzymes for Cascade Biocatalytic Reactions.
Reaction Chemistry & Engineering (2022 IF = 3.9), 7(2): 275-283. (#Contributed equally) Invited Paper for the Emerging Investigator Series of Reaction Chemicastry & Engineering This work has been featured in the Front Cover [47] Zhang T.X., Tao C., Ge S.X., Pan D.W.*, Li B.,
Huang W.X., Wang W., Chu L.Y., 2022. Interfaces coupling deformation mechanisms
of liquid-liquid-liquid three-phase flow in a confined microchannel. Chemical Engineering Journal (2022 IF = 15.1), 434: 134769. [48]
Liu Y.Q., Ju X.J.*,
Zhou X.L., Mu X.T., Tian X.Y., Zhang L., Liu Z., Wang W., Xie R., Chu L.Y., 2022. A novel chemosensor for sensitive and facile
detection of strontium ions based on ion-imprinted hydrogels modified with guanosine
derivatives. Journal of
Hazardous Materials (2022 IF = 13.6), 421: 126801. [49] Zhang C., Xie R.*, Liu Z., Ju X.J., Wang W., Chu L.Y.*, 2022. 3D
Helical Membranes for Process Intensification of Membrane Separation via Generation
of Dean Vortices. Journal of Membrane Science (2022 IF = 9.5), 662: 120969. [50]
Yin W.H., Zhou C.H.,
Ju X.J.*, Deng Y., Zhang L., Xie R., Wang W., Liu Z., Chu L.Y., 2022. Dual-functional polyetheretherketone surface
with programmed sequential drug release coating. Colloids and Surfaces B: Biointerfaces (2022 IF = 5.8), 219: 112806. [51]
Qin H.Y., Liu Z.*, Yang X.D.,
Liu Y.Q., Xie R., Ju X.J., Wang W., Chu L.Y.*, 2022. Pseudo
Polyampholytes with Sensitively Ion-Responsive Conformational Transition Based
on Positively Charged Host-Guest Complexes. Macromolecular
Rapid Communications (2022 IF = 4.6), 43(11): 2200127. [52]
Yang S.H., Ju X.J.*, Deng C.F.,
Cai Q.W., Su Y.Y., Xie R., Wang W., Liu Z., Pan D.W., Chu L.Y.*, 2022. Controllable Fabrication of Monodisperse Poly(vinyl alcohol) Microspheres
with Droplet Microfluidics for Embolization. Industrial & Engineering Chemistry
Research (2022 IF = 4.2), 61(34): 12619-12631. [53]
Tang X.Y., Liu Z.*, Xie R.,
Ju X.J., Wang W., Chu L.Y.*, 2022. Humidity-responsive Actuators Based on Firm Heterojunction
of Glycerol-crosslinked Polyvinyl Alcohol and Porous Polyvinylidene Fluoride as
Smart Gates for Anti-condensation. Industrial & Engineering Chemistry Research (2022 IF = 4.2), 61(23): 8101-8111. [54]
Pu X.Q., Ju X.J.*, Liu W.Y.,
Liu Y.Q., Li X.J., Li Y., Xie R., Wang W., Liu Z., Chu L.Y.*, 2022. Stimuli-Responsive Nanoparticles-Integrated Dissolving Microneedles
for Synergetic Chemo-Photothermal Therapy of Superficial Skin Tumors. Industrial & Engineering Chemistry Research (2022 IF = 4.2), 61(23): 7982-7995. [55]
Zou L.B., Gong J.Y., Ju X.J.*,
Liu Z., Wang W., Xie R., Chu L.Y., 2022. Smart membranes for biomedical
applications. Chinese Journal of Chemical Engineering (2022 IF = 3.8), 49: 34-45. Invited Paper for the Special Issue on Membranes for Life Science This work has been featured in the Back Cover [56]
Liu L.Y., Liu Z.*,
Peng H.Y., Mu X.T., Zhao Q., Ju X.J., Wang W., Xie R., Chu L.Y.*,
2022. Reduced Graphene Oxide Modified Melamine Sponges Filling with Paraffin for
Efficient Solar-Thermal Conversion and Heat Management. Chinese Journal of
Chemical Engineering (2022 IF = 3.8), 41: 497-506. Invited Paper for the Special Issue in memory of Professor Jiayong Chen [57]
Wang P., Zhang Y.L., Fu K.L., Liu Z.*, Zhang L., Liu C., Deng Y., Xie R., Ju X.J., Wang W.,
Chu L.Y., 2022. Zinc-coordinated Polydopamine Surface with Nanostructure
and Superhydrophilicity for Anti-biofouling and Antibacteria.
Materials Advances, 3(13): 5476-5487. [58]
Li X.J.#, Li Y.#, Meng Y, Pu X.Q., Qin J.W., Xie R., Wang W., Liu Z.,
Jiang L.*, Ju X.J.*, Chu L.Y., 2022. Composite dissolvable microneedle patch for
therapy of oral mucosal diseases. Biomaterials Advances, 139: 213001. (#Contributed equally) [59]
Peng J.#,
Zhao N.#, Lin S., Wang W.*, Zhang M.J., Su Y.-Y., Xie R., Ju X.J., Liu Z., Chu L.Y., 2021. Smart microfluidic analogue of Wheatstone-bridge for
real-time continuous detection with ultrasensitivity and wide dynamic range. Chemical Engineering
Journal (2022 IF = 15.1), 407, 127138. (#Contributed equally) [60]
Liu W.Y., Wang
W.*, Ju X.J., Liu Z., Xie R., Chu L.Y.*, 2021. Functional microparticles from
multiscale regulation of multiphase emulsions for mass-transfer intensification.
Chemical Engineering Science (2022 IF = 4.7), 231, 116242. [61]
Liu Y.Q., Ju X.J.*,
Pu X.Q., Wen S., Liu W.Y., Liu Z., Wang W., Xie R., Chu L.Y., 2021. Visual detection of trace lead(II) using a forward osmosis-driven device
loaded with ion-responsive nanogels. Journal of Hazardous Materials (2022 IF = 13.6), 404: 124157. [62]
Liu W.Y., Ju X.J.*,
Pu X.Q., Cai Q.W., Liu Y.Q., Liu Z., Wang W., Xie R., Chu L.Y.*,
2021. Functional Capsules Encapsulating Molecular-Recognizable
Nanogels for Facile Removal of Organic Micro-Pollutants from Water. Engineering
(2022 IF = 12.8), 7(5): 636-646. Invited Paper for the Special Issue on “Soft
Materials for Green Chemical Engineering” This work has been featured in the Back Cover [63]
Pu X.Q., Ju X.J.*, Zhang L.,
Cai Q.W., Liu Y.Q., Peng H.Y., Xie R., Wang W., Liu Z., Chu L.Y.*,
2021. Novel multifunctional stimuli-responsive nanoparticles for synergetic chemo-photothermal
therapy of tumors. ACS Applied Materials & Interfaces (2022 IF = 9.5), 13(24): 28802-28817. [64]
Jia Z.H., Xie R.*,
Qiu Y., Lv X.B., Ju X.J., Wang W., Liu Z., Chu L.Y., 2021. Magnetically Assembled
Photonic Crystal Gels with Wide Thermochromic Range and High Sensitivity. Macromolecular
Rapid Communications (2022 IF = 4.6), 42(15): 2100200. [65]
Fu G.B., Xie R.*, Qin J.W.,
Deng X.B., Ju X.J., Wang W., Liu Z., Chu L.Y.*, 2021. Facile
Fabrication of Photocatalyst-immobilized Gel Beads with Interconnected Macropores
for Efficient Removal of Pollutants in Water. Industrial & Engineering
Chemistry Research (2022 IF = 4.2), 60(24): 8762-8775. This work has been featured in the Front Cover [66]
Hu D.N., Ju X.J.*, Pu X.Q.,
Xie R., Wang W., Liu Z., Chu L.Y., 2021. Injectable Temperature/Glucose Dual-Responsive
Hydrogels for Controlled Release of Insulin. Industrial & Engineering Chemistry
Research (2022 IF = 4.2), 60(22): 8147-8158. [67] Chen Z.H., Liu Z.*, Zhang L., Cai Q.W., Hu J.Q., Wang W., Ju X.J.,
Xie R., Chu L.Y.*, 2021. Functional Graphene Oxide Nanosheets Modified with Cyclodextrins
for Removal of Bisphenol A from Water. Chinese Journal of Chemical Engineering (2022 IF = 3.8), 39: 79-87. [68] Chen L., Zhang M.J.,* Zhang S.-Y., Shi L., Yang Y.-M., Liu Z., Ju X.J., Xie R., Wang W.*, Chu L.Y., 2020. Simple and continuous fabrication
of self-propelled micromotors with photocatalytic metal-organic frameworks for
enhanced synergistic environmental remediation. ACS Applied Materials & Interfaces (2022 IF = 9.5), 12(31): 35120-35131. [69]
Zhao J.J., Wang
W.*, Wang F., Zhao Y., Cai Q.W., Xie R., Ju X.J., Liu Z., Faraj
Y., Chu L.Y.*, 2020. Smart Hydrogel
Grating Immunosensors for Highly Selective and Sensitive Detection of Human-IgG. Industrial & Engineering Chemistry Research
(2022 IF = 4.2), 59(22): 10469-10475. This work has been featured in the Front Cover [70]
Zhang M.J., Chen
T., Zhang P., Li Z.L., Chen L., Su Y.Y., Qiu L.D., Peng G., Wang W.*, Chu
L.Y., 2020. Magnetic hierarchical porous SiO2 microparticles from droplet
microfluidics for water decontamination. Soft Matter (2022 IF = 3.4), 16(10): 2581-2593. [71]
Peng H.Y., Wang W.*,
Xie R., Ju X.J., Liu Z., Faraj Y., Chu L.Y.*, 2020. Mesoscale regulation
of droplet templates to tailor microparticle structures and functions. Particuology (2022 IF = 3.5), 48: 74-87. Invited Paper for the Special Issue of “Meso-Science
in China” [72]
Zhang M.J., Zhang P., Qiu L.D., Chen T.,
Wang W.*, Chu L.Y., 2020. Controllable microfluidic fabrication
of microstructured functional materials. Biomicrofluidics (2022 IF = 3.2), 14(6): 061501. Invited Review [73] Lv X.B., Xie R.*, Ji J.Y.*, Liu Z., Wen X.Y., Liu L.Y., Hu J.Q., Ju X.J.,
Wang W., Chu L.Y., 2020. A Novel Strategy to Fabricate Cation-crosslinked
Graphene Oxide Membrane with High Aqueous Stability and High Separation Performance.
ACS Applied Materials
& Interfaces (2022 IF = 9.5), 12(50): 56269-56280. [74]
Xu M.H., Xie R.*,
Ju X.J., Wang W., Liu Z., Chu L.Y.*, 2020. Antifouling membranes
with bi-continuous porous structures and high fluxes prepared by vapor-induced
phase separation. Journal of Membrane Science (2022 IF = 9.5), 611: 118256. [75]
Liu W.Y., Ju X.J.*,
Yousef F., He F., Peng H.Y., Liu Y.Q., Liu Z., Wang W., Xie R., Chu L.Y.*,
2020. Capsule membranes encapsulated with smart nanogels for facile detection
of trace lead(II) ions in water. Journal of Membrane Science (2022 IF = 9.5), 613: 118523. [76]
Chen Z.H., Liu Z.*,
Hu J.Q., Cai Q.W., Li X.Y., Wang W., Faraj Y., Ju X.J., Xie R., Chu L.Y.*,
2020. β-Cyclodextrin-modified
graphene oxide membranes with large adsorption capacity and high flux for efficient
removal of bisphenol A from water. Journal of
Membrane Science (2022 IF = 9.5), 595: 117510. [77]
Zhang L.P., Liu Z.*,
Zhou X.L., Zhang C., Cai Q.W., Xie R., Ju X.J., Wang W., Faraj Y., Chu
L.Y.*, 2020. Novel composite membranes for simultaneous catalytic degradation
of organic contaminants and adsorption of heavy metal ions. Separation and
Purification Technology (2022 IF = 8.6), 237: 116364. Invited Paper for the Special Issue of “Chemical
Engineering in China” [78]
Zhao Q., Faraj Y.*, Liu L.Y.,
Wang W., Xie R., Liu Z., Ju X.J., Wei J., Chu L.Y., 2020. Simultaneous
determination of dopamine, uric acid and estriol in maternal urine samples based
on the synergetic effect of reduced graphene oxide, silver nanowires and silver
nanoparticles in their ternary 3D nanocomposite. Microchemical Journal (2022 IF = 4.8), 158: 105185. [79]
Ding S.Y., Faraj Y.*, Wei J.,
Wang W., Xie R., Liu Z., Ju X.J., Chu L.Y., 2020. Antimicrobial peptide-functionalized
magnetic nanoparticles for rapid capture and removal of pathogenic bacteria.
Microchemical Journal (2022 IF = 4.8), 159: 105493. [80] Hu J.Q., Liu Z.*, Chen Z.H., Cai Q.W., Li X.Y., Xie R., Ju X.J., Wang W., Chu L.Y.*, 2020. Hybrid Graphene Oxide/Laponite Layered Membranes with Stable 2D Nanochannels for Efficient Separations in Aqueous Environments. Industrial & Engineering Chemistry Research (2022 IF = 4.2), 59(27): 12441-12450. [81]
He F., Zhang M.J.,
Wang W.*, Cai Q.W., Su Y.Y., Liu Z., Faraj Y., Ju X.J., Xie
R., Chu L.Y.*, 2019. Designable Polymeric
Microparticles from Droplet Microfluidics for Controlled Drug Release. Advanced
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Zou X.Y., Xie R., Wang W., Liu Y.M., Chu L.Y.*, 2014.
Multi-stimuli-responsive microcapsules for adjustable controlled-release. Advanced Functional Materials (2022 IF = 19.0), 24(22): 3312-3323. This work has been featured in the Inside Front Cover [169]
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Wang W., Ju X.J., Xie R., Chu L.Y.*, 2014. Wetting-induced coalescence of nanoliter drops as microreactors in microfluidics. ACS Applied Materials & Interfaces (2022 IF = 9.5), 6(6): 3817-3821. [170]
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Liu Y.M., Ju X.J.*,
Xin Y., Zheng W.C., Wang W.,
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Liu Z., Xie R., Wang W., Wu J.F., Zhang Y.Q., Chu L.Y., 2014. Competitively
molecular-/ion-recognition responsive characteristics of poly(N-isopropylacrylamide-co-benzo-12-crown-4-acrylamide) copolymers
with benzo-12-crown-4 as both guest and host units. Macromolecular Rapid Communications
(2022 IF = 4.6), 35(14): 1280-1286. This work has been featured in the Back Cover [175]
Liang W.G., Yang C., Wen G.Q., Wang W., Ju X.J., Xie R., Chu L.Y.*, 2014. A facile and controllable method to encapsulate
phase change materials with non-toxic and biocompatible chemicals. Applied Thermal Engineering (2022 IF = 6.4), 70(1): 817-826. [176]
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Ju X.J., Wang W., Liu Z., Li X.Y., Chu L.Y.*, 2014. Visual detection of methanol in alcoholic beverages
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Ju X.J., Xie R., Wang W., Chu L.Y.*, 2014. Visual detection
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Liu Y.M., Wu W.,
Ju X.J., Wang W., Xie R., Mou C.L., Zheng W.C., Liu Z., Chu L.Y.*, 2014. Smart microcapsules
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2013. Hole-shell microparticles from controllably evolved double emulsions. Angewandte Chemie International Edition (2022 IF = 16.6), 52(31): 8084-8087.
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Wang W., Yao C., Zhang M.J., Ju X.J., Xie R., Chu L.Y.*,
2013. Thermo-driven microcrawlers
fabricated via a microfluidic approach. Journal of Physics D: Applied Physics (2022 IF = 3.4) (Special Issue on Microfluidics), 46(11):
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locomotion and fast Pb2+-response for micromanipulation. ACS Applied Materials & Interfaces
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Microfluidic fabrication of monodisperse
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Chen Q.M., Chu L.Y.*, 2013. Nano-structured smart hydrogels with rapid
response and high elasticity. Nature Communications (2022 IF = 16.6), 4: 2226 (doi: 10.1038/ncomms3226).
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August 6, 2013; No.16 on August 7, 2013; No.14 on August 8, 2013; No.10 on August 9, 2013; No.8 on August 10, 2013; No.8 on August 11, 2013; No.8 on August 12, 2013; No.8 on August 14, 2013; No.5 on August 15, 2013. [188]
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X.J., Wang W., Wang J.Y., Chu L.Y.*, 2013. pH-responsive Ca-alginate-based capsule membranes
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Microfluidic preparation of multicompartment microcapsules for isolated co-encapsulation
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Liu L., Yang J.P., Ju X.J., Xie R., Liu
Y.M., Wang W., Zhang J.J., Niu C.H., Chu L.Y.*, 2011. Monodisperse
core-shell chitosan microcapsules for pH-responsive burst release of hydrophobic
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articles of August 2010, and No.1 in Top Ten most-read Soft Matter articles of
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