No. 30 Haoyue Lv, Xiaoman Duan, Zhaoyu Han, Haozhen Yu, and Biwu Liu* Biosens. Bioelectron. 2023, 115864. |
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No. 29 Zhenglian Li, Yanguan Lv, Xiaoman Duan, Biwu Liu,* and Yongxi Zhao* Angew. Chem. Int. Ed.2023, e202312975.
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No. 28 A facile method for purifying DNA-modified small particles and soft materials using aqueous two-phase systems. Xiaoman Duan, and Biwu Liu* Chem. Commun. 2023, 59, 9130-9133. |
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No. 27 A Nanozymatic Solution to Acute Lung Injury Xiaoman Duan, and Biwu Liu* ACS Cent. Sci. 2022, 8 (1), 7-9. |
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No. 26 Metal Oxide-Based Nanozymes for Biosensing in Nanozymes: Advances and Applications Biwu Liu and Juewen Liu* Edited by Sundaram Gunasekaran, CRC Press/Taylor & Francis (2021) |
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No. 25 Heating Drives DNA to Hydrophobic Regions While Freezing Drives DNA to Hydrophilic Regions of Graphene Oxide for Highly Robust Biosensors Biwu Liu, Yu Zhao, Yu Jia and Juewen Liu* J. Am. Chem. Soc. 2020, 142 (34), 14702-14709. |
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No. 24 Molecular Detection Using Nanozymes in Nanostructure Science and Technology. Biwu Liu and Juewen Liu* Xiyun Yan (Eds): Nanozymology, Springer, Page 395-424 (2020) |
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No. 23 Sensors and biosensors based on metal oxide nanomaterials Biwu Liu and Juewen Liu* TrAC, Trends Anal. Chem. 2019, 121, 115690. |
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No. 22 Interface-Driven Hybrid Materials Based on DNA-Functionalized Gold Nanoparticles Biwu Liu and Juewen Liu* Matter 2019, 1 (4), 825-847 |
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No. 21 Freezing-Driven DNA Adsorption on Gold Nanoparticles: Tolerating Extremely Low Salt Concentration but Requiring High DNA Concentration Biwu Liu, and Juewen Liu* Langmuir 2019, 35 (19), 6476-6482. |
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No. 20 Freezing-Directed Stretching and Alignment of DNA Oligonucleotides Biwu Liu, Tianyi Wu, Zhicheng Huang, Yibo Liu, and Juewen Liu* Angew. Chem. Int. Ed. 2019, 58 (7), 2109-2113. |
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No. 19 Polyvalent Spherical Nucleic Acids for Universal Display of Functional DNA with Ultrahigh Stability Biwu Liu, Zhicheng Huang and Juewen Liu* Angew. Chem. Int. Ed. 2018, 57 (30), 9439-9442. |
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No. 18 Bromide as a Robust Backfiller on Gold for Precise Control of DNA Conformation and High Stability of Spherical Nucleic Acids Biwu Liu, Peng Wu, Zhicheng Huang, Lingzi Ma and Juewen Liu* J. Am. Chem. Soc. 2018, 140 (13), 4499-4502. |
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No. 17 Janus DNA Orthogonal Adsorption of Graphene Oxide and Metal Oxide Nanoparticles Enabling Stable Sensing in Serum Biwu Liu, Lingzi Ma, Zhicheng Huang, Hao Hu, Peng Wu, Juewen Liu* Materials Horizons 2018, 5 (1), 65-69. |
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No. 16 Freezing Directed Construction of Bio/Nano Interfaces: Reagentless Conjugation, Denser Spherical Nucleic Acids, and Better Nanoflares Biwu Liu and Juewen Liu* J. Am. Chem. Soc. 2017, 139 (28), 9471-9474. |
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No. 15 Filling in the Gaps between Nanozymes and Enzymes: Challenges and Opportunities Yibo Zhou,# Biwu Liu,# Ronghua Yang and Juewen Liu* Bioconjugate Chem. 2017, 28 (12), 2903-2909. |
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No. 14 Methods for Preparing DNA-Functionalized Gold Nanoparticles, A Key Reagent of Bioanalytical Chemistry Biwu Liu and Juewen Liu* Analytical Methods 2017, 9 (18), 2633-2643. |
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No. 13 Surface modification of nanozymes Biwu Liu and Juewen Liu* Nano Research 2017, 10 (4), 1-24. |
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No. 12 DNA Adsorbed on Graphene and Graphene Oxide: Fundamental Interactions, Desorption and Applications Biwu Liu,# Shehan Salgado, # Vivek Maheshwari* and Juewen Liu* Curr. Opin. Colloid Interface Sci. 2016, 26, 41-49. |
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No. 11 Iron oxide nanozyme catalyzed synthesis of fluorescent polydopamine for light-up Zn2+ detection Biwu Liu, Xiao Han, and Juewen Liu* Nanoscale 2016, 8 (28), 13620-13626. |
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No. 10 Boosting the Oxidase Mimicking Activity of Nanoceria by Fluoride Capping: Rivaling Protein Enzymes and Ultrasensitive F- Detection Biwu Liu, Zhicheng Huang, and Juewen Liu* Nanoscale 2016, 8 (28), 13562-13567. |
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No. 9 Graphene Oxide Surface Blocking Agents Can Increase the DNA Biosensor Sensitivity Biwu Liu, Po-Jung Jimmy Huang, Erin Y. Kelly and Juewen Liu* Biotechnol. J. 2016, 11 (6), 780-787. |
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No. 8 Comprehensive Screen of Metal Oxide Nanoparticles for DNA Adsorption, Fluorescence Quenching, and Anion Discrimination Biwu Liu and Juewen Liu* ACS Appl. Mater. Interfaces 2015, 7 (44), 24833-24838. |
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No. 7 Accelerating Peroxidase Mimicking Nanozymes Using DNA Biwu Liu and Juewen Liu* Nanoscale 2015, 7 (33), 13831-13835. |
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No. 6 Hydrogen Peroxide Displacing DNA from Nanoceria: Mechanism and Detection of Glucose in Serum Biwu Liu, Ziyi Sun, Po-Jung Jimmy Huang and Juewen Liu* J. Am. Chem. Soc. 2015, 137 (3), 1290-1295. |
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No. 5 DNA Adsorption by Indium Tin Oxide Nanoparticles Biwu Liu and Juewen Liu* Langmuir 2015, 31 (1), 371-377. |
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No. 4 Cation-Size-Dependent DNA Adsorption Kinetics and Packing Density on Gold Nanoparticles: An Opposite Trend Biwu Liu, Erin Y. Kelly, and Juewen Liu* Langmuir 2014, 30 (44), 13228-13234. |
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No. 3 Adsorption by Magnetic Iron Oxide Nanoparticles and Its Application for Arsenate Detection Biwu Liu and Juewen Liu* Chem. Commun. 2014, 50 (62), 8568-8570. |
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No. 2 Parts-per-Million of Polyethylene Glycol as a Non-Interfering Blocking Agent for Homogeneous Biosensor Development Biwu Liu, Po-Jung Jimmy Huang, Xu Zhang, Feng Wang, Rachel Pautler, Alexander Ip and Juewen Liu* Anal. Chem. 2013, 85 (21), 10045-10050. |
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No. 1 Mechanisms of DNA Sensing on Graphene Oxide Biwu Liu, Ziyi Sun, Xu Zhang, and Juewen Liu* Anal. Chem. 2013, 85 (16), 7987-7993. |
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