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2021年发表文章

发布者: [发表时间]:2021-01-09 [来源]: [浏览次数]:

[1]. Yuebin Xi, Xue Liu, Wenlong Xiong, Huan Wang, Xingxiang Ji, Fangong Kong, Gaixiu Yang, Jingliang Xu, Converting amorphous kraft lignin to hollow carbon shell frameworks as electrode materials for lithium-ion batteries and supercapacitors. Industrial Crops and Products, 2021,174, 114184.

[2]. Zhou, K.; Guo, X.; Guo, Y.; Zhuang, R.; Chen, H.; Wang, S.; Bao, Y.; Han, D.; Niu, L., A Novel Method to Prepare Flexible 3D NiO Nanosheets Electrodes for Alkaline Rechargeable Ni-Zn Batteries. Chemelectrochem 2021, 8 (12), 2214-2220.

[3]. Zheng, J.; Wu, Y.; Tong, Y.; Liu, X.; Sun, Y.; Li, H.; Niu, L., High Capacity and Fast Kinetics of Potassium-Ion Batteries Boosted by Nitrogen-Doped Mesoporous Carbon Spheres. Nano-Micro Letters 2021, 13 (174).

[4]. Zheng, J.; Wu, Y.; Sun, Y.; Rong, J.; Li, H.; Niu, L., Advanced Anode Materials of Potassium Ion Batteries: from Zero Dimension to Three Dimensions. Nano-Micro Letters 2021, 13 (12).

[5]. Zheng, J.; Sun, Y.; Wu, Y.; Rong, J.; Wang, Z.; Li, H.; Niu, L., Ultralong cycle life and high rate potassium ion batteries enabled by multi-level porous carbon. Journal of Power Sources 2021, 492, 229614.

[6]. Zhang, X.; Zhao, X.; Chen, K.; Fan, Y.; Wei, S.; Zhang, W.; Han, D.; Niu, L., Palladium-modified cuprous(i) oxide with {100} facets for photocatalytic CO2reduction. Nanoscale 2021, 13 (5), 2883-2890.

[7]. Zhang, X.; Han, D.; Dai, M.; Chen, K.; Han, Z.; Fan, Y.; He, Y.; Han, D.; Niu, L., Enhanced photocatalytic degradation of tetracycline by constructing a controllable Cu2O-TiO2heterojunction with specific crystal facets. Catalysis Science & Technology 2021, 11 (18), 6248-6256.

[8]. Zhang, N.; Han, K.; Li, Y.; Wang, C.; Zhao, F.; Han, D.; Niu, L., Core-shell Heterostructure Construction Between Thiospinel CuCo2S4and MoS2for Improved Hydrogen Evolution Electrocatalytic Performance. Chemical Journal of Chinese Universities-Chinese 2021, 42 (4), 1307-1314.

[9]. Zhang, B.; Kong, Y.; Liu, H.; Chen, B.; Zhao, B.; Luo, Y.; Chen, L.; Zhang, Y.; Han, D.; Zhao, Z.; Tang, B. Z.; Niu, L., Aggregation-induced delayed fluorescence luminogens: the innovation of purely organic emitters for aqueous electrochemiluminescence. Chemical Science 2021, 12 (40), 13283-13291.

[10]. Zeng, Z.; Huang, P.; Kong, Y.; Tong, L.; Zhang, B.; Luo, Y.; Chen, L.; Zhang, Y.; Han, D.; Niu, L., Nanoencapsulation strategy: enabling electrochemiluminescence of thermally activated delayed fluorescence (TADF) emitters in aqueous media. Chemical Communications 2021, 57 (43), 5262-5265.

[11]. Ye, X.; Wang, X.; Kong, Y.; Dai, M.; Han, D.; Liu, Z., FRET Modulated Signaling: A Versatile Strategy to Construct Photoelectrochemical Microsensors for In Vivo Analysis. Angewandte Chemie-International Edition 2021, 60 (21), 11774-11778.

[12]. Xue, K.; Si, Y.; Xie, S.; Yang, J.; Mo, Y.; Long, B.; Wei, W.; Cao, P.; Wei, H.; Guan, H.; Michaelis, E. G.; Guo, G.; Yue, Y.; Shan, C., Free-Standing N-Doped Porous Carbon Fiber Membrane Derived from Zn-MOF-74: Synthesis and Application as Anode for Sodium-Ion Battery with an Excellent Performance. Frontiers in Chemistry 2021, 9.

[13]. Xiao, J.; Tian, M.; Su, L.; Bao, Y.; Niu, L.; Zhang, X., Detection of the effect of polydopamine (PDA)-coated polydimethylsiloxane (PDMS) substrates on the release of H2O2from a single HeLa cell. Analyst 2021, 146 (21), 6445-6449.

[14]. Wu, Y.; Zheng, J.; Tong, Y.; Liu, X.; Sun, Y.; Niu, L.; Li, H., Carbon Hollow Tube-Confined Sb/Sb2S3Nanorod Fragments as Highly Stable Anodes for Potassium-Ion Batteries. ACS Applied Materials & Interfaces 2021, 13 (43), 51066-51077.

[15]. Wu, Y.; Sun, Y.; Zheng, J.; Rong, J.; Li, H.; Niu, L., Exploring MXene-based materials for next-generation rechargeable batteries. Journal of Physics-Energy 2021, 3 (3), 032009.

[16]. Wu, Y.; Sun, Y.; Zheng, J.; Rong, J.; Li, H.; Niu, L., MXenes: Advanced materials in potassium ion batteries. Chemical Engineering Journal 2021, 404, 126565.

[17]. Wu, Y.; Sun, Y.; Tong, Y.; Liu, X.; Zheng, J.; Han, D.; Li, H.; Niu, L., Recent advances in potassium-ion hybrid capacitors: Electrode materials, storage mechanisms and performance evaluation. Energy Storage Materials 2021, 41, 108-132.

[18]. Wu, T.; Xu, Y.; Wang, H.; Sun, Z.; Zou, L., Efficient and inexpensive preparation of graphene laminated film with ultrahigh thermal conductivity. Carbon 2021, 171, 639-645.

[19]. Wu, F.; Zhao, J.; Han, D.; Zhao, S.; Zhu, R.; Cui, G., A three-electrode integrated electrochemical platform based on nanoporous gold for the simultaneous determination of hydroquinone and catechol with high selectivity. Analyst 2021, 146 (1), 232-243.

[20]. Wei, S.; Zhu, X.; Zhang, P.; Fan, Y.; Sun, Z.; Zhao, X.; Han, D.; Niu, L., Aerobic oxidation of methane to formaldehyde mediated by crystal-O over gold modified tungsten trioxide via photocatalysis. Applied Catalysis B-Environmental 2021, 283, 119661.

[21]. Wei, Q.; Yao, X.; Zhang, Q.; Yan, P.; Ru, C.; Li, C.; Tao, C.; Wang, W.; Han, D.; Han, D.; Niu, L.; Qin, D.; Pan, X., Nanostructured Lateral Boryl Substitution Conjugated Donor-Acceptor Oligomers for Visible-Light-Driven Hydrogen Production. Small 2021, 17 (23), 2100132.

[22]. Wang, X.-T.; Yu, H.-Y.; Liang, H.-J.; Gu, Z.-Y.; Nie, P.; Wang, H.-Y.; Guo, J.-Z.; Ang, E. H.; Wu, X.-L., Waste utilization of crab shell: 3D hierarchical porous carbon towards high-performance Na/Li storage. New Journal of Chemistry 2021, 45 (41), 19439-19445.

[23]. Wang, S.; Zhong, L.; Gan, S.; Tang, Y.; Qiu, S.; Lyu, Y.; Ma, Y.; Niu, L., Defective vs high-quality graphene for solid-contact ion-selective electrodes: Effects of capacitance and hydrophobicity. Electrochemistry Communications 2021, 129, 107091.

[24]. Wang, Q.; Li, Y.; Guan, H.; Yu, H.; Wang, X., Hydroxyapatite-Supported Polyoxometalates for the Highly Selective Aerobic Oxidation of 5-Hydroxymethylfurfural or Glucose to 2,5-Diformylfuran under Atmospheric Pressure. Chempluschem 2021, 86 (7), 997-1005.

[25]. Wang, H.; Xu, Y.; Chen, L.; Wu, J.; Wang, Q.; Zhang, B.; Xie, Z., H2O treatment -induced uniform NiOXinterfacial layer boosting brightness and light-emitting efficiency of blue perovskite electroluminescence. Organic Electronics 2021, 98, 106299.

[26]. Tian, Y.; Zhao, J.; Han, D.; Zhao, S.; Zhang, Y.; Cui, G., Study of a novel fabrication method of 3D Ag-based nanoporous structures for electrochemical detection. Journal of Electroanalytical Chemistry 2021, 882, 114990.

[27]. Sun, Y.; Zheng, J.; Yang, Y.; Zhao, J.; Rong, J.; Li, H.; Niu, L., Design advanced porous Polyaniline-PEDOT: PSS composite as high performance cathode for sodium ion batteries. Composites Communications 2021, 24, 100674.

[28]. Sun, H.; Liu, B.; Ma, Y.; Lee, J.-W.; Yang, J.; Wang, J.; Li, Y.; Li, B.; Feng, K.; Shi, Y.; Zhang, B.; Han, D.; Meng, H.; Niu, L.; Kim, B. J.; Zheng, Q.; Guo, X., Regioregular Narrow-Bandgap n-Type Polymers with High Electron Mobility Enabling Highly Efficient All-Polymer Solar Cells. Advanced Materials 2021, 33 (37), 2102635.

[29]. Rong, M.; Wang, D.; Li, Y.; Zhang, Y.; Huang, H.; Liu, R.; Deng, X., Green-Emitting Carbon Dots as Fluorescent Probe for Nitrite Detection. Journal of Analysis and Testing 2021, 5 (1), 51-59.

[30]. Qu, D.; Zhao, B.; Song, Z.; Wang, D.; Kong, H.; Gan, S.; Ma, Y.; Dong, X.; Han, D.; Niu, L., Two-dimensional N/O co-doped porous turbostratic carbon nanomeshes with expanded interlayer spacing as host material for potassium/lithium half/full batteries. Journal of Materials Chemistry A 2021, 9 (44), 25094-25103.

[31]. Mao, Y.; Huang, L.; Liu, Z.; He, Y.; Wang, W.; Bao, Y.; Niu, L., Improved performance of wrinkled CoNi-LDHs via in situ immobilization onto cotton gauze for solid phase extraction of non-steroidal anti-inflammatory drugs. Microchemical Journal 2021, 164, 106053.

[32]. Mahmood, A.; Zhao, B.; Xie, N.; Li, N., Ionic liquids as precursors for Fe-N doped carbon nanotube electrocatalysts for the oxygen reduction reaction. Nanoscale 2021, 13 (37), 15804-15811.

[33]. Mahmood, A.; Xie, N.; Zhao, B.; Zhong, L.; Zhang, Y.; Li, N., Optimizing Surface N-Doping of Fe-N-C Catalysts Derived from Fe/Melamine-Decorated Polyaniline for Oxygen Reduction Electrocatalysis. Advanced Materials Interfaces 2021, 8 (13), 2100197.

[34]. Ma, C.; Wang, T.; Li, F.; Guan, H.; Chen, W.; Zhang, L.; Zheng, Y.; Wang, C.; Tang, Q.; Chen, W., Polyoxometalates-Based Semi-flexible Metal-Semiconductor Triboelectric Nanogenerators for Low Frequency and Small Amplitude Mechanical Energy Harvesting. Chemistry-a European Journal 2021, 27 (39), 10115-10122.

[35]. Lyu, Y.; Zhang, Y.; Xu, L.; Zhong, L.; Sun, Z.; Ma, Y.; Bao, Y.; Gan, S.; Niu, L., Solid-Contact Ion Sensing Without Using an Ion-Selective Membrane through Classic Li-Ion Battery Materials. Analytical Chemistry 2021, 93 (21), 7588-7595.

[36]. Luo, Y.; Song, T.; Ji, H.; Qi, H.; Xiang, Z.; Xiong, H.; Cen, Y.; Chen, G.; Han, T.; Pranovich, A., Preliminary Investigations of the Mechanisms Involved in the Ultrasonication-Assisted Production of Carboxylic Cellulose Nanocrystals with Different Structural Carboxylic Acids. ACS Sustainable Chemistry & Engineering 2021, 9 (12), 4531-4542.

[37]. Lu, Z.; Yang, Q.; Pan, H.; Liu, Z.; Huang, X.; Chen, X.; Niu, L., Bifunctional oxygen electrocatalysis at Co-B, N, S-graphene composite investigated by scanning electrochemical microscopy at variable temperatures and its application in Zn-air battery. Electrochimica Acta 2021, 389,138751.

[38]. Liu, X.; Sun, Y.; Tong, Y.; Wang, X.; Zheng, J.; Wu, Y.; Li, H.; Niu, L.; Hou, Y., Exploration in materials, electrolytes and performance towards metal ion (Li, Na, K, Zn and Mg)-based hybrid capacitors: A review. Nano Energy 2021, 86, 106070.

[39]. Liu, B.; Sun, H.; Lee, J.-W.; Yang, J.; Wang, J.; Li, Y.; Li, B.; Xu, M.; Liao, Q.; Zhang, W.; Han, D.; Niu, L.; Meng, H.; Kim, B. J.; Guo, X., Achieving highly efficient all-polymer solar cells by green-solvent-processing under ambient atmosphere. Energy & Environmental Science 2021, 14 (8), 4499-4507.

[40]. Liang, Z.; Han, D.; Han, F.; Wu, Z.; Zhao, X.; Fu, W.; Wang, W.; Han, D.; Niu, L., Novel strategy of natural antioxidant nutrition quality evaluation in food: Oxidation resistance mechanism and synergistic effects investigation. Food Chemistry 2021, 359, 129768.

[41]. Liang, H.-J.; Gu, Z.-Y.; Zheng, X.-Y.; Li, W.-H.; Zhu, L.-Y.; Sun, Z.-H.; Meng, Y.-F.; Yu, H.-Y.; Hou, X.-K.; Wu, X.-L., Tempura-like carbon/carbon composite as advanced anode materials for K-ion batteries. Journal of Energy Chemistry 2021, 59, 589-598.

[42]. Li, X.; Luo, S.; Sun, H.; Sung, H. H.-Y.; Yu, H.; Liu, T.; Xiao, Y.; Bai, F.; Pan, M.; Lu, X.; Williams, I. D.; Guo, X.; Li, Y.; Yan, H., Medium band-gap non-fullerene acceptors based on a benzothiophene donor moiety enabling high-performance indoor organic photovoltaics. Energy & Environmental Science 2021, 14 (8), 4555-4563.

[43]. Li, H.; Wang, R.; Kang, J.; Li, S.; Zhou, A.-J.; Han, D.-x.; Guan, H.-Y.; Austin, D. J.; Yue, Y., Syntheses, formation mechanisms and structures of a series of linear diborazanes. Crystengcomm 2021, 23 (2), 404-410.

[44]. Krucaite, G.; Tavgeniene, D.; Blazevicius, D.; Zhang, B.; Vembris, A.; Grigalevicius, S., New Electroactive Polymers with Electronically Isolated 4,7-Diarylfluorene Chromophores as Positive Charge Transporting Layer Materials for OLEDs. Molecules 2021, 26 (7), 1936.

[45]. Krucaite, G.; Beresneviciute, R.; Tavgeniene, D.; Grigalevicius, S.; Zhang, B.; Gruodis, A.; Chernyakova, K.; Karpicz, R., Hole-transporting materials based on diarylfluorene compounds containing different substituents: DFT simulation, spectroscopic characterization and applications in organic light emitting diodes. Optical Materials 2021, 119, 111345.

[46]. Kong, Y.; Zeng, Z.-H.; Huang, P.; Luo, Y.-L.; Zhang, B.-H.; Chen, L.-J.; Zhang, Y.-W.; Han, D.-X.; Cheng, Y.-X.; Niu, L., Multiple Modes of Electrochemiluminescence Using Thermally Activated Delayed Fluorescent Polymer. Chinese Journal of Analytical Chemistry 2021, 49 (6), 1015-1024.

[47]. Kong, H.; Song, Z.; Li, W.; Bao, Y.; Qu, D.; Ma, Y.; Liu, Z.; Wang, W.; Wang, Z.; Han, D.; Niu, L., Skin-Inspired Hair-Epidermis-Dermis Hierarchical Structures for Electronic Skin Sensors with High Sensitivity over a Wide Linear Range. ACS Nano 2021, 15 (10), 16218-16227.

[48]. Javed, M. S.; Najam, T.; Hussain, I.; Shah, S. S. A.; Ibraheem, S.; Mahmood, A.; Imran, M.; Assiri, M. A.; Siyal, S. H., Novel 2D vanadium oxysulfide nano-spindles decorated carbon textile composite as an advanced electrode for high-performance pseudocapacitors. Materials Letters 2021, 303,130478.

[49]. Huang, P.; Zhang, B.; Hu, Q.; Zhao, B.; Zhu, Y.; Zhang, Y.; Kong, Y.; Zeng, Z.; Bao, Y.; Wang, W.; Cheng, Y.; Niu, L., Polymer Electrochemiluminescence Featuring Thermally Activated Delayed Fluorescence. Chemphyschem 2021, 22 (8), 726-732.

[50]. Huang, J.; Yang, J.; Li, D.; Sun, H.; Su, M.; Ji, X.; Li, B.; Li, B.; Liao, Q.; Han, D.; Yan, H.; Niu, L.; Wang, D.; Guo, X., A low-cost and green-solvent-processable hole-transport material enabled by a traditional bidentate ligand for highly efficient inverted perovskite solar cells. Journal of Materials Chemistry C 2021, 9 (28), 8930-8938.

[51]. Hu, Q.; Su, L.; Mao, Y.; Gan, S.; Bao, Y.; Qin, D.; Wang, W.; Zhang, Y.; Niu, L., Electrochemically induced grafting of ferrocenyl polymers for ultrasensitive cleavage-based interrogation of matrix metalloproteinase activity. Biosensors & Bioelectronics 2021, 178,113010.

[52]. Hu, Q.; Su, L.; Huang, Y.; Chen, Z.; Cao, X.; Luo, Y.; Qin, D.; Niu, L., Coenzyme-mediated electro-grafting for ultrasensitive electrochemical DNA biosensing. Sensors and Actuators B-Chemical 2021, 346, 130551.

[53]. Hu, Q.; Su, L.; Chen, Z.; Huang, Y.; Qin, D.; Niu, L., Coenzyme-Mediated Electro-RAFT Polymerization for Amplified Electrochemical Interrogation of Trypsin Activity. Analytical Chemistry 2021, 93 (27), 9602-9608.

[54]. He, D.; Zhong, L.; Gan, S.; Xie, J.; Wang, W.; Liu, Z.; Guo, W.; Yang, X.; Niu, L., Hydrogen peroxide electrosynthesis via regulating the oxygen reduction reaction pathway on Pt noble metal with ion poisoning. Electrochimica Acta 2021, 371,137721.

[55]. Han, L.; Li, J.; Wang, S.; Cheng, W.; Ma, L.; Liu, G.; Han, D.; Niu, L., The inhibitory effects of sesamol and sesamolin on the glycidyl esters formation during deodorization of vegetables oils. Journal of the Science of Food and Agriculture 2021, 101 (9), 3605-3612.

[56]. Han, L.; He, Y. E.; Wang, S.; Cheng, W.; Ma, L.; Liu, G.; Han, D.; Niu, L. I., Effects of Methyl Cellulose and Soybean Protein Isolate Coating on Amount of Oil and Chemical Hazards in Chinese Fried Dough Cake. Journal of Food Protection 2021, 84 (8), 1333-1339.

[57]. Han, L.; He, Y.; Wang, S.; Cheng, W.; Ma, L.; Liu, G.; Han, D.; Niu, L., Effects of methyl cellulose-based coating on physiochemical properties and chemical hazards of Chinese fried dough cake during storage. International Journal of Food Science and Technology 2021, 56 (9), 4770-4779.

[58]. Han, F.; Song, Z.; Xu, J.; Dai, M.; Luo, S.; Han, D.; Niu, L.; Wang, Z., Oxidized titanium carbide MXene-enabled photoelectrochemical sensor for quantifying synergistic interaction of ascorbic acid based antioxidants system. Biosensors & Bioelectronics 2021, 177, 112978.

[59]. Gu, Z.-Y.; Guo, J.-Z.; Zhao, X.-X.; Wang, X.-T.; Xie, D.; Sun, Z.-H.; Zhao, C.-D.; Liang, H.-J.; Li, W.-H.; Wu, X.-L., High-ionicity fluorophosphate lattice via aliovalent substitution as advanced cathode materials in sodium-ion batteries. Infomat 2021, 3 (6), 694-704.

[60]. Gu, Z.-Y.; Guo, J.-Z.; Sun, Z.-H.; Zhao, X.-X.; Wang, X.-T.; Liang, H.-J.; Zhao, B.; Li, W.-H.; Pan, X.-M.; Wu, X.-L., Aliovalent-Ion-Induced Lattice Regulation Based on Charge Balance Theory: Advanced Fluorophosphate Cathode for Sodium-Ion Full Batteries. Small 2021, 17 (32). 202102010.

[61]. Gao, F.; Yang, Y.; Qiu, W.; Song, Z.; Wang, Q.; Li, N., Ni3C/Ni Nanochains for Electrochemical Sensing of Glucose. ACS Applied Nano Materials 2021, 4 (8), 8520-8529.

[62]. Gao, B.; Zhao, X.; Liang, Z.; Wu, Z.; Wang, W.; Han, D.; Niu, L., CdS/TiO2Nanocomposite-Based Photoelectrochemical Sensor for a Sensitive Determination of Nitrite in Principle of Etching Reaction. Analytical Chemistry 2021, 93 (2), 820-827.

[63]. Gao, B.; Liang, Z.; Han, D.; Han, F.; Fu, W.; Wang, W.; Liu, Z.; Niu, L., Molecularly imprinted photo-electrochemical sensor for hemoglobin detection based on titanium dioxide nanotube arrays loaded with CdS quantum dots. Talanta 2021, 224, 121924.

[64]. Fan, Y.; Zhou, W.; Qiu, X.; Li, H.; Jiang, Y.; Sun, Z.; Han, D.; Niu, L.; Tang, Z., Selective photocatalytic oxidation of methane by quantum-sized bismuth vanadate. Nature Sustainability 2021, 4 (6), 509-515.

[65]. Dai, M.; Ma, W.; Han, F.; Han, D.; Han, L.; Wang, W.; Zhao, B.; Han, D.; Niu, L.; Wang, Z., 3D Tungsten Trioxide Nanosheets as Optoelectronic Materials for On-chip Quantification of Global Antioxidant Capacity. Chemical Research in Chinese Universities 2021, 37 (3), 763-771.

[66]. Chen, Y.-N.; He, T.-F.; Cheng, Y.-X.; Zhan, H.-M.; Ren, A.-M.; Wu, T.-S.; Zhang, B.-H.; Zhang, Y.-L.; Zhang, H.-X.; Zou, L.-Y., Theoretical design study on the origin of the improved phosphorescent efficiency of DPEphos quinoline-substituted derivatives for OLEDs. Organic Electronics 2021, 97, 106185.

[67]. Amara, U.; Mahmood, K.; Riaz, S.; Nasir, M.; Hayat, A.; Hanif, M.; Yaqub, M.; Han, D.; Niu, L.; Nawaz, M. H., Self-assembled perylene-tetracarboxylic acid/multi-walled carbon nanotube adducts based modification of screen-printed interface for efficient enzyme immobilization towards glucose biosensing. Microchemical Journal 2021, 165, 106109.