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- [1]. Boron Clusters Escort Doxorubicin Squashing into Exosomes and Overcome Drug Resistance. Advanced Science. 2412501. 2024.
- [2]. Electronic structure modulated by B-doped Cu promotes electrocatalytic nitrate reduction for ammonia production. ACS Catalysis. (15). 156-166. 2024.
- [3]. Efficient Targeted Regulation of the Interfaces and Bulk in Inverted Perovskite Solar Cells with a [closo-B12H12]2--based Derivative. Advanced Materials. 2414155. 2024.
- [4]. Boron Doped Nanomaterials for Photocatalysis. Journal of Photochemistry & Photobiology, C: Photochemistry Reviews. 60–61. 100679. 2024.
- [5]. Curvature strain tunes electron transfer accelerates peroxymonosulfate activation to achieve high-efficiency advanced oxidation. Chemical Engineering Journal. 2024.
- [6]. Efficient hydrolytic dehydrogenation of ammonia borane catalyzed by ultrafine Pt clusters confined in Ni–Ti layered double hydroxides with closo-dodecaborate. International Journal of Hydrogen Energy. 82. 901-909. 2024.
- [7]. Surface crystallized supramolecular to achieve highly dispersed ultrafine nano-palladium in-situ deposition to promote thermal/electrocatalytic reduction. Journal of Colloid and Interface Science. 2024.
- [8]. Catalytic Nano-Gold Immobilized on the Inner Surfaces of Halloysite Nanotubes for Selective Reduction of Nitroaromatics. ACS Appl. Nano Mater.. (7). 16669−16678. 2024.
- [9]. Anti-Tumor Therapy through High ROS Performance induced by Ag Nanoenzyme from Boron Cluster with Halloysite Clay Nanotubes. Colloids and Surfaces B: Biointerfaces. 114060. 2024.
- [10]. Anti-Tumor Therapy through photothermal performance synergized with catalytic activity based on the Boron cluster Supramolecular Frameworks. ACS Applied Materials & Interfaces. 2024.
- [11]. Boron Cluster Renders Organic Radicals Water-Stable for Photothermal Anti-Infections. ACS Applied Materials & Interfaces. 2024.
- [12]. Recognizing nitroimidazole from nitrofuran via luminescence sensing. Chemical Communications. 2024.
- [13]. Chaotropic Effect-Induced Sol–Gel Transition and Radical Stabilization for Bacterially Sensitive Near-Infrared Photothermal Therapy. Nano Letters. 2024.
- [14]. Deformation Behavior of Eutectic Gallium−Indium under Electric Fields. Journal of Chemical Education. 101 (2). 693-700. 2024.
- [15]. Coupling Au with BO x matrix induced by Closo-boron cluster for electrochemical synthesis of ammonia. Journal of Energy Chemistry. 2024.
- [16]. Platinum group nanoparticles Doped BCN matrix: Efficient catalysts for the electrocatalytic reduction of nitrate to ammonia. Journal of Colloid And Interface Science. 2024.
- [17]. A new strategy for boron cluster-based metal boride (Co2B) synthesis and its applicability to electrocatalytic nitrate reduction. Chemical Engineering Journal. 485. 149639. 2024.
- [18]. NiPdMo nanoparticles reduced by Cs[closo-B 6 H 7 ] as high-performance catalysts for hydrogen generation from hydrolysis of ammonia borane. International Journal of Hydrogen Energy. 60. 451-457. 2024.
- [19]. Platinum Nanoparticles Prevent the Resistance of Pseudomonas aeruginosa to Ciprofloxacin and Imipenem: Mechanism Insights. ACS Nano. 17 (24). 24685–24695. 2023.
- [20]. Synthesis of iron-boride/carbon-nitride composites and their applications in chemodynamic therapy. Journal of Colloid and Interface Science. 658. 276-285. 2023.
- [21]. Engineering different B doping modes on Ru active sites for efficient alkaline hydrogen evolution. Journal of Materials Chemistry A. 2023.
- [22]. Applications of Boron Cluster Supramolecular Frameworks as Metal-Free Chemodynamic Therapy Agents for Melanoma. Small. 2023.
- [23]. High Faraday efficiency of Cu 1 Co 1 -BCN based on a dodecahydro-closo-dodecaborate hybrid for electrocatalytic reduction of nitrate to ammonia. Journal of Materials Chemistry A. (11). 20234-20241. 2023.
- [24]. Selective oxidation of anilines to azobenzenes by an Ag nanoparticles photocatalyst. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2023.
- [25]. Performance and mechanism of ammonia production by electrocatalytic nitrate reduction based on Dodecahydro-Closo-Dodecaborate Hybrid. Journal of Colloid and Interface Science. Volume 652. 945-951. 2023.
- [26]. Strong metal-support interactions for high sintering resistance of Ru-based catalysts toward HER and ORR. Chemical Communications. 59. Chem. Commun., 2023,59, 10291-10294. 2023.
- [27]. Magnetic Gold Catalysts Obtained by Sequential Preparation for Highly Efficient Catalytic Reduction of Nitroaromatics. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2023.
- [28]. Shape-controlled preparation of nano gold (Au), Au clusters, and Au single atoms based on layered double hydroxide with closo-dodecaborate and their utilization for selective nitrobenzene reduction. Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2023.143540. 2023.
- [29]. Overcoming the PCBM/Ag Interface Issues in Inverted Perovskite Solar Cells by Rhodamine-Functionalized Dodecahydro-Closo-Dodecaborate Derivate Interlayer. Adv. Funct. Mater.. 10.1002/adfm.202300396. 2023.
- [30]. Fluorinated MXene Accelerates the Hydrogen Evolution Activity of in-situ Induced Snowflake-like Nano-Pt. Journal of Materials Chemistry A. 2023.
- [31]. Electron Modulation and Morphology Engineering Jointly Accelerate Oxygen Reaction to Enhance Zn‐Air Battery Performance. Advanced Science. 2023.
- [32]. Atom-dispersed Au combined with Nano-Au on Halloysite Nanotubes with Closo-dodecaborate promotes Synergistic Effects for Enhanced Photocatalysis. Journal of Materials Chemistry A. (11,). 809-817. 2023.
- [33]. Self-assembly synthesis of Ru nanoparticles anchored on B, N co-doping carbon support for hydrogen evolution: Electronic state induced by the strong metal-support interactions. International Journal of Hydrogen Energy. 2023.
- [34]. Fast room-temperature hydrogenation of nitroaromatics on Pd nanocrystal-boron cluster/graphene oxide nanosheets. Molecular Catalysis. 2022.
- [35]. Organic polymers combining boron cluster and triazine: an ultra-efficient adsorption separator toward cation dyes.. ChemNanoMat. 8. e20210048. 2022.
- [36]. Efficient Degradation of Health-threatening Organic Pollutants in Water by Atomically Dispersed Cobalt-Activated Peroxymonosulfate. Chemical Engineering Journal. 2022.
- [37]. Cu Nanoparticle-Decorated Boron-Carbon-Nitrogen Nanosheets for Electrochemical Determination of Chloramphenicol. ACS Appl Mater Interfaces. 14 (25). 28956–28964. 2022.
- [38]. Atom-dispersed copper and nano-palladium in the boron-carbon-nitrogen matric cooperate to realize the efficient purification of nitrate wastewater and the electrochemical synthesis of ammonia. Journal of Hazardous Materials. 434. 128909. 2022.
- [39]. Au/Boron organic frameworks for efficient removal and degradation of azo dye pollutants. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 646. 128884. 2022.
- [40]. Chaotropic Effect Stabilized Radical-Containing Supramolecular Organic Frameworks for Photothermal Therapy. Small. 202108055. 2022.
- [41]. Boron-induced activation of Ru nanoparticles anchored on carbon nanotubes for the enhanced pH-independent hydrogen evolution reaction. Journal of Colloid and Interface Science. 616. 338-346. 2022.
- [42]. Two-dimensional BCN matrix inlaid with single-atom-Cu driven electrochemical nitrate reduction reaction to achieve sustainable industrial-grade production of ammonia. Applied Materials Today. 25. doi.org/10.1016/j.apmt.2021.101206. 2021.
- [43]. Comprehensive Understanding of the Thriving Ambient Electrochemical Nitrogen Reduction Reaction. Advanced Materials. 2021.
- [44]. Supramolecular Nanosheet evolution into BC3N matrix improves the hydrogen evolution reaction activity in the pH universality of highly dispersed Pt nanoparticles. Journal of Materials Chemistry A. 2021 (9). 16427-16435. 2021.
- [45]. Direct conversion of methane into methanol and ethanol via spherical Au@Cs2[closo-B12H12]and Pd@Cs2[closo-B12H12] nanoparticles. International Journal of Hydrogen Energy. 2021.
- [46]. Copper confined in vesicle-like BCN cavity promotes electrochemical reduction of nitrate to ammonia in water. J. Mater. Chem. A,. 2021.
- [47]. Boron modulating electronic structure of FeN4C to initiate high-efficiency oxygen reduction reaction and high-performance zinc-air battery. Journal of Energy Chemistry. 2021.
- [48]. Persistent radical pairs trigger nano-gold to highly efficiently and highly selectively drive the value-added conversion of nitroaromatics. Chem Catalysis. 2021.
- [49]. Two-dimensional BCN matrix inlaid with single-atom-Cu driven electrochemical nitrate reduction reaction to achieve sustainable industrial-grade production of ammonia. Applied Materials Today. 2021.
- [50]. Simultaneous anchoring of Ni nanoparticles and single-atom Ni on BCN matrix promotes efficient conversion of nitrate in water into high-value-added ammonia. Chemical Engineering Journal. 2021.
- [51]. Progress in three-dimensional aromatic-like closo-dodecaborate. Coordination Chemistry Reviews. 2021 (444). 214042. 2021.
- [52]. Efficient Ambient Electrocatalytic Ammonia Synthesis by Nano-gold Triggered via Boron Clusters Combined with Carbon Nanotubes. ACS Appl. Mater. Interfaces. 2020.
- [53]. BCN Encapsulated Nano-nickel Synergistically Promotes Ambient Electrochemical Dinitrogen Reduction. ACS Appl. Mater. Interfaces. 12 (28). 31419–31430. 2020.
- [54]. Potassium Ions Promote Electrochemical Nitrogen Reduction on Nano-Au Catalysts Triggered by Bifunctional Boron Supramolecular Assembly. Journal of Materials Chemistry A. (8). Journal of Materials Chemistry A. 2020.
- [55]. High-dispersion Ultrafine Shell-like Nano-Pt with Efficient Hydrogen Evolution Evolved via Metal Boron Organic Polymers. Journal of Materials Chemistry A. (8). 7171 - 7176. 2020.
- [56]. Cubic platinum nanoparticles capped with Cs2[closo-B12H12] as an effective oxidation catalyst for converting methane to ethanol. Journal of Colloid and Interface Science. 566. 135-142. 2020.
- [57]. Hydrophobic Boron Organic Polymers: Ultra-high Capacity of Enrichment and Storage for Chloroform. Chemical Engineering Journal. 385. 2020.
- [58]. Transformation from 3D Boron Organic Polymers to 1D Nano-rod Arrays: Loading High Dispersed Nano-metal for Green Catalysis. ACS Applied Materials & Interface. 11 (46). 43214-43222. 2019.
- [59]. In-situ Nano Au Triggered via Metal Boron Organic Polymers: Efficient Electrochemistry N2 Fixation to NH3 under Ambient Conditions. J. Mater. Chem. A,. 2019.
- [60]. Shape-controlled Dodecaborate Supramolecular Organic Frameworks Supported Ultrafine Trimetallic PtCoNi for Catalytic Hydrolysis of Ammonia Borane.. ACS Applied Materials & Interfaces.. 2019.
- [61]. Self-Assembled Magnetic Pt Nanocomposites for the Catalytic Reduction of Nitrophenol. ACS Applied Nano Materials. 2019.
- [62]. From Boron Organic Polymers to In-situ Ultrafine Nano Pd and Pt: Green Synthesis and Application for High Efficiency Hydrogen Evolution. ChemcatChem. 2019.
- [63]. An efficient morpholinium ionic liquid based catalyst system for cycloaddition of CO2 and epoxides under mild conditions. Journal of Molecular Liquids. 283. 235-241. 2019.
- [64]. In situ synthesis of ultrafine metal clusters triggered by dodecaborate supramolecular organic frameworks. Nanoscale. (10). 19846 – 19853. 2018.
- [65]. Self-assembled magnetic gold catalysts via dual-functional boron clusters. ChemCatChem. 10. 2285 – 2290. 2018.
- [66]. 张海波 From boron clusters to gold clusters: new label-free colorimetric sensors. Chemical Communications. Chem Comm. 53 (86). 11790-11793. 2017.
- [67]. Orthogonal Molecular Recognition of Chaotropic and Hydrophobic Guests Enables Supramolecular Architectures. ChemNanoMat. 2018.
- [68]. Facile Synthesis of Boron Organic Polymers for Efficient Removal and Separation of Methylene Blue, Rhodamine B and Rhodamine 6G. ACS Sustainable Chemistry & Engineering. 2018.
- [69]. Influence of the protonation state on the binding mode of methyl orange with cucurbiturils. Journal of Molecular Structure. 1107. 182-188. 2016.
- [70]. Deep eutectic solvent choline chloride2CrCl6HO: an efficient catalyst for esterification of formic and acetic acid at room temperature. RSC Advances. (6). 21612-21616. 2016.
- [71]. A novel two-dimensional polyrotaxane network self-assembled by heterowheel [4]pseudorotaxane.. Supramolecular Chemistry. 29 (3). 176-182.. 2016.
- [72]. Supramolecular self‐assembly of cucurbit[6]uil and ionic liquid in non‐aqueous system. Chinese Journal of Chemistry. 33 (5). 413-417. 2016.
- [73]. 张海波 A Bronsted acidic ionic liquid as an efficient and reusable catalyst system for esterification. GREEN CHEMISTRY. 9 (11). 2007.
- [74]. 张海波 具有表面活性的新型绿色离子液体. 中国科学. B辑, 化学. 36 (1006-9240). 2006.
- [75]. 张海波 离子液体的制备与性质表征——介绍一个综合化学实验. 大学化学. (1000-8438). 2011.
- [76]. 张海波 葫芦[7]脲的合成及其与甲基橙的超分子行为研究——综合性研究型实验设计. 大学化学. (1000-8438). 2013.
- [77]. The chaotropic effect as an orthogonal assembly motif for multi-responsive dodecaborate-cucurbit[n]uril supramolecular networks. Chem Comm. 54:. 2098-2101. 2018.
- [78]. Br?nsted酸性离子液体催化合成乙酸丁酯的化学动力学研究——一个物理化学综合实验. 大学化学. (1000-8438). 2015.
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