邢鹏遥 照片

邢鹏遥

教授

所属大学: 山东大学

所属学院: 化学与化工学院

邮箱:
xingpengyao@sdu.edu.cn

个人主页:
http://faculty.sdu.edu.cn/xingpengyao/zh_CN/index.htm

个人简介

2018年12月-现在,教授,博导,有机化学研究所,山东大学化学与化工学院 2016年9月-2018年12月,博士后,化学与生物化学系,新加坡南洋理工大学,合作导师:赵彦利 教授 2014年9月-2015年9月,研究助理,化学与生物化学系,新加坡南洋理工大学,指导老师:赵彦利 教授 2011年9月-2016年6月,博士研究生 有机化学专业,化学与化工学院,有机化学研究所/胶体与界面化学教育部重点实验室,山东大学,指导教师: 郝爱友 教授 2007年9月-2011年6月,本科,化学专业,化学与化工学院,山东大学,指导老师:郝京诚 教授(本科创新实验);鲁在君 教授 (毕业设计) 工作经历 2016.9 -- 2018.12 新加坡南洋理工大学

研究领域

1. 功能有机化合物的设计、合成和表征 2. 超分子手性的产生,放大,转移,调控 3. 多维度的有机分子自组装结构 4. 手性光学材料 5. 分子动力学、量子力学

近期论文

(1) 王卓尔.Odd-Even Law Mediated Supramolecular Chirality of Luminescent Dipeptides for Chiroptical Energy Transfer.small.2024,20 (-):2405698 (2) Huang, Xiaoke.Macrocycle-Nanoclay Coassembly with Modulable Supramolecular Chirality Indicated by Surface Charges.化学材料.2024,36 (20):10361-10370 (3) 刘壹萍.Coassembly of Chiral Amines and a Four-Armed Cyano-Substituted Luminophore through Hydrogen bonds for Potential Development of Smart Chiroptical Materials.Chemistry - A European Journal.2022,28 (e202201956) (4) 戴莉雅.Chiral Coassembly and Supramolecular Substitution in a Mutual-Binding Ternary Nanosystem: Implications for Surface Luminescent Modification.ACS Applied Nano Materials.2023,6 (17):16086 (5) 成秋鸿.Selective Chiral Dimerization and Folding Driven by Arene-Perfluoroarene Force.Chemical Science.2023,15 (2):618 (6) Self-Assembly of Atomically Precise Silver Nanoclusters in Crowded Colloids into Ultra-Long Ribbons with Tunable Supramolecular Chirality.ADVANCED SCIENCE.2023 (1) (7) 许芸荥.Distorted aryl homochirality controlled by β-sheet folding.CHINESE CHEMICAL LETTERS Journal.2023,34 (11) (8) 安树国.[N???I???N] plus Type Halogen-Bonding-Driven Supramolecular Helical Polymers with Modulated Chirality.ACS nano.2022,16 (11):19220-19228 (9) 王卓尔.Charge-Transfer Complex Doped Photothermal Hydrogels for Discriminating Circularly Polarized Near-Infrared Light.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2023,62 (1) (10) 王卓尔.Biomimetic Chiral Molecular Tweezers Based on Tryptophan-Containing Peptides with Chiroptical Evolution.化学材料.2022,34 (22):10162-10171 (11) 刘壹萍.Coassembly of Chiral Amines and a Four-Armed Cyano-Substituted Luminophore through Hydrogen bonds..Chemistry a European Journal.2022 (12) Zong, Zhaohui.Self-Assembly of N-Terminal Aryl Amino Acids into Adaptive Single- And Double-Strand Helices.Journal of Physical Chemistry Letters.2020,11 (10):4147-4155 (13) Liu, Wenqi.Novel Double Phase Transforming Organogel Based on beta-Cyclodextrin in 1,2-Propylene Glycol.journal of physical chemistry B.2012,116 (43):13106-13113 (14) 梁君聪.Selective chiral recognition of achiral species in nanoclay coassemblies.Colloids and Surfaces A.2021,614 (15) 马明放.Advances of Host-Guest Supramolecular Vesicles and Their Properties in Drug Delivery.PROGRESS IN CHEMISTRY Journal.2014,26 (8):1317-1328 (16) 成秋鸿.Stimulus-responsive luminescent hydrogels: Design and applications.Advances in Colloid and Interface Science.2020,286 :102301 (17) 赵建剑.High-Throughput Synthesis of Chiroptical Nanostructures from Synergistic Hydrogen-Bonded Coassemblies.ACS nano.2020,14 (2):2522-2532 (18) 宗兆辉.Halogenation Regulates Supramolecular Chirality at Hierarchical Levels of Self-Assembled N-Terminal Aromatic Amino Acids.Journal of Physical Chemistry Letters.2021,12 (4):1307-1315 (19) Cheng, Qiuhong.Hydrogels Self-Assembled from an Azobenzene Building Block: Stability toward UV Irradiation in the Gel and Thin-Film States.CHEMPLUSCHEM.2019,84 (4):328-332 (20) 梁君聪.Symmetry breaking-induced double-strand helices in H-bonded coassembly.Nanoscale.2021,13 (30):12929-12937 (21) 安树国.Halogen Bonding Mediated Hierarchical Supramolecular Chirality.ACS nano.2021,15 (9):15306-15315 (22) 成秋鸿.Aromatic vapor responsive molecular packing rearrangement in supramolecular gels.MATERIALSCHEMISTRYFRONTIERS.2020,4 (8):2452-2461 (23) 曹照真.Solvent-Processed Circularly Polarized Luminescence in Light-Harvesting Coassemblies.ACS Applied Materials & Interfaces.2020,12 (30):34470-34478 (24) 成秋鸿.A chemosensor-based chiral coassembly with switchable circularly polarized luminescence.NATURE COMMUNICATIONS.2021,12 (1):6320 (25) 宗兆辉.Chiral molecular nanosilicas.2041-6520.2022,13 (14):4029-4040 (26) 王卓尔.Transpositional Circularly Polarized Luminescence from Transient Charge-Transfer Coassembly.small.2021,17 (44):e2104499 (27) 许芸荥.X???X Halogen Bond-Induced Supramolecular Helices.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2022,61 (2):e202113786 (28) 赵建剑.Supramolecular Chirality Suppresses Molecular Chirality: Selective Chiral Recognition in Hierarchically Coassembled Pyridine-Benzimidazole Conjugates with Precise ee% Detection.Journal of Physical Chemistry Letters.2021,12 (11):2912-2921 (29) 成秋鸿.Eutectogels as Matrices to Manipulate Supramolecular Chirality and Circularly Polarized Luminescence.ACS nano.2022,16 (4):6825-6834 (30) 王卓尔.Self-Assembled Helical Structures of Pyrene-Conjugated Amino Acids for Near-Infrared Chiroptical Materials and Chiral Photothermal Agents.化学材料.2022,34 (3):1302-1314 (31) 王卓尔.Transpositional Circularly Polarized Luminescence from Transient Charge-Transfer Coassembly.Small.2021,17 (44) (32) 安树国.Ultraviolet Light Detectable Circularly Polarized Room Temperature Phosphorescence in Chiral Naphthalimide Self-Assemblies.ACS nano.2021,15 (12):20192 (33) 赵建剑.Folded Propeller Chiral Structures Exclusively Adaptive to Chloroform.ACS nano.2022,16 (3):4551 (34) 刘秉宇.Water-Mediated Folding Behaviors and Chiroptical Inversion of Ferrocene-Conjugated Dipeptides.Journal of Physical Chemistry Letters.2021,12 (26):6190 (35) 王卓尔.Modular Molecular Self-Assembly for Diversified Chiroptical Systems.Small.2020,16 (30) (36) 成秋鸿.Fluorescent Imprintable Hydrogels via Organic/Inorganic Supramolecular Coassembly.ACS Applied Materials & Interfaces.2020,12 (13):15491 (37) 成秋鸿.Ultrathin Supramolecular Architectures Self-Assembled from a C-3-Symmetric Synthon for Selective Metal Binding.ACS Applied Materials & Interfaces.2020,12 (8):9673 (38) 张琪.Chiral Superlattices Self-Assembled from Post-Modified Metal-Organic Polyhedra.Nano Letters.2023 (39) 夏怡然.Chiroptical coassemblies between organic carboxylic acids and amino acid derivatives with C 3-symmetry.CHINESE CHEMICAL LETTERS Journal.2023,34 (6) (40) 许芸荥.X...X Halogen Bond-Induced Supramolecular Helices.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2022 (41) 王卓尔.Chiroptical Helices of N-Terminal Aryl Amino Acids through Orthogonal Noncovalent Interactions.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2020 (42) 张曙青.Solvent-resolved self-assemblies of cholesteryl-cyanostilbene conjugates with photo- and thermo-responsiveness.Nanoscale.2023,15 (21):9567-9576 (43) 王琳.Steroid-Aromatics Clathrates as Chiroptical Materials with Circularly Polarized Luminescence and Phosphorescence..ACS Applied Materials & Interfaces.2022,14 (39):44902-44908 (44) 尹克样.Self-Assembly of Cholesteryl Carbon Dots with Circularly Polarized Luminescence in Solution and Solvent-Free Phases.Journal of Physical Chemistry Letters.2023 (4) (45) 夏怡然.Fmoc-protected amino acids as luminescent and circularly polarized luminescence materials based on charge transfer interaction.CHINESE CHEMICAL LETTERS.2022 (46) 候雅芳.Synergistic Multiple Bonds Induced Dynamic Self-Assembly of Silver Nanoclusters into Lamellar Frameworks with Tailored Luminescence.化学材料.2022 (47) 赵建剑.Arene-perfluoroarene interaction induced chiroptical inversion and precise ee% detection of chiral acids in a benzimidazole-involved ternary coassembly.NANOSCALE.2022,14 (5):1779 (48) 夏怡然.Photoresponsive Supramolecular Chiral Composites Based on Hydrogen-Bonded Coassembly.The Journal of Physical Chemestry C.2021,125 (51):28108 (49) 刘秉宇.Four-Component Ugi Reaction for Optical Chirality Sensing and Surface Nanoengineering of Chiral Self-Assemblies.CHEMISTRY-A EUROPEAN JOURNAL .2022 (50) 成秋鸿.Self-Assembled Polyhedral Oligosilsesquioxane Dendrimers for Circularly Polarized Luminescence Energy Transfer.The Journal of Physical Chemestry C.2021,125 (25):14141 (51) 成秋鸿.Dynamic evolution of supramolecular chirality manipulated by H-bonded coassembly and photoisomerism.MATERIALS CHEMISTRY FRONTIERS.2021,5 (17):6628 (52) 宗兆辉.Dynamic axial chirality of ferrocene diamino acids: hydration effects and chiroptical applications.Journal of Materials Chemistry C.2021 (53) 梁君聪.Hierarchically Evolved Supramolecular Chirality Mediated by Arene-Perfluoroarene Interaction.ACS Applied Materials & Interfaces.2021,13 (24):29170 (54) 宗兆辉.The origin of supramolecular chirality in 1-ferrocenyl amino acids.DaltonTrans.2021,50 (28):9695 (55) 邢鹏遥.Photoresponsive Chiral Vesicles as Light Harvesting Matrix with Tunable Chiroptical Properties.Nanoscale.2020 (13) (56) 邢鹏遥.Dynamic Axial Chirality of Ferrocene Diamino Acids: Hydration Effects and Chiroptical Applications.Journal of Materials chemistry C.2021 (10) (57) 赵建剑.Enhancing Optical Activities of Benzimidazole Derivatives through Coassembly for High-Efficiency Synthesis of Chiroptical Nanomaterials and Accurate ee % Detection of Natural Acids.ACS Applied Materials & Interfaces.2021,13 (5):6830 (58) 赵建剑.Quantitative chiral sensing of organic acids by benzimidazole derivatives through H-bond coassembly.Journal of Materials Chemistry C.2021,9 (7):2513 (59) 成秋鸿.Photoregulated "Breathing" Vesicle with Inversed Supramolecular Chirality.ACS Applied Materials & Interfaces.2021,13 (1):2091 (60) 王卓尔.Helical secondary structures and supramolecular tilted chirality in N-terminal aryl amino acids with diversified optical activities.CHINESE CHEMICAL LETTERS Journal.2021,32 (4):1390 (61) 曹照真.Photoresponsive chiral vesicles as a light harvesting matrix with tunable chiroptical properties.NANOSCALE.2021,13 (2):700 (62) 梁君聪.A ternary modular molecular co-assembly with flexibly tailored chiroptical properties.Journal of Materials Chemistry C.2020,8 (13):4321 (63) 王卓尔.Chiroptical Helices of N-Terminal Aryl Amino Acids through Orthogonal Noncovalent Interactions.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2020,59 (28):11556 (64) 安树国.Polyhedral Oligosilsesquioxanes in Functional Chiral Nanoassemblies.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2021,60 (18):9902 (65) 梁君聪.Inverse Evolution of Helicity from the Molecular to the Macroscopic Level Based on N-Terminal Aromatic Amino Acids.ACS nano.2021,15 (3):5322 (66) 王卓尔.Multi-Modal Chiral Superstructures in Self-Assembled Anthracene-Terminal Amino Acids with Predictable and Adjustable Chiroptical Activities and Color Evolution.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2020 (67) 马明放.Fabrication of macrocyclic organogel utilizing solvent balance and its application in vascular supporting materials.Colloids and Surfaces A.2020,589 (68) 宗兆辉.Chiral toroids and tendril superstructures from integrated ternary species with consecutively tunable supramolecular chirality and circularly polarized luminescence.材料化学期刊C.2020,8 (45):16224 (69) 成秋鸿.Fluorescent impritable Hydrogels via Organic/Inorganic Supramolecular Coassembly.ACS Applied Materials & Interfaces.2020 (12) (70) 宗兆辉.Supramolecular secondary helical structures in solid-state N-protected amino acids.NANOSCALE.2020,12 (40):20610 (71) 梁君聪.Noncovalently Modulated Chiral Nanoclays for Circularly Polarized Luminescence Color Conversion.ACS Applied Materials & Interfaces.2020,12 (40):45665 (72) 曹照真.Tailoring Circularly Polarized Luminescence of Cholesteryl Conjugated Naphthalimides via Solvent Polarity.The Journal of Physical Chemestry C.2020,124 (14):7965 (73) 曹照真.Solvent Processed Circularly Polarized Luminescence in Light Harvesting Coassemblies.ACS Applied Materials & Interfaces.2020 (12) (74) 郝爱友.A ternary modular molecular co-assembly with flexibly tailored chiroptical properties.Journal of Materials Chemistry C.2020,8 :4321 (75) 张恒.Ultrathin Supramolecular Architectures Self-Assembled from a C3-Symmetric Synthon for Selective Metal Binding.ACS Applied Materials & Interfaces.2020 (76) 邢鹏遥.Self-assembly of N-terminal aryl amino acids into adaptive single and double strand helices.Journal of Physical Chemistry Letters.2020 (77) 邢鹏遥.High Throughput Synthesis of Chiroptical Nanostructures from Synergistic Hydrogen Bonded Coassemblies.ACS nano.2020 (78) 邢鹏遥.Ternary Modular Molecular Co-Assembly with Flexibly Tailored Chiroptical Properties.Journal of Materials Chemistry C.2020 (79) 邢鹏遥.Fluorescent impritable Hydrogels via Organic/Inorganic Supramolecular Coassembly.ACS APPLIED MATERIALS & INTERFACES .2020 (80) 邢鹏遥.Chiroptical Helices of N-terminal Aryl Amino Acids Adaptive to Orthogonal Interactions.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2020 (81) 邢鹏遥.Tailoring Circularly Polarized Luminescence of Cholesteryl Conjugated Naphthalimides via Solvent Polarity.JOURNAL OF PHYSICAL CHEMISTRY C.2020 (124) (82) 邢鹏遥.Modular Molecular Self-Assembly for Diversified Chiroptical Systems.Small.2020 (83) 王卓尔.Hydrogen bonded co-assembly of aromatic amino acids and bipyridines that serves as a sacrificial template in superstructure formation.Soft Matter.2019 (2019.15) (84) 邢鹏遥.Water-Binding-Mediated Gelation/Crystallization and Thermosensitive Superchirality.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2018 (85) 邢鹏遥.Solvent-Controlled Assembly of Aromatic Glutamic Dendrimers for Effcient Luminescent Color Conversion.Advanced functional materials.2018 (86) 邢鹏遥.Controlling Supramolecular Chirality in Multicomponent SelfAssembled Systems.ACCOUNTS OF CHEMICAL RESEARCH.2018 (87) 邢鹏遥.Occurrence of Chiral Nanostructures Induced by Multiple Hydrogen Bonds.Journal of the American Chemical Society.2019 (88) 邢鹏遥.Selective Coassembly of Aromatic Amino Acids to Fabricate Hydrogels with Light Irradiation-Induced Emission for Fluorescent Imprint.ADVANCED MATERIALS.2017 (89) 邢鹏遥.Environment-Adaptive Coassembly/Self-Sorting and Stimulus-Responsiveness Transfer Based on Cholesterol Building Blocks.Advanced Science.2018 (90) 邢鹏遥.Programmable Multicomponent Self-Assembly Based on Aromatic Amino Acids.ADVANCED MATERIALS.2018 (91) 张奕朦,.Highly Efficient Recovery of Oils in Water via Serine-Based Organogelators.LANGMUIR.2019,35 (11):4133 (92) 王卓尔.Hydrogen bonded co-assembly of aromatic amino acids and bipyridines that serves as a sacrificial template in superstructure formation.Soft Matter.2019 (93) 邢鹏遥.Programmable Multicomponent Self-Assembly Based on Aromatic Amino Acids.ADVANCED MATERIALS.2018 (94) 邢鹏遥.Water-Binding-Mediated Gelation/Crystallization and Thermosensitive Superchirality.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2018 (95) 邢鹏遥.Controlling Supramolecular Chirality in Multicomponent SelfAssembled Systems.Accounts of Chemical Research.2018 (96) 邢鹏遥.Occurrence of Chiral Nanostructures Induced by Multiple Hydrogen Bonds.Journal of the American Chemical Society.2019 (97) 邢鹏遥.Selective Coassembly of Aromatic Amino Acids to Fabricate Hydrogels with Light Irradiation-Induced Emission for Fluorescent Imprint.ADVANCED MATERIALS.2017 (98) 张奕朦.Highly Efficient Recovery of Oils in Water via Serine-Based Organogelators.LANGMUIR.2019,35 (11):4133 (99) 邢鹏遥.Environment-Adaptive Coassembly/Self-Sorting and Stimulus-Responsiveness Transfer Based on Cholesterol Building Blocks.Advanced Science.2018 (100) 邢鹏遥.Solvent-Controlled Assembly of Aromatic Glutamic Dendrimers for Effcient Luminescent Color Conversion.Advanced functional materials.2018 (101) Pengyao Xing, Soo Zeng Fiona Phua, Xuan Wei, Yanli Zhao*, Programmable Multicomponent Self-Assembly Based on Aromatic Amino Acids. Adv. Mater. 2018, DOI: 10.1002/adma.201805175. (102) Pengyao Xing, Yanli Zhao*, Controlling Supramolecular Chirality in Multiple-Component Self-assembled Systems. Acc. Chem. Res. 2018, 51, 2324–2334. (103) Pengyao Xing, Yongxin Li, Yang Wang, Peizhou Li, Hongzhong Chen, Soo Zeng Fiona Phua, Yanli Zhao*, Water Binding Mediated Gelation/Crystallization and Thermosensitive Superchirality. Angew. Chem. Int. Ed. 2018, 130, 7900-7905. (104) Pengyao Xing, Chaolong Yang, Yang Wang, Soo Zeng Fiona Phua and Yanli Zhao*, Solvent-Controlled Assembly of Aromatic Glutamic Dendrimers for Efficient Luminescent Color Conversion. Adv. Funct. Mater. 2018, 28, 1802859. (105) Pengyao Xing, Hongzhong Chen, Huijing Xiang, Yanli Zhao*, Selective Coassembly of Aromatic Amino Acids to Fabricate Hydrogels with Light Irradiation-Induced Emission for Fluorescent Imprint. Adv. Mater. 2018, 1705633. (106) Pengyao Xing, Huijun Phoebe Tham, Peizhou Li, Hongzhong Chen, Huijing Xiang, Yanli Zhao*, Environment-Adaptive Coassembly/Self-Sorting and Stimulus-Responsiveness Transfer Based on Cholesterol Building Blocks. Adv. Sci. 2018, 1700552. (107) Pengyao Xing, Peizhou Li, Hongzhong Chen, Aiyou Hao*, Yanli Zhao*, Understanding Pathway Complexity of Organic Micro/Nanofiber Growth in Hydrogen-Bonded Coassembly of Aromatic Amino Acids ACS Nano 2017, 11, 4206. (108) Pengyao Xing, Yanli Zhao*, Multifunctional Nanoparticles Self-Assembled from Small Organic Building Blocks for Biomedicine. Adv. Mater. 2016, 28, 7304. (109) Pengyao Xing, Hongzhong Chen, Linyi Bai, Aiyou Hao*, Yanli Zhao*, Superstructure Formation and Topological Evolution Achieved by Self-Organization of a Highly Adaptive Dynamer. ACS Nano 2016, 10, 2716.