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Chemistry

D-Index
69
Citations
16837
World Ranking
6195
National Ranking
1887

Overview

Lin Pu is affiliated with the University of Virginia in the United States and has contributed to research in multiple scientific fields, notably Medicine and Chemistry. Their work intersects areas such as Spectroscopy, Materials Chemistry, Infectious Diseases, Epidemiology, and Organic Chemistry.

The scientist has coauthored extensively with several frequent collaborators, including Jingyuan Liu, Xiao-Qi Yu, Haofeng Xiong, Xiang Pan, and Chuansheng Li. These collaborations reflect a network of active research partnerships.

Lin Pu's publications have appeared in various scientific venues. Among the most common are:

  • Research Square (Research Square)
  • The Journal of Organic Chemistry
  • Organic Letters
  • The Cambridge Structural Database
  • Chemical Communications

Their research topics cover a range of subjects. Key areas include:

  • Molecular Sensors and Ion Detection
  • Luminescence and Fluorescent Materials
  • Pneumocystis jirovecii pneumonia detection and treatment
  • COVID-19 Clinical Research Studies
  • SARS-CoV-2 and COVID-19 Research
  • Neurological Complications and Syndromes
  • Supramolecular Chemistry and Complexes

Lin Pu has contributed to several notable recent papers, including:

  • Neutrophil-to-lymphocyte ratio predicts critical illness patients with 2019 coronavirus disease in the early stage, 2020, Journal of Translational Medicine
  • Neutrophil-to-Lymphocyte Ratio Predicts Severe Illness Patients with 2019 Novel Coronavirus in the Early Stage, 2020, bioRxiv (Cold Spring Harbor Laboratory)
  • SARS-CoV-2-Positive Sputum and Feces After Conversion of Pharyngeal Samples in Patients With COVID-19, 2020, Annals of Internal Medicine
  • Enantioselective Fluorescent Recognition of Free Amino Acids: Challenges and Opportunities, 2020, Angewandte Chemie International Edition
  • Bacterial and fungal co-infections among COVID-19 patients in intensive care unit, 2021, Microbes and Infection

Best Publications

  • Catalytic Asymmetric Organozinc Additions to Carbonyl Compounds

    Lin Pu;Hong-Bin Yu

  • 1,1‘-Binaphthyl Dimers, Oligomers, and Polymers: Molecular Recognition, Asymmetric Catalysis, and New Materials†

    Lin Pu

  • Fluorescence of Organic Molecules in Chiral Recognition

    Lin Pu

  • Asymmetric alkynylzinc additions to aldehydes and ketones

    Lin Pu

  • Enantioselective Fluorescent Sensors: A Tale of BINOL

    Lin Pu

  • Highly enantioselective phenylacetylene additions to both aliphatic and aromatic aldehydes.

    Ge Gao;David Moore;‡ and Ru-Gang Xie;Lin Pu

  • BINOL-Catalyzed Highly Enantioselective Terminal Alkyne Additions to Aromatic Aldehydes

    David Moore and;Lin Pu

  • The study of chiral conjugated polymers

    L. Pu

  • Enantioselective Gel Collapsing: A New Means of Visual Chiral Sensing

    Xi Chen;Zeng Huang;Shan-Yong Chen;Kun Li

  • From Highly Enantioselective Monomeric Catalysts to Highly Enantioselective Polymeric Catalysts: Application of Rigid and Sterically Regular Chiral Binaphthyl Polymers to the Asymmetric Synthesis of Chiral Secondary Alcohols

    Wei-Sheng Huang;and Qiao-Sheng Hu;Lin Pu

  • Free Amino Acid Recognition: A Bisbinaphthyl-Based Fluorescent Probe with High Enantioselectivity

    Yuan-Yuan Zhu;Xue-Dan Wu;Shuang-Xi Gu;Lin Pu

  • Simultaneous Determination of Concentration and Enantiomeric Composition in Fluorescent Sensing.

    Lin Pu

  • Fluorescent sensors for the enantioselective recognition of mandelic acid: signal amplification by dendritic branching.

    Ming-Hua Xu;Jing Lin;Qiao-Sheng Hu;Lin Pu

  • The First Optically Active BINOL−BINAP Copolymer Catalyst: Highly Stereoselective Tandem Asymmetric Reactions

    Hong-Bin Yu;and Qiao-Sheng Hu;Lin Pu

  • Structurally Rigid and Optically Active Dendrimers

    Qiao-Sheng Hu;Vincent Pugh;and Michal Sabat;Lin Pu

  • The First Dendrimer‐Based Enantioselective Fluorescent Sensor for the Recognition of Chiral Amino Alcohols

    Vincent J. Pugh;Qiao-Sheng Hu;Lin Pu

  • A Cyclohexyl‐1,2‐diamine‐Derived Bis(binaphthyl) Macrocycle: Enhanced Sensitivity and Enantioselectivity in the Fluorescent Recognition of Mandelic Acid

    Zi Bo Li;Jing Lin;Lin Pu

  • An efficient and practical direct resolution of racemic 1,1′-bi-2-naphthol to both of its pure enantiomers

    Qiao-Sheng Hu;Dilrukshi Vitharana;Lin Pu

  • A practical enantioselective fluorescent sensor for mandelic acid.

    Jing Lin;Qiao-Sheng Hu;Ming-Hua Xu;Lin Pu

  • Biaryl-based macrocyclic and polymeric chiral (salophen)Ni(II) complexes: synthesis and spectroscopic study.

    Hui-Chang Zhang;Wei-Sheng Huang;Lin Pu

  • Optically active dendrimers with a binaphthyl core and phenylene dendrons: light harvesting and enantioselective fluorescent sensing.

    Liu-Zhu Gong;and Qiao-Sheng Hu;Lin Pu

Frequent Co-Authors

Xiao-Qi Yu
Xiao-Qi Yu Sichuan University
Michal Sabat
Michal Sabat University of Virginia
Xue-Long Hou
Xue-Long Hou Chinese Academy of Sciences
Hiroaki Sasai
Hiroaki Sasai Osaka University
Chi Wu
Chi Wu Chinese University of Hong Kong
Takayoshi Arai
Takayoshi Arai Chiba University
Xiang Zhou
Xiang Zhou Wuhan University
Yun-Dong Wu
Yun-Dong Wu Peking University
Gang-yu Liu
Gang-yu Liu University of California, Davis
James M. Tour
James M. Tour Rice University

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