Bingcai Pan

About Bingcai Pan

Bingcai Pan, With an exceptional h-index of 85 and a recent h-index of 69 (since 2020), a distinguished researcher at Nanjing University, specializes in the field of environmental engineering, water treatment, environmental nanotechnology, adsorption, advanced oxidation processes.

His recent articles reflect a diverse array of research interests and contributions to the field:

Lanthanum-modified pyroaurite as a geoengineering tool to simultaneously sink Microcystis cyanobacteria and immobilize phosphorus in eutrophic water

Reversible pH-Gated MXene Membranes with Ultrahigh Mono-/Divalent-Ion Selectivity

Carbon redirection via tunable Fenton-like reactions under nanoconfinement toward sustainable water treatment

Intramolecular generation of endogenous Cu (III) for selectively self-catalytic degradation of Cu (II)-EDTA from wastewater by UV/peroxymonosulfate

Confinement of Fe atoms between MoS2 interlayers drives phase transition for improved reactivity in Fenton-like reactions

Nanoconfinement-triggered oligomerization pathway for efficient removal of phenolic pollutants via a Fenton-like reaction

Turn-on Fluorescence Humidity Sensing Based on Cs 4 PbBr 6 Nanocrystal Array

Deep removal of toxic oxysalts with titanium xerogels

Bingcai Pan Information

University

Position

___

Citations(all)

25895

Citations(since 2020)

17265

Cited By

14725

hIndex(all)

85

hIndex(since 2020)

69

i10Index(all)

262

i10Index(since 2020)

231

Email

University Profile Page

Google Scholar

Bingcai Pan Skills & Research Interests

environmental engineering

water treatment

environmental nanotechnology

adsorption

advanced oxidation processes

Top articles of Bingcai Pan

Lanthanum-modified pyroaurite as a geoengineering tool to simultaneously sink Microcystis cyanobacteria and immobilize phosphorus in eutrophic water

Science of The Total Environment

2024/4/30

Reversible pH-Gated MXene Membranes with Ultrahigh Mono-/Divalent-Ion Selectivity

Environmental Science & Technology

2024/4/3

Carbon redirection via tunable Fenton-like reactions under nanoconfinement toward sustainable water treatment

Nature Communications

2024/4/1

Intramolecular generation of endogenous Cu (III) for selectively self-catalytic degradation of Cu (II)-EDTA from wastewater by UV/peroxymonosulfate

Journal of Hazardous Materials

2024/3/5

Confinement of Fe atoms between MoS2 interlayers drives phase transition for improved reactivity in Fenton-like reactions

Nano Research

2024/3

Nanoconfinement-triggered oligomerization pathway for efficient removal of phenolic pollutants via a Fenton-like reaction

Nature Communications

2024/1/31

Turn-on Fluorescence Humidity Sensing Based on Cs 4 PbBr 6 Nanocrystal Array

Journal of Materials Chemistry C

2024

Deep removal of toxic oxysalts with titanium xerogels

2024/1/1

Structure Evolution of Iron (Hydr) oxides under Nanoconfinement and Its Implication for Water Treatment

Environmental Science & Technology

2023/12/28

Confined iron-based nanomaterials for water decontamination: fundamentals, applications, and challenges

2023/11/10

Annealed SiO2 Protective Layer on LiMn2O4 for Enhanced Li-Ion Extraction from Brine

Nano Letters

2023/11/3

Millimeter-Sized Nanocomposites for Advanced Water Treatment: Preparation, Synergistic Effects and Applications

2023/10/24

Adsorbent comprising carboxylic acid dimer and preparation method thereof

2023/9/12

Polyzirconium Coagulant and Application Thereof

2023/9/7

In situ ligand-modulated activation of inert Ce (III/IV) into ozonation catalyst for efficient water treatment

Proceedings of the National Academy of Sciences

2023/8/29

Molecular oxygen-assisted in defect-rich ZnO for catalytic depolymerization of polyethylene terephthalate

Iscience

2023/8/18

Two-dimensional MXene membranes with biomimetic sub-nanochannels for enhanced cation sieving

Nature Communications

2023/8/15

Occurrences and fates of per-and polyfluoralkyl substances in textile dyeing wastewater along full-scale treatment processes

Water Research

2023/8/15

Wanyi Fu
Wanyi Fu

H-Index: 7

Bingcai Pan
Bingcai Pan

H-Index: 52

In-situ surface chlorination strategy enables highly efficient metal-support catalyst toward chlorophenols pollutants degradation

Separation and Purification Technology

2023/7/15

Engineering Nano-Au-Based Sensor Arrays for Identification of Multiple Ni (II) Complexes in Water Samples

Environmental Science & Technology

2023/6/19

See List of Professors in Bingcai Pan University(Nanjing University)