Xuan Nie

About Xuan Nie

Xuan Nie, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at University of Science and Technology of China, specializes in the field of Biomaterials Nanomedicine Antibacteria.

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

Phosphatidylserine-targeting bis (zinc-dipicolylamine) farnesol inhibits ATP production in cancer cells to overcome multidrug resistance

DPA‐Zinc around Polyplexes Acts Like PEG to Reduce Protein Binding While Targeting Cancer Cells

Easy Access to Diverse Multiblock Copolymers with On‐Demand Blocks via Thioester‐Relayed In‐Chain Cascade Copolymerization

H 2 S-removing UiO-66 MOFs for sensitized antibacterial therapy

Co-delivery of a tumor microenvironment-responsive disulfiram prodrug and CuO 2 nanoparticles for efficient cancer treatment

Direct cytosolic delivery of DNA by creating fast closable holes in the cell membrane

Biodegradable hydrogels with photodynamic antibacterial activity promote wound healing and mitigate scar formation

Caging pyrophosphate structure blocks the cell wall synthesis to kill bacteria without detectable resistance

Xuan Nie Information

University

Position

___

Citations(all)

459

Citations(since 2020)

452

Cited By

90

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

14

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Xuan Nie Skills & Research Interests

Biomaterials Nanomedicine Antibacteria

Top articles of Xuan Nie

Phosphatidylserine-targeting bis (zinc-dipicolylamine) farnesol inhibits ATP production in cancer cells to overcome multidrug resistance

Supramolecular Materials

2024/4/24

DPA‐Zinc around Polyplexes Acts Like PEG to Reduce Protein Binding While Targeting Cancer Cells

Advanced Healthcare Materials

2023/8

Easy Access to Diverse Multiblock Copolymers with On‐Demand Blocks via Thioester‐Relayed In‐Chain Cascade Copolymerization

Angewandte Chemie

2023/4/3

H 2 S-removing UiO-66 MOFs for sensitized antibacterial therapy

Journal of Materials Chemistry B

2023

Co-delivery of a tumor microenvironment-responsive disulfiram prodrug and CuO 2 nanoparticles for efficient cancer treatment

Nanoscale Advances

2023

Direct cytosolic delivery of DNA by creating fast closable holes in the cell membrane

Chemical Engineering Journal

2023/1/1

Biodegradable hydrogels with photodynamic antibacterial activity promote wound healing and mitigate scar formation

Biomaterials Science

2023

Caging pyrophosphate structure blocks the cell wall synthesis to kill bacteria without detectable resistance

Chemical Engineering Journal

2022/12/15

Synthesis of Poly(thioester sulfonamide)s via the Ring‐Opening Copolymerization of Cyclic Thioanhydride with N‐Sulfonyl Aziridine Using Mild Phosphazene Base

Macromolecular Rapid Communications

2022/9

Tumor Microenvironment Triggered the In Situ Synthesis of an Excellent Sonosensitizer in Tumor for Sonodynamic Therapy

ACS Applied Materials & Interfaces

2022/6/7

Phenylboronic acid-functionalized silver nanoparticles for highly efficient and selective bacterial killing

Journal of Materials Chemistry B

2022

Cyclic topology enhances the killing activity of polycations against planktonic and biofilm bacteria

Journal of Materials Chemistry B

2022

Tug-of-War between Covalent Binding and Electrostatic Interaction Effectively Killing E. coli without Detectable Resistance

ACS Applied Materials & Interfaces

2021/11/24

Transparent light‐driven hydrogel actuator based on photothermal Marangoni effect and buoyancy flow for three‐dimensional motion

Advanced Functional Materials

2021/4

The effect of topology of PEG chain on the stability of micelles in brine and serum

Colloid and Interface Science Communications

2021/3/1

Single nanosheet can sustainably generate oxygen and inhibit respiration simultaneously in cancer cells

Materials Horizons

2021

Photopolymerization performed under dark conditions using long-stored electrons in carbon nitride

Materials Horizons

2021

Charge-reversal silver clusters for targeted bacterial killing

Journal of Materials Chemistry B

2021

Rhodanine-based Knoevenagel reaction and ring-opening polymerization for efficiently constructing multicyclic polymers

Nature Communications

2020/7/21

Degradable PE-based copolymer with controlled ester structure incorporation by cobalt-mediated radical copolymerization under mild condition

Iscience

2020/3/27

See List of Professors in Xuan Nie University(University of Science and Technology of China)