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Functional hydrophilic polystyrene beads with uniformly size and high cross- linking degree facilitated rapid separation of exenatide. | Semantic Scholar
Functional hydrophilic polystyrene beads with uniformly size and high cross- linking degree facilitated rapid separation of exenatide. | Semantic Scholar

Scheme 1. Preparation of cross-linked polystyrene copolymer. | Download  Scientific Diagram
Scheme 1. Preparation of cross-linked polystyrene copolymer. | Download Scientific Diagram

The Role of Cross-linking in Ion Exchange Resins – WCP Online
The Role of Cross-linking in Ion Exchange Resins – WCP Online

SEM images of the fluorescent polystyrene beads prepared with different...  | Download Scientific Diagram
SEM images of the fluorescent polystyrene beads prepared with different... | Download Scientific Diagram

Luminescence encoding of polymer microbeads with organic dyes and  semiconductor quantum dots during polymerization | Scientific Reports
Luminescence encoding of polymer microbeads with organic dyes and semiconductor quantum dots during polymerization | Scientific Reports

Electrostatic-Mediated Intramolecular Cross-Linking Polymers in  Concentrated Solutions | CCS Chemistry
Electrostatic-Mediated Intramolecular Cross-Linking Polymers in Concentrated Solutions | CCS Chemistry

Cross-linking strategy used for directional thiol-carboxyl coupling of... |  Download Scientific Diagram
Cross-linking strategy used for directional thiol-carboxyl coupling of... | Download Scientific Diagram

Sulfonated Polystyrene Microspheres - EPRUI Biotech
Sulfonated Polystyrene Microspheres - EPRUI Biotech

Microporous Hyper-Crosslinked Polystyrenes and Nanocomposites with High  Adsorption Properties: A Review
Microporous Hyper-Crosslinked Polystyrenes and Nanocomposites with High Adsorption Properties: A Review

Polymers | Free Full-Text | Microporous Hyper-Crosslinked Polystyrenes and  Nanocomposites with High Adsorption Properties: A Review
Polymers | Free Full-Text | Microporous Hyper-Crosslinked Polystyrenes and Nanocomposites with High Adsorption Properties: A Review

Ion Exchange Resin Structure
Ion Exchange Resin Structure

Hyper-Cross-Linked Polymer with Enhanced Porosity by In Situ Removal of  Trimethylsilyl Group via Electrophilic Aromatic Substitution | ACS Macro  Letters
Hyper-Cross-Linked Polymer with Enhanced Porosity by In Situ Removal of Trimethylsilyl Group via Electrophilic Aromatic Substitution | ACS Macro Letters

Surface functionalization of cross-linked polystyrene microspheres via  thiol–ene “click” reaction and assembly in honeycomb films for lectin  recognition | Journal of Materials Research | Cambridge Core
Surface functionalization of cross-linked polystyrene microspheres via thiol–ene “click” reaction and assembly in honeycomb films for lectin recognition | Journal of Materials Research | Cambridge Core

Cross-Linked, Monodisperse, Micron-Sized Polystyrene Particles by Two-Stage  Dispersion Polymerization | Macromolecules
Cross-Linked, Monodisperse, Micron-Sized Polystyrene Particles by Two-Stage Dispersion Polymerization | Macromolecules

Figure 2 from Reduction in aggregation and energy transfer of quantum dots  incorporated in polystyrene beads by kinetic entrapment due to cross-linking  during polymerization. | Semantic Scholar
Figure 2 from Reduction in aggregation and energy transfer of quantum dots incorporated in polystyrene beads by kinetic entrapment due to cross-linking during polymerization. | Semantic Scholar

Materials | Free Full-Text | Preparation of Porous Poly(Styrene-Divinylbenzene)  Microspheres and Their Modification with Diazoresin for Mix-Mode HPLC  Separations
Materials | Free Full-Text | Preparation of Porous Poly(Styrene-Divinylbenzene) Microspheres and Their Modification with Diazoresin for Mix-Mode HPLC Separations

Surface functionalization of cross-linked polystyrene microspheres via  thiol–ene “click” reaction and assembly in honeycomb films for lectin  recognition | Journal of Materials Research | Cambridge Core
Surface functionalization of cross-linked polystyrene microspheres via thiol–ene “click” reaction and assembly in honeycomb films for lectin recognition | Journal of Materials Research | Cambridge Core

Functional hydrophilic polystyrene beads with uniformly size and high cross- linking degree facilitated rapid separation of exenatide. | Semantic Scholar
Functional hydrophilic polystyrene beads with uniformly size and high cross- linking degree facilitated rapid separation of exenatide. | Semantic Scholar

Swelling (%) of 4-10% DVB cross-linked polystyrene beads in toluene... |  Download Scientific Diagram
Swelling (%) of 4-10% DVB cross-linked polystyrene beads in toluene... | Download Scientific Diagram

Polytetrahydrofuran Cross-Linked Polystyrene Resins for Solid-Phase Organic  Synthesis | ACS Combinatorial Science
Polytetrahydrofuran Cross-Linked Polystyrene Resins for Solid-Phase Organic Synthesis | ACS Combinatorial Science

A hyper-cross-linked polystyrene with nano-pore structure - ScienceDirect
A hyper-cross-linked polystyrene with nano-pore structure - ScienceDirect

Sulfonated Polystyrene Microspheres - EPRUI Biotech
Sulfonated Polystyrene Microspheres - EPRUI Biotech

Crosslinked PS-DVB microspheres with sulfonated polystyrene brushes as new  generation of ion exchange resins - ScienceDirect
Crosslinked PS-DVB microspheres with sulfonated polystyrene brushes as new generation of ion exchange resins - ScienceDirect

Styrene-divinylbenzene beads | OIV
Styrene-divinylbenzene beads | OIV

Magnetic crosslinked polystyrene with hydrophilic nature prepared through  surface-initiated ATRP technique - ScienceDirect
Magnetic crosslinked polystyrene with hydrophilic nature prepared through surface-initiated ATRP technique - ScienceDirect

A hyper-cross-linked polystyrene with nano-pore structure - ScienceDirect
A hyper-cross-linked polystyrene with nano-pore structure - ScienceDirect

Cross-linking strategy used for directional thiol-amine coupling of... |  Download Scientific Diagram
Cross-linking strategy used for directional thiol-amine coupling of... | Download Scientific Diagram