Sivasurender Chandran

About Sivasurender Chandran

Sivasurender Chandran, With an exceptional h-index of 15 and a recent h-index of 12 (since 2020), a distinguished researcher at Indian Institute of Technology Kanpur, specializes in the field of Polymer physics, Soft condensed matter physics, Instabilities at fluid interfaces.

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

Fast Processing Affects the Relaxation of Polymers: The Slow Arrhenius Process Can Probe Stress at the Molecular Level

Role of growing nanoparticle architecture on dewetting of polystyrene thin films

Electric Field Driven Reversible Spinodal Dewetting of Thin Liquid Films on Slippery Surfaces

Primary Nucleation in Metastable Solutions of Poly (3-hexylthiophene)

Reversible Dewetting of Thin Lubricating Films Underneath Aqueous Drops Using External Electric Field

Nonequilibrium Properties of Thin Polymer Films

NaCl Triggers the Sessile-to-Motile Transition of Bacillus subtilis

Kinetics of high density functional polymer nanocomposite formation by tuning enthalpic and entropic barriers

Sivasurender Chandran Information

University

Position

Department of Physics

Citations(all)

677

Citations(since 2020)

516

Cited By

336

hIndex(all)

15

hIndex(since 2020)

12

i10Index(all)

22

i10Index(since 2020)

18

Email

University Profile Page

Google Scholar

Sivasurender Chandran Skills & Research Interests

Polymer physics

Soft condensed matter physics

Instabilities at fluid interfaces

Top articles of Sivasurender Chandran

Fast Processing Affects the Relaxation of Polymers: The Slow Arrhenius Process Can Probe Stress at the Molecular Level

The Journal of Physical Chemistry Letters

2024/4/26

Kai Wang
Kai Wang

H-Index: 1

Sivasurender Chandran
Sivasurender Chandran

H-Index: 11

Simone Napolitano
Simone Napolitano

H-Index: 28

Role of growing nanoparticle architecture on dewetting of polystyrene thin films

APS March Meeting Abstracts

2023

Electric Field Driven Reversible Spinodal Dewetting of Thin Liquid Films on Slippery Surfaces

Advanced Materials Interfaces

2023/3

Primary Nucleation in Metastable Solutions of Poly (3-hexylthiophene)

Macromolecules

2022/4/13

Reversible Dewetting of Thin Lubricating Films Underneath Aqueous Drops Using External Electric Field

arXiv preprint arXiv:2203.12548

2022/3/23

Nonequilibrium Properties of Thin Polymer Films

Macromolecular Engineering: From Precise Synthesis to Macroscopic Materials and Applications

2022/3/7

Sivasurender Chandran
Sivasurender Chandran

H-Index: 11

Günter Reiter
Günter Reiter

H-Index: 30

NaCl Triggers the Sessile-to-Motile Transition of Bacillus subtilis

bioRxiv

2022/2/15

Kinetics of high density functional polymer nanocomposite formation by tuning enthalpic and entropic barriers

Soft Matter

2022

Sivasurender Chandran
Sivasurender Chandran

H-Index: 11

Microscopic Dynamics of Liquid-Liquid Phase Separation and Domain Coarsening in a Protein Solution Revealed by X-Ray Photon Correlation Spectroscopy

Physical Review Letters

2021/4/2

Kinetics of Network Formation and Heterogeneous Dynamics of an Egg White Gel Revealed by Coherent X-Ray Scattering

Physical review letters

2021/3/2

Temperature-Driven Grafted Nanoparticle Penetration into Polymer Melt: Role of Enthalpic and Entropic Interactions.

APS March Meeting Abstracts

2021

Formation of Needle-like Poly (3-hexylthiophene) Crystals from Metastable Solutions

Macromolecules

2020/9/25

Engineering interfacial entropic effects to generate giant viscosity changes in nanoparticle embedded polymer thin films

Soft Matter

2020

Nafisa Begam
Nafisa Begam

H-Index: 6

Sivasurender Chandran
Sivasurender Chandran

H-Index: 11

Thermal stability and dynamics of soft nanoparticle membranes: role of entropy, enthalpy and membrane compressibility

Soft Matter

2020

Nafisa Begam
Nafisa Begam

H-Index: 6

Sivasurender Chandran
Sivasurender Chandran

H-Index: 11

See List of Professors in Sivasurender Chandran University(Indian Institute of Technology Kanpur)

Co-Authors

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