Publications

Journal articles, conference contributions and technical reports.

Journals

202520242023202220212020201920182015201420122011

2025

  1. Microfluidic Generation of Calcium Alginate Hydrogel Beads using External Gelation for Microalgae Cultivation

    D Tuan Tran, F Malekpour Galogahi, NK Nguyen, U Roshan et al. (2025)

    ChemNanoMat, 11 (3), e202400549

  2. Continuous dielectrophoretic sorting of liquid beads

    AS Yadav, A Vashi, U Roshan, FM Galogahi, DT Tran, KR Sreejith et al. (2025)

    Sensors and Actuators B: Chemical, 435, 137627

2024

  1. Recent developments and future perspectives of microfluidics and smart technologies in wearable devices

    S Apoorva, NT Nguyen, KR Sreejith (2024)

    Lab on a Chip, 24 (7), 1833-1866

  2. Calcium Alginate Core–Shell Liquid Beads Encapsulated with Microalgae for Wastewater Treatment

    DT Tran, NK Nguyen, AS Yadav, A Chuang, M Burford, FM Galogahi et al. (2024)

    Advanced Energy and Sustainability Research, 5 (7), 2400112

  3. The dynamics of vertical coalescence of acoustically levitated droplets

    A Vashi, AS Yadav, NT Nguyen, KR Sreejith (2024)

    Microfluidics and Nanofluidics, 28 (5), 34

  4. Calcium alginate elastic capsules for microalgal cultivation

    NK Nguyen, AS Yadav, A Chuang, M Burford, CH Ooi, KR Sreejith et al. (2024)

    RSC advances, 14 (22), 15441-15448

  5. Synthesis and active manipulation of magnetic liquid beads

    AS Yadav, FM Galogahi, A Vashi, DT Tran, GS Kijanka, H Cha et al. (2024)

    Biomedical Microdevices, 26 (2), 24

2023

  1. Parametric analysis of acoustically levitated droplet for potential microgravity application

    A Vashi, AS Yadav, NT Nguyen, KR Sreejith (2023)

    Applied Acoustics, 213, 109624

  2. Precise, wide field, and low-cost imaging and analysis of core–shell beads for digital polymerase chain reaction

    AS Yadav, FM Galogahi, A Vashi, CH Ooi, KR Sreejith, NT Nguyen (2023)

    Lab on a Chip, 23 (15), 3353-3360

2022

  1. Controllable high-performance liquid marble micromixer

    NK Nguyen, P Singha, Y Dai, KR Sreejith, DT Tran, HP Phan, NT Nguyen et al. (2022)

    Lab on a Chip, 22 (8), 1508-1518

  2. Lab-on-a-chip technologies for microgravity simulation and space applications

    A Vashi, KR Sreejith, NT Nguyen (2022)

    Micromachines, 14 (1), 116

  3. Noninvasive refilling of liquid marbles with water for microfluidic applications

    KR Sreejith, P Singha, NK Nguyen, CH Ooi, DV Dao, NT Nguyen (2022)

    Applied Physics Letters, 120 (6)

  4. Hydrophobically modified gelatin particles for production of liquid marbles

    T Takei, R Tomimatsu, T Matsumoto, KR Sreejith, NT Nguyen, M Yoshida (2022)

    Polymers, 14 (22), 4849

  5. Investigation of liquid marble shell using X‐ray: shell thickness and effective surface tension

    P Singha, NK Nguyen, VT Nguyen, KR Sreejith, DT Tran, AV Nguyen et al. (2022)

    ChemNanoMat, 8 (1), e202100423

  6. Front Cover: Investigation of liquid marble shell using X‐ray: shell thickness and effective surface tension (ChemNanoMat 1/2022)

    P Singha, NK Nguyen, VT Nguyen, KR Sreejith, DT Tran, AV Nguyen et al. (2022)

    ChemNanoMat, 8 (1), e202100478

2021

  1. Liquid marble-based digital microfluidics–fundamentals and applications

    CH Ooi, R Vadivelu, J Jin, KR Sreejith, P Singha, NK Nguyen, NT Nguyen (2021)

    Lab on a Chip, 21 (7), 1199-1216

  2. A novel RdRp-based colorimetric RT-LAMP assay for rapid and sensitive detection of SARS-CoV-2 in clinical and sewage samples from Pakistan

    MFU Haque, SS Bukhari, R Ejaz, FU Zaman, KR Sreejith, N Rashid et al. (2021)

    Virus research, 302, 198484

  3. A portable device for LAMP based detection of SARS-CoV-2

    KR Sreejith, M Umer, L Dirr, B Bailly, P Guillon, M von Itzstein, N Soda et al. (2021)

    Micromachines, 12 (10), 1151

  4. Effect of core liquid surface tension on the liquid marble shell

    P Singha, NK Nguyen, KR Sreejith, H An, NT Nguyen, CH Ooi (2021)

    Advanced Materials Interfaces, 8 (5), 2001591

  5. Loop-mediated isothermal amplification in a core-shell bead assay for the detection of tyrosine kinase AXL overexpression

    KR Sreejith, M Umer, P Singha, NK Nguyen, S Kasetsirikul, CH Ooi et al. (2021)

    Micromachines, 12 (8), 905

  6. A paper-based immunofluorescent device for the detection of SARS-CoV-2 humanized antibody

    S Kasetsirikul, M Umer, N Soda, KR Sreejith, MJA Shiddiky, NT Nguyen (2021)

    Preprints

  7. Surface Tension: Effect of Core Liquid Surface Tension on the Liquid Marble Shell (Adv. Mater. Interfaces 5/2021)

    P Singha, NK Nguyen, KR Sreejith, H An, NT Nguyen, CH Ooi (2021)

    Advanced Materials Interfaces, 8 (5), 2170025

2020

  1. Detection of the SARS-CoV-2 humanized antibody with paper-based ELISA

    S Kasetsirikul, M Umer, N Soda, KR Sreejith, MJA Shiddiky, NT Nguyen (2020)

    Analyst, 145 (23), 7680-7686

  2. Liquid marbles as miniature reactors for chemical and biological applications

    NK Nguyen, CH Ooi, P Singha, J Jin, KR Sreejith, HP Phan, NT Nguyen (2020)

    Processes, 8 (7), 793

  3. Core-shell beads made by composite liquid marble technology as a versatile microreactor for polymerase chain reaction

    KR Sreejith, L Gorgannezhad, J Jin, CH Ooi, T Takei, G Hayase et al. (2020)

    Micromachines, 11 (3), 242

  4. Capillarity: revisiting the fundamentals of liquid marbles

    P Singha, CH Ooi, NK Nguyen, KR Sreejith, J Jin, NT Nguyen (2020)

    Microfluidics and Nanofluidics, 24, 1-15

  5. Critical trapping conditions for floating liquid marbles

    J Jin, KR Sreejith, CH Ooi, DV Dao, NT Nguyen (2020)

    Physical Review Applied, 13 (1), 014002

  6. Core-Shell Beads as Microreactors for Phylogrouping of E. coli Strains

    L Gorgannezhad, KR Sreejith, M Christie, J Jin, CH Ooi, M Katouli et al. (2020)

    Micromachines, 11 (8), 761

  7. Surfactant-free, UV-curable core–shell microcapsules in a hydrophilic PDMS microfluidic device

    AJT Teo, F Malekpour-galogahi, KR Sreejith, T Takei, NT Nguyen (2020)

    Aip Advances, 10 (6)

  8. Liquid marble based digital microfluidics: Fundamental physics and applications

    NT Nguyen, CH Ooi, R Vadivelu, KR Sreejith, J Jin, NK Nguyen, P Singha (2020)

    MicroTAS, 2020-24th International Conference on Miniaturized Systems for …

  9. LAMP based detection of SARS-CoV-2 with low-cost off-the-shelf components

    KR Sreejith, M Umer, N Soda, S Kasetsirikul, MJA Shiddiky, NT Nguyen (2020)

    24th International Conference on Miniaturized Systems for Chemistry and Life …

2019

  1. Liquid marbles as biochemical reactors for the polymerase chain reaction

    KR Sreejith, L Gorgannezhad, J Jin, CH Ooi, H Stratton, DV Dao et al. (2019)

    Lab on a Chip, 19 (19), 3220-3227

  2. Dielectrophoretic trapping of a floating liquid marble

    J Jin, CH Ooi, KR Sreejith, DV Dao, NT Nguyen (2019)

    Physical Review Applied, 11 (4), 044059

  3. Accurate dielectrophoretic positioning of a floating liquid marble with a two-electrode configuration

    J Jin, CH Ooi, KR Sreejith, J Zhang, AV Nguyen, GM Evans, DV Dao et al. (2019)

    Microfluidics and Nanofluidics, 23, 1-9

  4. An automated on-demand liquid marble generator based on electrohydrodynamic pulling

    KR Sreejith, CH Ooi, J Jin, DV Dao, NT Nguyen (2019)

    Review of Scientific Instruments, 90 (5)

  5. Microfluidic array chip for parallel detection of waterborne bacteria

    L Gorgannezhad, KR Sreejith, J Zhang, G Kijanka, M Christie, H Stratton et al. (2019)

    Micromachines, 10 (12), 883

  6. Dielectrophoretic trapping of non-stationary floating liquid marbles

    J Jin, CH Ooi, KR Sreejith, DV Dao, NT Nguyen (2019)

    23rd International Conference on Miniaturized Systems for Chemistry and Life …

2018

  1. Digital polymerase chain reaction technology–recent advances and future perspectives

    KR Sreejith, CH Ooi, J Jin, DV Dao, NT Nguyen (2018)

    Lab on a Chip, 18 (24), 3717-3732

  2. Evaporation dynamics of liquid marbles at elevated temperatures

    KR Sreejith, CH Ooi, DV Dao, NT Nguyen (2018)

    RSC advances, 8 (28), 15436-15443

  3. Cryoprotectant-free freezing of cells using liquid marbles filled with hydrogel

    R Vadivelu, N Kashaninejad, KR Sreejith, R Bhattacharjee, I Cock et al. (2018)

    ACS applied materials & interfaces, 10 (50), 43439-43449

  4. Manipulation of a floating liquid marble using dielectrophoresis

    CH Ooi, J Jin, KR Sreejith, AV Nguyen, GM Evans, NT Nguyen (2018)

    Lab on a Chip, 18 (24), 3770-3779

  5. Dielectrophoretic Manipulation for Robust Liquid Marble-Based Digital Microfluidics

    NT Nguyen, CH Ooi, J Jin, KR Sreejith (2018)

    MicroTAS, 2018

2015

  1. A low cost automated specific heat capacity meter for liquids

    KR Sreejith, PG Shyamkumar, PA Revathy, C Sreedevi (2015)

    2015 International Conference on Trends in Automation, Communications and …

2014

  1. An automated pipette puller for fabrication of glass micropipettes

    R Tamizhanban, KR Sreejith, GR Jayanth (2014)

    Review of Scientific Instruments, 85 (5)

2012

  1. Indirect Length Measurement between Two Points on a Remote Plane

    KR Sreejith, K Sarath, PN Sahanas, NS Thalha (2012)

    International Journal of Applied Information Systems—ISSN, 2249-0868

2011

  1. Low Cost Microwave Plasma Generation System–A Power Analysis study

    IS Smitha, KR Sreejith, KA Mathew, K Rajeevkumar (2011)

    International Journal of Computer Applications, 30 (12), 1-7

Conferences

  1. LAMP-based detection of SARS-CoV-2 with low-cost off-the-shelf components

    KR Sreejith, M Umer, N Soda, S Kasetsirikul, MJA Shiddiky, NT Nguyen

    MicroTAS – International Conference on Miniaturized Systems for Chemistry and Life Sciences, 10–14 October 2021, California.

  2. Liquid marbles – a versatile microfluidic platform for “green bio laboratory” practices

    Microfluidics & Organ-on-a-Chip Asia 2019, Tokyo, Japan, 14–15 November 2019.

  3. Liquid marble as a bioreactor for polymerase chain reaction

    Australia and New Zealand Nano and Microfluidics (ANZNMF-2019), University of Wollongong, Australia, 1–3 July 2019.

  4. A small volume droplet dispenser based on electrohydrodynamic pulling

    KR Sreejith, GR Jayanth

    31st Annual In-House Symposium on Space Science and Technology, ISRO-IISc Space Technology Cell, Indian Institute of Science, Bangalore, India, 8–9 January 2015.

  5. Low-cost automated specific heat capacity meter for liquids

    KR Sreejith, PG Shyamkumar, PA Revathy, C Sreedevi

    2015 IEEE International Conference on Trends in Automation, Communications and Computing Technology (I-TACT-15), Bangalore, India.

  6. Automation of hydroelectric power plant using wireless SCADA

    KR Sreejith, PS Arjun, Gokul Gopal, Nikhil K Joshi, Nair Sruthi Prakash

    International Conference on Computing and Control Engineering (ICCCE 2012), Dr. MGR University, Chennai, India, 2012.

Reports

  1. Design and development of a fully automated liquid marble-based stem cell culturing system in 96-well plate

    KR Sreejith

  2. Design and development of an RT-PCR/LAMP thermal cycler with real-time fluorescent detection

    KR Sreejith

  3. Design and development of a thermal cycler for PCR/LAMP for microfluidic chip, liquid marbles and core-shell beads

    KR Sreejith