Ran Ni | Soft Matter Physics | Innovative Research Award

Innovative Research Award

Ran Ni
Nanyang Technological University

Ran Ni
Affiliation Nanyang Technological University
Country Singapore
Scopus ID 15822225900
Documents 77
Citations 2,838
h-index 28
Subject Area Soft Matter Physics
Event International Invention Awards
ORCID 0000-0001-9478-0674

Ran Ni is a researcher affiliated with Nanyang Technological University whose scholarly profile is associated with Soft Matter Physics. The reported Scopus record includes 77 documents, 2,838 citations, and an h-index of 28. These bibliometric indicators provide a quantitative view of research output and citation influence and are considered here as supporting information for recognition under the Innovative Research Award. [1]

Abstract

Ran Ni is affiliated with Nanyang Technological University, Singapore, and is associated with research in Soft Matter Physics. The reported scholarly profile comprises 77 documents, 2,838 citations, and an h-index of 28, indicating a sustained publication record and measurable citation impact. His research area lies within the broader study of soft and complex materials, where physical principles are used to understand structure, dynamics, interactions, and emergent behavior. The documented research profile provides a basis for evaluating scientific productivity, contribution, and broader research relevance. These indicators, together with documented scholarly outputs, support consideration for an Innovative Research Award. [1]

Keywords

Ran Ni; Soft Matter Physics; soft matter; complex fluids; statistical physics; colloidal systems; materials research; scientific innovation; Nanyang Technological University; Innovative Research Award.

Introduction

Soft Matter Physics examines materials and systems whose behavior is governed by interactions across multiple length and time scales. The field encompasses complex fluids, colloidal matter, polymers, interfaces, and other systems in which collective effects can produce properties distinct from those of individual components. Research in this area contributes to fundamental understanding while also providing principles relevant to materials and technological development. Bibliographic databases such as Scopus are commonly used to document publication output and citation patterns for researchers. [1]

Research Profile

Ran Ni’s stated research specialization is Soft Matter Physics, a discipline concerned with the physical behavior of complex materials and interacting systems. The reported Scopus profile lists 77 documents, 2,838 citations, and an h-index of 28. Such indicators can help characterize the scale and visibility of a research record, although they do not independently establish research quality or innovation. A balanced academic assessment therefore considers bibliometric evidence together with the scientific significance and originality of individual contributions. [2]

Research Contributions

Research in Soft Matter Physics can generate contributions by clarifying mechanisms governing collective behavior, material organization, phase transitions, and dynamics in complex systems. Within this broad scientific framework, Ran Ni’s documented publication activity indicates sustained engagement with scholarly research. Evaluation of specific contributions should consider the originality of research questions, methodological rigor, reproducibility, influence on subsequent studies, and relevance to developments in soft-matter science. [3]

Publications

For publication assessment, particular attention may be given to articles that introduce new physical models, experimental or computational approaches, or conceptual interpretations within Soft Matter Physics. Where applicable, DOI records should be consulted to verify publication metadata and establish persistent access to the original scholarly literature. [4]

Research Impact

The reported citation count of 2,838 and h-index of 28 indicate that the research record has received substantial scholarly attention within the indexed literature. Citation metrics can provide evidence of research visibility and subsequent use by other researchers, but they should not be treated as a standalone measure of scientific excellence. Research impact is more appropriately evaluated through a combination of citation evidence, contribution to knowledge, disciplinary relevance, collaboration, and demonstrable influence on later research. [2]

Award Suitability

The reported research profile is potentially relevant to an Innovative Research Award because it combines a defined scientific specialization with an established publication and citation record. The suitability of a nomination should ultimately depend on evidence of originality, methodological contribution, research significance, and innovation within Soft Matter Physics. Bibliometric indicators may strengthen the supporting record, while detailed publication evidence and research outcomes provide the necessary scholarly context for an informed award evaluation. [3]

Conclusion

Ran Ni’s reported academic profile at Nanyang Technological University is associated with Soft Matter Physics and includes 77 documents, 2,838 citations, and an h-index of 28. These indicators demonstrate an established scholarly record and provide useful evidence for recognition-oriented assessment. For the Innovative Research Award, the strongest evaluation should combine bibliometric information with the originality, rigor, significance, and broader relevance of the underlying research contributions. [1] [2]

References

  1. Elsevier. (n.d.). Scopus author details: Ran Ni, Author ID 15822225900. Scopus.
    https://www.scopus.com/pages/authors/15822225900
  2. Journal article. (2023.). How does a hyperuniform fluid freeze?.
    https://doi.org/10.1073/pnas.2312866120
  3. Journal article. (2019.). Hydrodynamics of random-organizing hyperuniform fluids.
    https://doi.org/10.1073/pnas.1911596116
  4. ORCID. (n.d.). ORCID record for Ran Ni.
    https://orcid.org/0000-0001-9478-0674
  5. International Invention Awards. (2026.). International Invention Awards.
    https://inventionawards.org/

Prof. Marko Vincekovic |Encapsulation | Best Researcher Award

Prof. Marko Vincekovic |Encapsulation | Best Researcher Award

University of Zagreb Faculty of Agriculture, Croatia.

Marko Vinceković is a Full Professor and Scientific Adviser at the University of Zagreb, Croatia. He specializes in colloid and interface chemistry, with a focus on the encapsulation and formulation of microcapsules. Throughout his career, he has been an active lecturer and researcher, contributing significantly to the advancement of his field. His work primarily explores the encapsulation of active compounds and the creation of microcapsules for various applications.

Profile

Orcid

Education 🎓

Marko Vinceković completed his education at the University of Zagreb, where he obtained his degree in Chemistry. His academic journey has been deeply intertwined with his teaching and research roles, allowing him to contribute to both the scientific community and educational programs at the University of Zagreb.

Experience 🏫

Marko Vinceković's career at the University of Zagreb spans various positions, starting as an Assistant in 2003, where he worked as a junior researcher and lecturer in colloid and interface chemistry. He was promoted to Senior Assistant in 2009 and then to Assistant Professor in 2010. From 2013, he became a Senior Research Associate, and in 2016, he was appointed Associate Professor. By 2019, he had achieved the position of Scientific Adviser, ultimately becoming a Full Professor in 2022, where he continues his academic and research endeavors.

Research Interest 🔬

Encapsulation of Bioactive Substances
Professor Vinceković's research delves into the design and development of microcapsules that can encapsulate bioactive substances. This technique is essential for the protection, stability, and controlled release of compounds in different environments.

Microcapsules for Controlled Release
The focus on microcapsules has profound implications for the pharmaceutical industry, allowing for more precise delivery and timing in the release of active compounds. This technology also aids in improving the efficacy of treatments while minimizing side effects.

Applications in Various Industries
Beyond pharmaceuticals, his work extends to food science, where encapsulation is used to enhance flavor, nutrients, and shelf life, as well as in other industries that demand controlled release mechanisms for various active ingredients.

Publication Top Notes 📚

Simultaneous Encapsulation of Probiotic Bacteria (Lactococcus lactis, and Lactiplantibacillus plantarum) in Calcium Alginate Hydrogels, Gels, 2025 

Study of Properties of Brewery Waste Yeast as Probiotics, МИКРОБИОЛОГИЯ ЖӘНЕ ВИРУСОЛОГИЯ, 2024 

Development of Alginate Composite Microparticles for Encapsulation of Bifidobacterium animalis subsp. lactis, Gels, 2024 

Amplifying Synthesis of Health-Promoting Metabolites in Tomatoes via Encapsulation, Food Bioscience, 2024 

Novel Copper Alginate Microspheres as Ecological Fungicides, Sustainability, 2024