S. Shanmuga Sundara Raj
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Assistant Professor
Also affiliated: University of Notre Dame (2023–2024); Prince of Songkla University (2001); Bowdoin College (2024); Universiti Sains Malaysia (1999–2004); Galgotias University (2025); National University of Singapore (2016); University of Illinois Chicago (2016–2023); Hospital Universiti Sains Malaysia (1999–2001); Software Training and Development Centre (2025); Singapore Bioimaging Consortium (2016); Gandhi Medical College (2025); Conway School of Landscape Design (2024); Center for Excellence in Basic Sciences (2016); Nagoya University (2001–2003); Karpagam Academy of Higher Education (2021); Amrita Vishwa Vidyapeetham (2025); Saveetha University (2025); Nanjing University (2002)
Faculty Researcher
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Biography and Research Information
OverviewAI-generated summary
S. Shanmuga Sundara Raj's research investigates the synthesis, characterization, and application of novel materials, with a particular focus on metal–organic frameworks (MOFs) and related nanomaterials. His work explores MOFs for applications such as entangled photon pair generation and as components within polymer-MOF gels. Raj also studies the nucleation processes in MOF nanocrystals and the interactions between polymers and MOFs to expand their design space. Additionally, his research includes investigations into MXenes as multifunctional materials for fuel cell technologies, focusing on their roles as electrocatalysts and electrolytes. Other research areas include simulation methods for self-assembling nanoparticles and controlling wet-etch directionality in nanostructured silicon. Raj has published 293 works with an h-index of 19 and over 1,300 citations.
Metrics
- h-index: 20
- Publications: 293
- Citations: 1,375
Selected Publications
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Hybrid atomistic–parametric decoherence model for molecular spin qubits (2026)
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Hybrid atomistic–parametric decoherence model for molecular spin qubits (2026)
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Free Energy Profiles of Monomeric Species in MOFs for Predicting Thermal Stability of MOF–Polymer Systems (2024)
Collaboration Network
Top Collaborators
- Free Energy Profiles of Monomeric Species in MOFs for Predicting Thermal Stability of MOF–Polymer Systems
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
- Hybrid atomistic–parametric decoherence model for molecular spin qubits
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