MS Researcher,

SAMA ALLAH KHAN

Driven MPhil Environmental Science Researcher specializing in green nanotechnology, sustainable agriculture, and climate change mitigation. Proven track record of published research in peer-reviewed journals, including pioneering eco-friendly nanoparticle synthesis for pest control and vermicomposting for carbon sequestration. Combines advanced laboratory and teaching expertise with a passion for mentoring future scientists and developing scalable, nature positive solutions

Research Domains

Core Areas of Inquiry

My professional endeavors are centered around the core principles that dictate system resilience and adaptive behaviors in response to dynamic environmental conditions.

Distributed Resilience

Adaptive Networks

Empirical Verification

Investigating how decentralized systems maintain functionality and recover from disruption, drawing insights from biological and engineered networks.

Green nanoparticles + fertilizer synergy for crop stress tolerance, vermicomposting for soil carbon sequestration and microbial recovery, heavy metal contamination assessment for soil remediation

Modeling the evolution of network structures in response to environmental pressures and internal feedback mechanisms.

GIS-based urbanization mapping and environmental impact modeling, dose and time dependent pest mortality responses to nanoparticles, environmental governance and regulatory policy frameworks.

Developing rigorous methodologies for validating theoretical models against real-world data and experimental observations.

Nanoparticle characterization (crystallography, UV-Vis, microscopy), statistical validation ( p ≤ 0.05) across bioassays and field trials, field sampling and lab analysis with GIS-integrated environmental assessment.

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Featured Publications & Inquiries

Explore peer-reviewed articles, working papers, and ongoing research initiatives focusing on nanotechnology applications in climate-resilient sustainable agriculture.

JOURNAL OF NANOBIOTECH

SUSTAINABLE AGRONOMY

CLIMATE POLICY REVIEW

Efficacy of Neem-Derived Silver Nanoparticles Against the Termite Odontotermes obesus

Effect of Vermicompost on Carbon Sequestration and Soil Properties under Paulownia elongata in an Agroforestry System

Synergistic Effect of Green Synthesized Metal Oxide Nanoparticles and Fertilizer on the Tomato Growth

Efficacy of Neem-Derived Silver Nanoparticles Against the Termite Odontotermes obesus, Green synthesis, 5 nm spherical nanoparticles, 93.3% repellency and 100% mortality at 25 mg/L, dose and time dependent activity (p ≤ 0.05). International Journal of Tropical Insect Science (2026).

Effect of Vermicompost on Carbon Sequestration and Soil Properties under Paulownia elongata in an Agroforestry System Significant increase in soil organic carbon and total nitrogen (p ≤ 0.05), enhanced microbial activity, nature based solution for carbon sequestration. (2025).

Ongoing MPhil research on Synergistic Effect of Green Synthesized Metal Oxide Nanoparticles and Fertilizer on Tomato Growth Developing sustainable crop management approaches to reduce fertilizer dependency and enhance climate resilient agriculture. (2024–2026).

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