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The Nano Frontier: Innovations in Chemistry, Physics, and Biology

USD $59.00 USD $249.00Price range: USD $59.00 through USD $249.00

Intensive one-month nanotechnology course combining nano-chemistry, physics, and biology with real-world applications in medicine, materials science, and the environment.

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Aim

The Nano Frontier: Innovations in Chemistry, Physics, and Biology introduces how nanoscale science connects chemical design, physical phenomena, and biological function. Learn key nanomaterials, lab methods, characterization tools, and cross-domain applications in health, energy, environment, and advanced devices.

Program Objectives

  • Core Concepts: size effects, surfaces, interfaces, quantum behavior (overview).
  • Nanomaterials: metals/oxides, carbon nanomaterials, polymers, bio-nanomaterials (overview).
  • Chemistry: synthesis, functionalization, and self-assembly concepts.
  • Physics: optics, electronics, magnetism at nanoscale (overview).
  • Biology: nano–bio interactions, protein corona, targeting concepts.
  • Characterization: spectroscopy, microscopy, particle analysis basics.
  • Translation: performance metrics, safety, scale-up concepts.
  • Capstone: propose a nano innovation for a real use case.

Program Structure

Module 1: The Nano Frontier

  • Why nanoscience is different from bulk science.
  • Surface-to-volume ratio and interface dominance.
  • From lab discovery to real products (overview).
  • Key challenges: reproducibility, safety, scale.

Module 2: Chemistry at the Nanoscale

  • Bottom-up synthesis: sol-gel, hydrothermal, wet chemistry (overview).
  • Top-down methods: milling and lithography (overview).
  • Functionalization and surface ligands.
  • Self-assembly and supramolecular concepts (overview).

Module 3: Physics at the Nanoscale

  • Quantum confinement concepts.
  • Optical properties: plasmonics and fluorescence (overview).
  • Electrical transport and percolation concepts.
  • Magnetism and spin concepts (intro).

Module 4: Biology Meets Nanotechnology

  • Nano–bio interactions and protein corona concepts.
  • Cell uptake pathways and targeting concepts (overview).
  • Biocompatibility and toxicity basics.
  • Bio-inspired nanomaterials (overview).

Module 5: Characterization Toolkit

  • Size and stability: DLS and zeta potential concepts.
  • Structure: XRD basics.
  • Morphology: SEM/TEM concepts.
  • Surface chemistry: FTIR/Raman and XPS concepts (overview).

Module 6: Nano Innovations in Health

  • Drug delivery and controlled release concepts.
  • Nano-diagnostics and biosensors (overview).
  • Theranostics concepts and examples (overview).
  • Regulatory and safety considerations (overview).

Module 7: Nano Innovations in Energy and Environment

  • Energy: batteries, solar, catalysts (overview).
  • Hydrogen and CO2 conversion catalysts (overview).
  • Water treatment: adsorption, membranes, photocatalysis (overview).
  • Environmental sensing and monitoring concepts.

Module 8: From Discovery to Deployment

  • Performance metrics and benchmarking.
  • Scale-up and manufacturing constraints.
  • Standards, QA/QC, and reproducibility concepts.
  • Ethics, sustainability, and lifecycle thinking.

Final Project

  • Choose a domain: health OR energy OR environment OR devices.
  • Deliverables: material choice + synthesis plan + characterization plan + application metrics + safety note.
  • Submit: short innovation proposal.

Participant Eligibility

  • Students/professionals in Chemistry, Physics, Biology, Biotechnology, Materials, Engineering
  • Beginners to intermediate learners in nanoscience
  • Basic chemistry helpful

Program Outcomes

  • Explain nanoscale chemistry, physics, and bio interactions.
  • Understand synthesis and characterization workflows.
  • Connect nanomaterials to applications across sectors.
  • Create a portfolio-ready nano innovation proposal.

Program Deliverables

  • e-LMS Access: lessons, readings, quizzes.
  • Toolkit: concept sheets, characterization checklist, project template.
  • Assessment: certification after project submission.
  • e-Certification and e-Marksheet: digital credentials.

Future Career Prospects

  • Nanoscience Research Intern
  • Materials R&D Trainee
  • Biomaterials/Nanomedicine Trainee
  • Laboratory Analyst (Nanomaterials)

Job Opportunities

  • R&D Labs: nanomaterials synthesis and testing roles.
  • Biotech/Pharma: nano-formulation and diagnostics teams.
  • Energy Sector: battery, solar, and catalyst development groups.
  • Universities: interdisciplinary nanoscience research labs.
MODE

Online/ e-LMS

TYPE

Self Paced

LEVEL

Moderate

DURATION

1 Month

CATEGORY

E – LMS, E- LMS + VIDEO, E – LMS + VIDEO + LIVE LECTURES

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Certification

  • Upon successful completion of the workshop, participants will be awarded a Certificate of Completion, validating their skills and knowledge in advanced AI ethics and regulatory frameworks. This certification can be added to your LinkedIn profile or shared with employers to demonstrate your commitment to ethical AI practices.

Achieve Excellence & Enter the Hall of Fame!

Elevate your research to the next level! Get your groundbreaking work considered for publication in  prestigious Open Access Journal (worth USD 1,000) and Opportunity to join esteemed Centre of Excellence. Network with industry leaders, access ongoing learning opportunities, and potentially earn a place in our coveted 

Hall of Fame.

Achieve excellence and solidify your reputation among the elite!

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