Nanoscience

Postgraduate Program | School of Science

Nanoscience

Nanoscience at Zewail City offers a research-driven postgraduate pathway focused on understanding and manipulating materials and phenomena at the nanoscale. The program combines strong foundations in basic sciences with advanced interdisciplinary research across nanotechnology, materials science, and biomedical applications.

Students develop expertise in nanomaterials, nanomedicine, and functional nanosystems through hands-on research and advanced laboratory training, preparing them to contribute to scientific discovery and technological innovation.

Why Study This Program

at Zewail City?

  • Access to advanced research facilities and specialized laboratories
  • Interdisciplinary environment integrating science, engineering, and biomedical fields
  • Faculty mentorship from experienced researchers with international expertise
  • Strong focus on research and innovation in emerging nanotechnologies
  • Opportunities for international collaboration and scientific exposure

Key Areas of Study

  • Nanomedicine and cancer nanotechnology
  • Smart drug delivery systems
  • Nanobiotechnology
  • Tissue engineering and regenerative medicine
  • Nanobiomaterials and functional materials
  • Biosensors and diagnostic technologies
  • Organic synthesis and nanoformulations

Available Degrees

M.Sc. in Nanoscience

Program Information
Degree Type:
M.Sc.
Study Mode:
Full Time
Duration:
2 Years
Total Credit Hours:
40
Language of Study:
English
School:
School of Science
Program Overview

The M.Sc. in Nanoscience is a research-based program designed to develop advanced knowledge and practical skills in nanoscale science and technology. The program combines core scientific foundations with specialized study and laboratory research, enabling students to investigate and develop nanomaterials and nanoscale systems for advanced applications.

Students are trained in experimental techniques, material characterization, and data analysis, preparing them to conduct independent research in nanoscience and related fields.

Program Educational Objectives

Within a few years of graduation, graduates are expected to:

  • Develop strong knowledge of nanoscale phenomena and material behavior
  • Design and develop nanomaterials for advanced applications
  • Apply research methodologies in nanoscience and nanotechnology
  • Work effectively in interdisciplinary research environments

Upon completion of the program, graduates will be able to:

  • Understand nanoscale interactions in materials and systems
  • Synthesize and characterize nanomaterials using advanced techniques
  • Apply experimental and analytical methods in nanoscience research
  • Identify suitable applications for developed nanomaterials
  • Conduct independent research and communicate findings effectively

The program includes a structured research component that enables students to conduct independent scientific investigations within their chosen specialization.

Under faculty supervision, students develop a research proposal, apply advanced experimental and characterization techniques, and analyze results using scientific methodologies. The program culminates in an M.Sc. thesis, where students address a defined research problem and contribute to the advancement of nanoscience.

Graduates of the Nanoscience program may pursue:

  • Academic and research careers in universities and research institutes
  • Roles in nanotechnology, biotechnology, and advanced materials industries
  • Research and development positions in high-tech sectors
  • Innovation and startup development in nanotechnology applications
  • Leadership roles in scientific and industrial research environments

Ph.D. in Nanoscience

Program Information
Degree Type:
Ph.D.
Study Mode:
Full Time
Duration:
4 Years
Total Credit Hours:
60
Language of Study:
English
School:
School of Science
Program Overview

The Ph.D. in Nanoscience is a research-intensive program designed to develop independent researchers capable of advancing knowledge in nanoscale science and technology. The program focuses on understanding nanoscale phenomena and applying advanced scientific approaches to develop innovative nanomaterials and functional systems.

Students engage in original research addressing emerging challenges in nanoscience, with strong emphasis on interdisciplinary applications and scientific innovation.

Program Educational Objectives

Within a few years of graduation, graduates are expected to:

  • Develop advanced knowledge of nanoscale phenomena and material behavior
  • Design and develop innovative nanomaterials and nanosystems
  • Apply advanced research methodologies in nanoscience
  • Contribute to scientific advancement across interdisciplinary fields

Upon completion of the program, graduates will be able to:

  • Conduct independent and original research in nanoscience
  • Synthesize and characterize nanomaterials using advanced techniques
  • Apply experimental, analytical, and modeling methods in research
  • Identify and develop applications for nanoscale materials and systems
  • Communicate research findings through publications and presentations

The Ph.D. program is centered on independent, high-level research. Students develop a research proposal under faculty supervision and conduct in-depth investigations using advanced experimental and analytical techniques.

The program culminates in a doctoral dissertation representing a significant scientific contribution, often supported by publications in peer-reviewed journals and participation in international conferences.

Computer Engineering

This specialization focuses on advanced computing systems, embedded platforms, and secure digital infrastructures. Students gain expertise in computer architecture, operating systems, embedded systems, computer networks, cybersecurity, and intelligent computing systems.

Career Opportunities:

  • Computer Engineer
  • Embedded Systems Engineer
  • Systems Engineer
  • Cybersecurity Engineer
  • Software Systems Engineer
  • IoT Engineer

Communications Engineering & AI

This specialization focuses on modern communication systems and intelligent networking technologies. Students develop expertise in signal processing, communication system modeling, secure network architectures, and IoT platforms. The track also integrates artificial intelligence and data analytics to optimize communication systems and improve network performance.

Career Opportunities:

  • Telecommunications Engineer
  • Network Systems Engineer
  • Signal Processing Engineer
  • Wireless Communications Engineer
  • AI Communications Engineer
  • IoT Systems Engineer

Nanophotonics and Optical Systems

This specialization focuses on light-based technologies and their applications in communication, sensing, and advanced imaging systems. Students explore optical communication systems, fiber optics, laser technologies, and photonic sensors used in modern industries.

Career Opportunities:

  • Photonics Design Engineer
  • Optical Systems Engineer
  • Optical Communications Engineer
  • Laser Applications Engineer
  • LiDAR Systems Engineer

Micro-Electro-Mechanical Systems (MEMS)

This specialization focuses on micro-scale systems that combine electronic and mechanical components such as sensors and actuators. Students gain both theoretical and hands-on experience in MEMS design, fabrication, and applications across industrial, medical, and smart technologies.

Students also benefit from advanced facilities, including the educational cleanroom, where they learn device fabrication processes and microfabrication techniques.

Career Opportunities:

  • MEMS Engineer
  • Sensor Design Engineer
  • Microfabrication Engineer
  • Semiconductor Process Engineer
  • Biomedical Device Engineer

Graduates may work across industries including semiconductor manufacturing, automotive, telecommunications, healthcare technologies, and aerospace.

VLSI and Integrated Circuit Design

This specialization focuses on the design and development of integrated circuits used in modern electronic systems. Students gain knowledge in digital and analog circuit design, chip architecture, and semiconductor technologies. These skills are essential for developing smart devices, artificial intelligence hardware, communication systems, and advanced computing platforms.

Career Opportunities:

  • Circuit Design Engineer
  • Physical Design Engineer
  • Verification Engineer
  • ASIC Design Engineer
  • Semiconductor Engineer
Young Learners Programs

Seasonal programs designed to build skills and spark curiosity across different age groups.

  • Ages 18–25 | 30 hours – ZC Job Readiness Program

    Focuses on employability skills including communication, professionalism, digital skills, financial awareness, and entrepreneurship.
  • Ages 7–12 & 13–15 | 5 days – Young Scientist Camp

    Hands-on scientific learning with Zewail City professors and researchers, designed to inspire early interest in science and innovation.
Language Programs

Professional language courses designed to strengthen communication in workplace environments.

  • Business English
  • Legal English
Continuing Education

AI Specialized Short Courses

10–15 hours each. Practical AI tools tailored to different professions.

  • AI Tools for Engineers (Mechanical, Architecture, Petroleum)
  • AI Tools for HR Professionals
  • AI Tools for Office Managers & Administrators
  • AI Tools for Accountants & Finance Professionals
  • AI Tools for Bankers
  • AI Tools for Teachers
  • AI Tools for Instructional Designers

Professional Diploma in Data Analysis

180 hours | Micro-credential based

A comprehensive diploma covering:

  • Statistics & Excel for Data Analysis
  • Power BI (Basic to Advanced)
  • Databases & SQL
  • Programming Concepts
  • Python for Data Analysis (Fundamentals to Advanced Applications)

Modules can be taken individually or as a complete professional diploma track.

Corporate Training

Corporate Training & Tailored Programs

Fully customized programs developed in partnership with organizations to address specific capability gaps and performance priorities.

Each program is designed following a deep assessment of organizational objectives, talent needs, and strategic goals, ensuring measurable impact and sustainable outcomes.

  • Performance Analysis
  • Talent Assessment
  • Strategic Goals
Executive Education Programs

Short, focused programs designed to build practical leadership, analytical, and business skills.

  • Data-Driven Decision Making
  • Business Psychology
  • HR Analytics using Excel & Power BI
  • International Financial Reporting Standards (IFRS) – Part 1 (25 hours)
  • International Financial Reporting Standards (IFRS) – Part 2 (25 hours)
  • Finance for Non-Finance Professionals (25 hours)