Course title
C00380003
Physical Chemistry of Surface and Interface

ISHIZAKI Takahiro
Middle-level Diploma Policy (mDP)
Program / Major mDP Goals Courses
Fundamental Mechanical Engineering F 産業界や社会の要請を把握して解決するべき課題を設定し、さまざまな工学分野の知識を関連付けながら設計生産技術を活用することで、立案した構想に従って研究を進め課題を解決することができる。 Sub
Advanced Mechanical Engineering F 産業界や社会の要請を把握して解決するべき課題を設定し、機械工学の学理を応用して異分野を含む融合分野で革新的な機能を創成することができる。 Sub
Environment and Materials Engineering A 確かな基礎と物質化学の専門知識に基づいて問題を解決することができる。 Main
Chemistry and Biotechnology B 地球環境や地域社会との調和を見据えて、さまざまな工学分野に関わる問題を解決することができる。 Sub
Electrical Engineering and Robotics D 電気工学や関連する工学の技術分野を課題に適用し、社会の要求を解決するために応用することができる。 Sub
Advanced Electronic Engineering E 専門的デザイン課題について解決する能力を身に付けることができる。 Sub
Information and Communications Engineering F 社会のニーズに対して技術課題を主体的に発見し、工学分野における分野横断的な知識も活用しつつ、計画的・継続的に取り組んで課題を達成することができる。 Sub
Computer Science and Engineering G 技術的課題に対してさまざまな工学分野の知識を関連付けながら主体的に取り組み、継続的に学修する能力を身に付けることができる。 Sub
Urban Infrastructure and Environment G ⼟⽊⼯学における現実の問題について、⼯学・専⾨基礎知識を⽤いて理解・解決することができる。 Sub
Purpose of class
Purpose of this lecture is to study the principle of vacuum required to perform dry process and the principle and application of various dry processes. In addition, practical examples using dry processes will be introduced and the latest dry process will be also explained.
Course description
Various materials such as organic, inorganic, or organic-inorganic hybrid materials has been widely used in various fields. These materials have various surface states depending on the application. The adsorption and desorption behaviors of various molecules and atoms change depeneding on the surface states.
In this lecture, the adsorption and desorption behaviors of various molecules and atoms will be explained at first and then the adsorption and desorption behaviors of various molecules and atoms to various phases such as solid and liquid will also be studied. In addition, kinetic theory of gas will be studied. Finally, surface wettability of solid surface will be also explained.
Goals and objectives
  1. Understanding of preparation methods and principle for surfaces and interfaces inducing functionalization
  2. Understanding of thermodynamics for surfaces and interfaces
  3. Understanding of analytical methods for surfaces and interfaces
Relationship between 'Goals and Objectives' and 'Course Outcomes'

Physical Chemistry of Surface and Interface Total.
1. 30% 30%
2. 30% 30%
3. 40% 40%
Total. 100% -
Evaluation method and criteria
Final grade point will be determined by reports and term-end examination.
Language
Japanese(English accepted)
Class schedule

Class schedule HW assignments (Including preparation and review of the class.) Amount of Time Required
1. Preface
  ・Surface and interface of materials
Survey on surface and interface of materials 30minutes
2. Interface between solid and gas phases (1)
  ・Adsorption to solid surface
・Theory of Langmuir type adsorption
・Theory of BET type adsorption
Survey of adsorption 100minutes
3. Interface between solid and gas phases (2) 
 ・Another adsorption theories
 ・Molecular kinetics theory of gases
Review of the properties of gas 100minutes
4. Interface between liquid and gas phases (1)
  ・Surface free energy
 ・Surface tension
Review of thermodynamics 100minutes
5. Interface between liquid and gas phases (2)
  ・Monolayer film
 ・Multilayer films
Survey on monolayer and self-assembly 100minutes
6. Interface between liquid and liquid phases
  ・Interface energy between liquid and liquid phases
Survey on interface energy 100minutes
7. Interface between liquid and solid phases (1)
  ・Wetting
  ・Critical surface tension of solid surface
  ・Young equation
Survey on wetting 100minutes
8. Interface between liquid and solid phases (2)
  ・Wetting and surface roughness
  ・Dynamic contact angles
Survey on ion-plating processe 100minutes
9. Force between surfaces, and particles (1)
  ・Intermolecular force
  ・Force between particles
・Force between surfaces
Survey on intermolecular force 100minutes
10. Force between surfaces, and particles (2)  
・Analytical technology for forces 
・van der waals force 
・Interaction between surface and particles
Survey on interaction 100minutes
11. Adhesion and wetting phenomena
  ・Application examples of adhesion and wetting phenomena
  ・Contact angle hysteresis
Survey on thermodynamics of surface and interfaces 100minutes
12. Surface functionalization
  ・Preparation methods of corrosion resistant films
 ・Evaluation methods of corrosion resistant films
Survey on corrosion resistant film 100minutes
13. Analytical methods of surface and interfaces
  ・Analytical methods of surface and interfaces at micro to macro-scales
Review of phycical chemistry for surface ans interfaces 100minutes
14. Term-end examination and comments Understanding of contents of the lecture by reading documents distributed 120minutes
Total. - - 1350minutes
Feedback on exams, assignments, etc.
ways of feedback specific contents about "Other"
Feedback in/outside the class.
Textbooks and reference materials
N/A
Prerequisites
Basis of thermodynamics
Office hours and How to contact professors for questions
  • Visit the office with appointment
  • Monday(12:20-13:00) at Toyosu campus.
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates an ability for utilizing knowledge
  • Course that cultivates a basic problem-solving skills
  • Course that cultivates a basic self-management skills
Active-learning course
Most classes are interactive
Course by professor with work experience
Work experience Work experience and relevance to the course content if applicable
N/A N/A
Education related SDGs:the Sustainable Development Goals
  • 4.QUALITY EDUCATION
  • 9.INDUSTRY, INNOVATION AND INFRASTRUCTURE
Last modified : Sat Mar 14 14:09:54 JST 2026