Quantum Chemical and Molecular Dynamics Simulations for Beginners
Language: English
Published by CRC Press, 2025
- Hardcover
- New

Seller: Majestic Books, Hounslow, United KingdomMajestic Books
AbeBooks seller since January 19, 2007
Condition: New
£ 119.86
Quantity: 3 available
Add to basketSeller Inventory # 409606654
- Title
- Quantum Chemical and Molecular Dynamics Simulations for Beginners
- Author
- Mishra, Dhirendra Kumar; Paul, Nabendu; Das, Nipu Kumar; Kumar, Nikhil; Banerjee, Tamal
- Publisher
- CRC Press
- Publication year
- 2025
- Condition
- New
- Binding
- Hardcover
- Language
- English
- ISBN 10
- 1032619287
- ISBN 13
- 9781032619286
This book provides an in-depth exploration of the dynamic field of computational chemistry. Spanning seven meticulously crafted chapters, it begins by laying a solid foundation in quantum chemistry and electronic structure theory, introducing essential tools and software that underpin computational chemistry calculations. The journey continues with a comprehensive examination of transition state analysis for interpreting reaction mechanisms, followed by an insightful discussion on modern solvation studies using QM/MM techniques and the practical implementation of hybrid models. This book concludes with an engaging dive into molecular dynamics simulations, enriched by real-world case studies utilizing NAMD and VMD to illustrate the complex behavior of molecular systems.
Key features:
- Focuses on quantum chemical calculations designed for beginners
- Reviews the use of atomistic molecular dynamics simulations for various systems
- Presents detailed analysis of calculations and result analysis on real systems
- Includes usage of widely accepted software packages such as Gaussian and NAMD
- Explores basic parameters associated with designing a chemical system
This book is aimed at researchers and senior undergraduate students in chemical engineering, chemistry, and materials science.
"Synopsis" may belong to another edition of this title.
About the Author
Dhirendra Kumar Mishra earned a Doctorate in Chemical Engineering from the Indian Institute of Technology, Guwahati, Assam, India. During his doctoral studies, he specifically concentrated on the integration of ionic liquids and eutectic solvents in the field of hydrogen storage as a catalytic solvent. His study involved utilizing experimental and computational chemistry simulations to comprehend and improve the effectiveness of ionic liquids and eutectic mixtures for practical usage. His research interests span multiple areas, including computational chemistry for energy-related applications, green and sustainable solvents, hydrogen storage, and nanofluids for thermal applications. He is currently a postdoctoral fellow at the Joint BioEnergy Institute, affiliated with Sandia National Laboratories, where his research focuses on improving the process of catalytic lignin depolymerization using solvents and heterogeneous catalysts through experimental and computational approaches. He has published more than ten research papers in journals with high impact factors, including Chemical Reviews, ACS Sustainable Chemistry and Engineering, Journal of Physical Chemistry A, International Journal of Hydrogen Energy, and the Journal of Energy Storage.
Nabendu Paul earned his Doctoral degree from the Chemical Engineering Department of the Indian Institute of Technology, Guwahati, in 2023. Subsequently, he joined the Maulana Azad National Institute of Technology (MANIT), Bhopal, and has been serving as an Assistant Professor in the Department of Chemical Engineering since January 2024. He obtained his M.Tech. and B.Tech. degrees in Chemical Engineering from the National Institute of Technology, Agartala, in 2015 and 2013, respectively. His research encompasses a wide range of interdisciplinary domains, including ionic liquids and deep eutectic solvents (DESs), extraction and recovery of pharmaceuticals and biomolecules from aqueous environments, molecular dynamics and quantum chemical calculations, and the study of non-covalent interactions. His work further extends to ionic liquid-based systems for environmental and biological applications, such as drug delivery, direct air capture (DAC) of CO2, and the development of eutectogels, ionogels, and DES-based electrolytes for supercapacitors. Recently, his group has initiated studies on the antibacterial potential of DESs in wound healing membranes. He has published over eight articles in reputed peer-reviewed journals, including Small, ACS Sustainable Chemistry and Engineering, Journal of Physical Chemistry B, and the Journal of Molecular Liquids. He has also authored a book that discusses the theoretical correlations and molecular dynamics aspects of deep eutectic solvents in environmental applications. Additionally, he has published several book chapters and conference papers. His work integrates both experimental and computational approaches and contributes to advancing sustainable and functional material systems in chemical and environmental engineering.
Nipu Kumar Das received his Doctoral degree in 2025 from the Indian Institute of Technology, Guwahati, Assam, India, in Chemical Engineering. During his Ph.D. studies, Dr. Das primarily focused on deep eutectic solvent-based thermal fluids and solubility studies of various natural deep eutectic solvents. His studies involved both experimental and computational chemistry to understand the mechanism of solvent interactions with nanoparticles. His other research interests span the areas of green nanoparticles, energy-related applications, COSMO-SAC modeling, corrosion inhibitors, and sustainable solvents. He has published more than 13 research papers in journals with high impact factors, including the Journal of Molecular Liquids, ACS Sustainable Chemistry and Engineering, AIChE Journal, Industrial Crops and Products, and the Journal of Energy Storage.
Nikhil Kumar is a postdoctoral researcher at Sandia National Laboratories who is currently working in the Predictive Deconstruction group at the Department of Energy-funded Joint BioEnergy Institute (JBEI). Dr. Kumar received his Ph.D. in 2023 from the Department of Chemical Engineering at the Indian Institute of Technology Guwahati, India. Dr. Kumar's research is primarily focused on the development of novel green solvents for aromatic compound extraction and the understanding the liquid structure of deep eutectic solvents using molecular dynamics, quantum chemistry, and COSMO-RS model simulations. Dr. Kumar's research interests also include leveraging both machine learning and first-principles physics-based methods to make improved predictions for solvents for enhanced biomass conversion, utilization of CO2 for the circular economy, and thermodynamic property predictions using various machine learning and artificial intelligence models. Dr. Kumar has co-authored a book, published more than ten research articles in leading academic journals, and contributed to over ten conferences.
Tamal Banerjee is currently a Professor at the Department of Chemical Engineering, Indian Institute of Technology, Guwahati. He served as Supplemental Faculty in the Department of Chemical and Biomolecular Engineering at the University of Delaware, USA, from 2011–2012. He also held the position of University Associate at Curtin University, Perth, Australia from 2020–2024. Throughout his career, Dr. Banerjee has authored three books (published by CRC and Elsevier) and around 200 academic publications. His research group has contributed around 900 data points related to thermodynamic properties of ionic liquid (IL) and deep eutectic solvent (DES) mixtures, now available in the NIST database. He has supervised 20 doctoral students, most of whom focus on applications of green solvents in energy and environmental domains. Dr. Banerjee received the INDO-US Fellowship in 2011 in Engineering Sciences. He is currently a Fellow of the Royal Society of Chemistry, the Indian Institute of Chemical Engineers, and the Indian Chemical Society. He serves on the editorial boards of Fluid Phase Equilibria and the Journal of Solution Chemistry, and is the Associate Editor of Thermal Advances. His research uses both quantum chemistry and molecular dynamics to predict thermodynamic and transport properties of ILs and DESs. His expertise includes the COnductor like Screening MOdel (COSMO) based methods and molecular modelling techniques, encompassing both classical molecular dynamics and reactive force field simulations (ReaxFF). His application areas span renewable energy sources (such as alcohols) and non-renewable energy sources (such as coal and chemical hydrides).
"About the title" may belong to another edition of this title.
Majestic Books
Hounslow, United Kingdom
AbeBooks seller since January 19, 2007
Shipping rates from United Kingdom to U.S.A.
| Item | 14 to 45 business days | 5 to 10 business days |
|---|---|---|
| First item | £ 6.50 | £ 9.85 |
Payment methods
Store description
We specialise in General Interest Books from South Asian countries.
Specialty
Art, Economics, Buddhism, Religion, Sociology, PaintingSeller's business information
BOOKS AND PERIODICALS AGENCY LTD
90 Barnet Gate Lane
Barnet, United Kingdom EN5 2AX
Terms of sale
Returns accepted if you are not satisfied with the Service or Book.
Right of withdrawal
If you are a consumer you can withdraw from the contract in accordance with the following. Consumer means any natural person who is acting for purposes which are outside his trade, business, craft or profession.
Information regarding the right of withdrawal
Statutory right to withdraw
You have the right to withdraw from this contract within 14 days without giving any reason.
The withdrawal period will expire after 14 days from the day on which you acquire, or a third party other than the carrier and indicated by you acquires, physical possession of the last good or the last lot or piece.
To exercise the right of withdrawal, electronically fill in and submit a clear statement on our website, under "My Purchases" in "My Account". We will communicate to you an acknowledgement of receipt of such a withdrawal on a durable medium (e.g. by e-mail) without delay.
To meet the withdrawal deadline, it is sufficient for you to send your communication concerning your exercise of the right of withdrawal before the withdrawal period has expired.
Effects of withdrawal
If you withdraw from this contract, we will reimburse to you all payments received from you, including the costs of delivery (except for the supplementary costs arising if you chose a type of delivery other than the least expensive type of standard delivery offered by us).
We may make a deduction from the reimbursement for loss in value of any goods supplied, if the loss is the result of unnecessary handling by you.
We will make the reimbursement without undue delay, and not later than 14 days after the day on which we are informed about your decision to withdraw from this contract.
We will make the reimbursement using the same means of payment as you used for the initial transaction, unless you have expressly agreed otherwise; in any event, you will not incur any fees as a result of such reimbursement.
We may withhold reimbursement until we have received the goods back, or you have supplied evidence of having sent back the goods, whichever is the earliest.
You shall send back the goods or hand them over to Majestic Books, Hounslow, United Kingdom, without undue delay and in any event not later than 14 days from the day on which you communicate your withdrawal from this contract to us. The deadline is met if you send back the goods before the period of 14 days has expired. You will have to bear the direct cost of returning the goods. You are only liable for any diminished value of the goods resulting from the handling other than what is necessary to establish the nature, characteristics and functioning of the goods.
Exceptions to the right of withdrawal
The right of withdrawal does not apply to:
- The delivery of newspapers, journals or magazines with the exception of subscription contracts; and
- The supply of digital content which is not supplied on a tangible medium (e.g. on a CD or DVD) if you accepted when you placed your order that we could start to deliver it, and that you could not withdraw once delivery had started.
Shipping terms
Best packaging and fast delivery