HfO2-Based Ferroelectric Materials : Fabrication, Characterization and Device Applications
Language: English
Published by Wiley-VCH Sep 2026, 2026
- Hardcover
- New

Seller: AHA-BUCH GmbH, Einbeck, GermanyAHA-BUCH GmbH
AbeBooks seller since August 14, 2006
Condition: New
£ 160.05
Quantity: 2 available
Add to basketItem description from seller
Neuware - Explores HfO2-based ferroelectrics for memory, sensing, and advanced electronic applicationsFerroelectric hafnium oxide (HfO2)-based materials have transformed the field of electronic materials and device design, offering pathways to overcome long-standing barriers in scalability, compatibility, and reliability. The emergence of robust ferroelectricity in doped HfO2 has revolutionized both research and industry perspectives, providing a viable solution where conventional ferroelectrics often fell short.With contributions from leading experts, HfO2-Based Ferroelectric Materials addresses the critical need for a consolidated reference on HfO2-based ferroelectrics, offering foundational knowledge as well as the latest insights into fabrication, material characterization, and device integration. The book opens with fundamentals of ferroelectricity and the mechanisms driving HfO2-based ferroelectric behavior, before progressing to detailed examinations of deposition techniques, superlattice structures, and reliability considerations. It further explores a broad spectrum of applications, including non-volatile memories, neuromorphic computing, compute-in-memory architectures, and negative capacitance transistors, alongside emerging roles in energy storage, microwave technologies, and piezoelectric systems. Special attention is given to persistent challenges such as the wake-up effect, fatigue, and imprint issues and the strategies developed to mitigate them.An authoritative and well-structured resource for advancing the frontiers of electronic materials and device technologies, HfO2-Based Ferroelectric Materials:\* Explains the origins of ferroelectricity in doped HfO2 and its unique material advantages\* Details deposition techniques and approaches to regulating ferroelectric behavior\* Examines device-level challenges, including wake-up effect, fatigue, and imprint reliability\* Highlights applications spanning non-volatile memories, neuromorphic computing, and energy-efficient devices\* Discusses advanced designs such as superlattice-like laminate structures and 3D ferroelectric memories\* Provides insight into the reliability of HfO2-based thin films, capacitors, and field-effect transistorsHfO2-Based Ferroelectric Materials: Fabrication, Characterization, and Device Applications is an essential resource for materials scientists, electronics engineers, semiconductor and solid-state physicists, and professionals in the semiconductor and sensor industries. It is also a valuable reference for graduate-level courses in electronic materials, semiconductor devices, and advanced nanotechnology within physics, materials science, and electrical engineering degree programs. …
Seller Inventory # 9783527353187
- Title
- HfO2-Based Ferroelectric Materials : Fabrication, Characterization and Device Applications
- Author
- Xubing Lu
- Publisher
- Wiley-VCH Sep 2026
- Publication year
- 2026
- Condition
- Neu
- Binding
- Buch
- Language
- English
- ISBN 10
- 3527353186
- ISBN 13
- 9783527353187
- Item weight
- 1,041 grams
- Dimensions
- 252x175x30 mm
Explores HfO2-based ferroelectrics for memory, sensing, and advanced electronic applications
Ferroelectric hafnium oxide (HfO2)-based materials have transformed the field of electronic materials and device design, offering pathways to overcome long-standing barriers in scalability, compatibility, and reliability. The emergence of robust ferroelectricity in doped HfO2 has revolutionized both research and industry perspectives, providing a viable solution where conventional ferroelectrics often fell short.
With contributions from leading experts, HfO2-Based Ferroelectric Materials addresses the critical need for a consolidated reference on HfO2-based ferroelectrics, offering foundational knowledge as well as the latest insights into fabrication, material characterization, and device integration. The book opens with fundamentals of ferroelectricity and the mechanisms driving HfO2-based ferroelectric behavior, before progressing to detailed examinations of deposition techniques, superlattice structures, and reliability considerations. It further explores a broad spectrum of applications, including non-volatile memories, neuromorphic computing, compute-in-memory architectures, and negative capacitance transistors, alongside emerging roles in energy storage, microwave technologies, and piezoelectric systems. Special attention is given to persistent challenges―such as the wake-up effect, fatigue, and imprint issues―and the strategies developed to mitigate them.
An authoritative and well-structured resource for advancing the frontiers of electronic materials and device technologies, HfO2-Based Ferroelectric Materials:
- Explains the origins of ferroelectricity in doped HfO2 and its unique material advantages
- Details deposition techniques and approaches to regulating ferroelectric behavior
- Examines device-level challenges, including wake-up effect, fatigue, and imprint reliability
- Highlights applications spanning non-volatile memories, neuromorphic computing, and energy-efficient devices
- Discusses advanced designs such as superlattice-like laminate structures and 3D ferroelectric memories
- Provides insight into the reliability of HfO2-based thin films, capacitors, and field-effect transistors
HfO2-Based Ferroelectric Materials: Fabrication, Characterization, and Device Applications is an essential resource for materials scientists, electronics engineers, semiconductor and solid-state physicists, and professionals in the semiconductor and sensor industries. It is also a valuable reference for graduate-level courses in electronic materials, semiconductor devices, and advanced nanotechnology within physics, materials science, and electrical engineering degree programs.
"Synopsis" may belong to another edition of this title.
About the Author
Xubing Lu is Professor of Physics at South China Normal University, where his research focuses on dielectric and ferroelectric thin-film materials and their applications in non-volatile memory devices. He earned his PhD in Physics from Nanjing University, China in 2002 and subsequently held research positions as a postdoctoral researcher, JSPS research fellow, and Humboldt fellow across leading institutions in China and abroad. Professor Lu has published over 250 scientific papers and holds more than 20 Chinese patents.
"About the title" may belong to another edition of this title.
Shipping rates from Germany to U.S.A.
| Item | 7 to 10 business days | 5 to 7 business days |
|---|---|---|
| First item | £ 36.37 | £ 49.45 |
Payment methods
- Bank Wire Transfer
- Check
- Paypal
Store description
Das Unternehmen AHA-BUCH GmbH: Seit der Gründung von AHA-BUCH im Juli 2005 ist unser Hauptziel, zufriedenen Kunden so schnell und so preisgünstig wie möglich ihren Bücherwunsch zu erfüllen. Unsere Firma beschäftigt 16 Mitarbeiter, die nur ein Ziel kennen: den Kunden und seine Wünsche! Auf über 3700 m2 Fläche haben wir über 100.000 Bücher, Modernes Antiquariat und Spiele auf Lager.
Specialty
Kinderbücher & Kinderhör Casetten, German Books, Software, Natur & Tiere, Ratgeber, Sachbücher, Englische Bücher, Medizin & Gesundheit, Universität & StudiumSeller's business information
AHA-BUCH GmbH
Garlebsen 48
Einbeck, Germany 37574
Terms of sale
Imprint
Seller Info:
AHA-BUCH GmbH
represented by the managing director Christel Glass
Garlebsen 48
37574 Einbeck
Deutschland
Telefon: 055639996039
Telefax: 055639995974
E-Mail: abebooks@aha-buch.de
USt-IdNr.: DE261904229
registered at Commercial register Amtsgerichtes Göttingen
Handelsregisternummer HRB 200691
Alternative dispute resolution:
The European Commission provides a platform for out-of-court online dispute resolution (ODR platform), which can be accessed under https://ec.europa.eu/odr.
We have been a member of the "FairCommerce" initiative since 25.05.2018.
For more information, see www.fair-commerce.de.
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 AHA-BUCH GmbH, Einbeck, Germany, 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
We ship your order after we received them
for articles on hand latest 24 hours,
for articles with overnight supply latest 48 hours.
In case we need to order an article from our supplier our dispatch time depends on the reception date of the articles, but the articles will be shipped on the same day.
Our goal is to send the ordered articles in the fastest, but also most efficient and secure way to our customers.