Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials: Basic Principles and Promising Multifunctionality
This book provides extensive information on organic-inorganic hybrid materials with controllable compositions and structures developed over the past few decades, including metal sulfonates, carboxylates, phosphonates, metal-organic frameworks (MOFs), etc. A variety of judicious strategies for optimi...
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2015
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oai:scholar.dlu.edu.vn:DLU123456789-583412023-11-11T06:09:07Z Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials: Basic Principles and Promising Multifunctionality Zhu, Yun-Pei Yuan, Zhong-Yong Reference Engineering Technology Engineering Mesoporous materials This book provides extensive information on organic-inorganic hybrid materials with controllable compositions and structures developed over the past few decades, including metal sulfonates, carboxylates, phosphonates, metal-organic frameworks (MOFs), etc. A variety of judicious strategies for optimizing mesoporosity are also introduced, aiming at realizing the corresponding superiorities of hybrid frameworks in practical applications at the nano-/meso-scale. The morphological design and modification methods are also described in detail, which extend the potential application range of hybrid materials from traditional areas to high-tech fields. 2015-09-17T08:15:20Z 2015-09-17T08:15:20Z 2015 Book 978-3-662-45634-7 978-3-662-45633-0 https://scholar.dlu.edu.vn/thuvienso/handle/DLU123456789/58341 en application/pdf Springer |
institution |
Thư viện Trường Đại học Đà Lạt |
collection |
Thư viện số |
language |
English |
topic |
Reference Engineering Technology Engineering Mesoporous materials |
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Reference Engineering Technology Engineering Mesoporous materials Zhu, Yun-Pei Yuan, Zhong-Yong Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials: Basic Principles and Promising Multifunctionality |
description |
This book provides extensive information on organic-inorganic hybrid materials with controllable compositions and structures developed over the past few decades, including metal sulfonates, carboxylates, phosphonates, metal-organic frameworks (MOFs), etc. A variety of judicious strategies for optimizing mesoporosity are also introduced, aiming at realizing the corresponding superiorities of hybrid frameworks in practical applications at the nano-/meso-scale. The morphological design and modification methods are also described in detail, which extend the potential application range of hybrid materials from traditional areas to high-tech fields. |
format |
Book |
author |
Zhu, Yun-Pei Yuan, Zhong-Yong |
author_facet |
Zhu, Yun-Pei Yuan, Zhong-Yong |
author_sort |
Zhu, Yun-Pei |
title |
Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials:
Basic Principles and Promising Multifunctionality |
title_short |
Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials:
Basic Principles and Promising Multifunctionality |
title_full |
Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials:
Basic Principles and Promising Multifunctionality |
title_fullStr |
Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials:
Basic Principles and Promising Multifunctionality |
title_full_unstemmed |
Mesoporous Organic-Inorganic Non-Siliceous Hybrid Materials:
Basic Principles and Promising Multifunctionality |
title_sort |
mesoporous organic-inorganic non-siliceous hybrid materials:
basic principles and promising multifunctionality |
publisher |
Springer |
publishDate |
2015 |
url |
https://scholar.dlu.edu.vn/thuvienso/handle/DLU123456789/58341 |
_version_ |
1819771355439038464 |