Since Dr. Disiich of Germany prepared a glass lens by the sol-gel method around 1970, sol-gel science and technology has continued to develop. Since then this field has seen remarkable technical developments as well as a broadening of the applications of sol-gel science and technology. There is a growing need for a comprehensive reference that treats both the fundamentals and the applications, and this is the aim of "Handbook of Sol-Gel Science and Technology". The primary purpose of sol-gel science and technology is to produce materials, active and non-active including optical, electronic, chemical, sensor, bio- and structural materials. This means that sol-gel science and technology is related to all kinds of manufacturing industries. Thus "Volume 1, Sol-Gel Processing", is devoted to general aspects of processing. Newly developed materials such as organic-inorganic hybrids, photonic crystals, ferroelectric coatings, photocatalysts will be covered. Topics in this volume include: synthesis and reaction of sol-gel precursors, preparation of bulk glass and ceramics, processing of porous materials based on self-organization, synthesis of organic-inorganic hybrid materials, coating of plastics, and special processes used in sol-gel formation of materials (Non-hydrolytic sol-gel process, Sonogels, and UV irradiation). "Volume 2, Characterization of Sol-Gel Materials and Products", highlights the important fact that useful materials are only produced when characterization is tied to processing. Furthermore, characterization is essential to the understanding of nanostructured materials, and sol-gel technology is a most important technology in this new field. Since nanomaterials display their functional property based on their nano- and micro-structure, 'characterization' is very important. Topics found in Volume 2 include: determination of structure by NMR, in-situ characterization of the sol-gel reaction process, determination of microstructure of oxide gels, characterization of porous structure of gels by the surface measurements, characterization of organic-inorganic hybrid, measurements of rheological properties, and measurements of functional properties - fluorescence, laser, non-linear optical and other properties. Sol-gel technology is a versatile technology, making it possible to produce a wide variety of materials and to provide existing substances with novel properties. This technology was applied to producing novel materials, for example organic-inorganic hybrids, which are quite difficult to make by other fabricating techniques, and it was also applied to producing materials based on high temperature superconducting oxides. "Volume 3, Applications of Sol-Gel Technology", will cover applications such as: application of sol-gel method to processing of bulk silica glasses, bulk porous gels prepared by sol-gel method, application of sol-gel method to fabrication of glass and ceramic fibers, reflective and antireflective coating films, planar waveguides prepared by sol-gel method, films with micropatterns and two-dimensional photonic crystals, application of sol-gel method to formation of ferroelectric films, application of sol-gel method to formation of photocatalytic coating films, and application of sol-gel method to bioactive coating films.
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我以一个长期关注材料科学发展的普通读者的视角来评价《Handbook of Sol-Gel Science and Technology》。这本书给我的感觉是,它像一位资深博学的朋友,耐心而细致地向我展示了溶胶-凝胶科学的神奇世界。尽管我对化学反应和物理过程的理解并非专业级别,但书中清晰的解释和直观的图示,让我能够比较轻松地把握核心概念。我发现,溶胶-凝胶技术远比我想象的要广泛和精妙,它能够创造出各种各样具有独特性能的材料,而这些材料又可以应用在日常生活的方方面面,从高性能涂层到先进的电子元件,甚至在医疗领域也发挥着重要作用。书中的内容并非枯燥的学术论文堆砌,而是充满了科学的魅力和创新的火花。它让我看到了科学研究如何一步步地推动技术进步,并最终改善我们的生活。这本书让我对材料科学产生了更浓厚的兴趣,也让我对未来的技术发展充满期待。
评分这本《Handbook of Sol-Gel Science and Technology》绝对是那种让你打开就放不下的书。我当初抱着学习的心态购入,没想到它竟然是一扇通往新世界的大门。书中的每一个章节都像一个精心雕琢的艺术品,从基础理论的铺陈到前沿技术的剖析,都做到了深入浅出,逻辑严谨。作者们显然在这一领域深耕多年,他们的知识储备和研究深度令人赞叹。我尤其喜欢其中对溶胶-凝胶过程的细致讲解,那些复杂的化学反应和物理变化,在他们的笔下变得生动形象。书中穿插的大量图表和实验数据,更是为理解这些概念提供了有力的支撑。阅读过程中,我常常会停下来,反复咀嚼那些精辟的论述,并尝试将它们与自己过去的学习经历联系起来。这本书不仅仅是一本技术手册,更像是一位经验丰富的导师,循循善诱地引导我探索溶胶-凝胶科学的无限可能。它所传达的严谨的科学精神和创新性的思维方式,无疑将对我未来的研究方向产生深远的影响。这本书的价值,绝不仅仅体现在其信息的密集度上,更在于它激发读者深入思考和探索的能力。
评分《Handbook of Sol-Gel Science and Technology》这本书,给我留下最深刻印象的是其内容的全面性和体系性。作为一本“Handbook”,它确实做到了名副其实,涵盖了溶胶-凝胶科学的各个重要方面,并且将它们有机地组织在一起,形成了一个完整的知识体系。从基础的化学前驱体选择,到溶胶和凝胶的形成机理,再到后续的处理工艺和表征方法,书中都进行了详尽的介绍。更难能可贵的是,它还深入探讨了溶胶-凝胶法在不同领域的具体应用,例如陶瓷、玻璃、复合材料、薄膜以及纳米结构材料的制备,并且对各种应用场景下的技术难点和优化策略进行了深入分析。我个人认为,这本书的价值不仅仅在于为研究人员提供了一个查找技术细节的工具,更在于它能够帮助读者建立起对溶胶-凝胶科学的整体认知框架,理解不同技术模块之间的内在联系,从而更好地进行创新性研究和开发。它就像一本“武功秘籍”,让你不仅知道招式,更能领悟其精髓。
评分说实话,刚拿到《Handbook of Sol-Gel Science and Technology》时,我对其内容深度和广度并没有一个特别明确的预期,毕竟“Handbook”这类书籍往往偏向于实用性和资料汇编。然而,这本书完全颠覆了我之前的认知。它不仅仅是一本操作指南,更是一份详尽的学科概览。书中对于溶胶-凝胶法的历史发展、基本原理、不同体系的特性,以及其在各个应用领域(如材料制备、传感器、催化剂等)的最新进展,都进行了系统而全面的梳理。我特别欣赏其结构设计,每一个主题都被分解得既独立又相互关联,使得读者可以根据自己的兴趣和需求,选择性地深入阅读。书中的例子丰富多样,涵盖了从实验室小规模制备到工业化生产的各个环节,为我提供了宝贵的实践参考。而且,书中引用的参考文献都是该领域的权威文献,这本身就大大提升了书籍的可信度和价值。对于任何想要系统了解溶胶-凝胶科学的同行来说,这本书无疑是不可或缺的“圣经”。它就像一本百科全书,让你在需要时总能找到最准确、最权威的答案。
评分对于《Handbook of Sol-Gel Science and Technology》这本书,我的感受是它极具启发性,而且非常务实。我是一名在材料领域工作的研究员,日常工作中经常需要接触到各种先进的制备技术。溶胶-凝胶法因其独特的优势,一直是我关注的重点。而这本书,则为我提供了一个非常好的平台来深化理解。它并没有过分强调理论的艰深,而是将理论与实际应用紧密结合,重点阐述了如何通过溶胶-凝胶技术解决实际问题。书中列举了大量的案例研究,详细介绍了每一步的操作细节、关键参数的控制,以及可能遇到的问题和解决方案。这对于我们这些需要将研究成果转化为实际应用的人来说,简直是雪中送炭。我尤其赞赏的是,书中还讨论了溶胶-凝胶技术在一些新兴领域(比如生物医学材料、纳米材料等)的最新发展趋势,这让我对未来的研究方向有了更清晰的认识。这本书不仅教会了我“是什么”,更教会了我“怎么做”,而且“怎么做得更好”。
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