JOURNAL OF ADHESION黏附杂志

JOURNAL OF ADHESION(英文缩写 J ADHESION),ISSN 0021-8464,eISSN 1545-5823,中文译名:黏附杂志 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
2.600
JCR 分区
Q2
CAS 分区
B3
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0021-8464 · eISSN: 1545-5823 · 缩写: J ADHESION ·中文: 黏附杂志

期刊介绍

选择期刊介绍栏目

期刊简介

《Journal of Adhesion》是一本专注于黏附科学与技术领域的国际期刊,涵盖黏附机理、界面化学、表面处理、胶粘剂配方及粘接工艺等方向。读者群包括材料科学家、高分子研究者、表面工程人员以及从事胶接与密封技术的工程师。该刊强调基础研究与工程应用的结合,为黏附领域的学术交流和工业实践提供重要平台。

研究方向

主要研究方向包括黏附理论、界面相互作用、表面改性、胶粘剂与密封剂的合成与性能、粘接接头力学、耐久性与老化行为,以及生物黏附等。论文类型以原创研究论文为主,兼有综述和短通讯,覆盖从基础机理到工程应用的广泛主题。

期刊特色

研究取向偏重实验与理论结合,强调对黏附现象的科学理解和实际验证。论文通常包含系统的表征数据与性能分析,适合从事胶粘剂开发、表面处理、复合材料连接及生物医学粘接的研究人员与工程师阅读参考。

投稿难度

投稿难度中等偏上,对机理阐释和实验设计的严谨性要求较高。建议在投稿前充分验证数据的可重复性,明确创新点,并针对黏附领域的关键问题展开讨论。若工作偏工程应用,需突出其科学价值;若偏基础研究,则需说明潜在应用前景。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20212.446Q3
20222.200Q3
20232.900Q2
20242.300Q2
20252.600Q2

JOURNAL OF ADHESION 最新收录文献

  1. JCR分区: Q2 CAS分区: B3 影响因子: 2.6

    1. Structural and Biophysical Characterization of a Cyclic Bioadhesive With Cell Attachment Ability.

    作者:
    Marion P Olivieri, Robert M Wollman, Mary I Hurley, Michael F Swartz
    日期:
    2010-01-01

    Structural and cellular attachment analysis identified overall bent helical regions of adhesive peptides identified within mussel adhesive protein (MAP) capable of also attaching cells. DOPA (L-DOPA, 3,4-dihydroxyphenylalanine) is frequently identified and credited for the attachment ability of several marine proteins [Olivieri, MP, . (2002), , 149-159]. Newly designed cyclic peptides (DOPA-G-G-C-G-K-A-K-G-C [cyc-DOPA] & Y-G-G-C-G-K-A-K-G-C [cyc-Y]) derived from structurally conserved regions of several MAP peptides were examined to assist in the understanding of both surface and cellular attachment. Solution-state proton nuclear magnetic resonance (NMR) spectroscopy coupled with molecular modeling and dynamics revealed minimal differences in the structures of the proposed cellular attachment domain within these two peptides. Multiple attenuated internal reflection infrared (MAIR-IR) spectroscopy, ellipsometry and advancing contact angle analyses showed that formation of thin films by these peptides was L-DOPA and pH dependent. When compared to control surfaces, undifferentiated leukocyte cells (MOLT-4) significantly attached and spread onto films created from the cyc-DOPA. The culmination of these structural, biophysical and cellular attachment techniques reveal a conformation of cyc-DOPA that is capable of both adsorbing to surfaces and then attaching cells that spread. This work supports the sequence, K-A-K, as the cellular attachment domain, especially when held in a reliable structural conformation.,.

  2. JCR分区: Q2 CAS分区: B3 影响因子: 2.6

    2. Sum Frequency Generation Studies on Bioadhesion: Elucidating the Molecular Structure of Proteins at Interfaces.

    作者:
    Stéphanie Le Clair, Khoi Nguyen, Zhan Chen
    日期:
    2009-08-01

    The study of bioadhesion is significant to applications in a variety of scientific fields. Techniques that are surface sensitive need to be utilized to examine these kinds of systems because bioadhesion occurs at the interface between two surfaces. Recently, Sum Frequency Generation (SFG) has been applied to investigate different bioadhesive processes because of its intrinsic surface specificity, excellent sensitivity and its ability to perform experiments in situ. SFG studies on the bioadhesion of fibrinogen, factor XII and mefp-3 on various surfaces will be discussed in this review.

  3. JCR分区: Q2 CAS分区: B3 影响因子: 2.6

    3. Halogenated DOPA in a Marine Adhesive Protein.

    作者:
    Cheng Jun Sun, Aasheesh Srivastava, Jack R Reifert, J Herbert Waite
    日期:
    2009-02-01

    The sandcastle worm Phragmatopoma californica, a marine polychaete, constructs a tube-like shelter by cementing together sand grains using a glue secreted from the building organ in its thorax. The glue is a mixture of post-translationally modified proteins, notably the cement proteins Pc-1 and Pc-2 with the amino acid, 3,4-dihydroxyphenyl-L-alanine (DOPA). Significant amounts of a halogenated derivative of DOPA were isolated from the worm cement following partial acid hydrolysis and capture of catecholic amino acids by phenylboronate affinity chromatography. Analysis by tandem mass spectrometry and (1)H NMR indicates the DOPA derivative to be 2-chloro-4, 5-dihydroxyphenyl-L-alanine. The potential roles of 2-chloro-DOPA in chemical defense and underwater adhesion are considered.

  4. JCR分区: Q2 CAS分区: B3 影响因子: 2.6

    4. Adhesion of DOPA-Functionalized Model Membranes to Hard and Soft Surfaces.

    作者:
    Murat Guvendiren, David A Brass, Phillip B Messersmith, Kenneth R Shull
    日期:
    2009-01-01

    The adhesive proteins secreted by marine mussels form a natural glue that cures rapidly to form strong and durable bonds in aqueous environments. These mussel adhesive proteins contain an unusual amino acid, 3,4-dihydroxy-L-phenylalanine (DOPA), which is largely responsible for their cohesive and adhesive strengths. In this study, we incorporated DOPA into diblock and triblock polymers and developed a membrane contact experiment to assess the adhesive interactions of these materials with TiO(2) and tissue surfaces. In a typical experiment a micrometer-thick DOPA-functionalized elastomeric membrane is attached to the end of a cylindrical glass tube. Application of a positive pressure to the tube brings the membrane into contact with the surface of interest. The negative pressure needed to separate the membrane from the substrate is a measure of the strength of the adhesive interaction. The test confirms previous results obtained with TiO(2) substrates. Because the membrane geometry is well suited for rough or chemically heterogeneous surfaces, it is ideal for studies of tissue adhesion. DOPA was found to give strong adhesion to tissue surfaces, with the strongest adhesion obtained when the DOPA groups were oxidized while in contact with the tissue surface.

在 JOURNAL OF ADHESION 中搜索更多文献

支持中英文检索 · 智能翻译 · 影响因子 · PDF 下载 · AI 文献阅读

指标接近的期刊