私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

相關(guān)鏈接
聯(lián)系方式
  • 通信地址:福建省福州市閩侯縣上街鎮(zhèn)福建農(nóng)林大學(xué)旗山校區(qū)
  • 郵編:350108
  • 電話:18502093393
  • 傳真:
  • Email:liaogf@fafu.edu.cn
當(dāng)前位置:> 首頁 > 著作 > 正文
1-Chapter 14 - Graphitic carbon nitride-based materials for biomedical applications
主要譯著者:Guangfu Liao, Li Zhang, Xinzheng Li, Baizeng Fang
出版機(jī)構(gòu):Elsevier Inc.
出版日期:2023-1-19
標(biāo)準(zhǔn)書號:978-0-12-823038-1年
Graphitic carbon nitride (g-C3N4)-based materials are emerging fluorescent polymeric materials mainly consisting of C and N atoms (the basic structural units can be seen in Scheme 14.1), which have gained huge attention in various fields because of their attractive features including facile synthesis and functionalization, high physicochemical stability, stabilized electron field emission, wide-band optical transparence, controllable band gap and band position, and low toxicity (Y. Dong et al., 2016; G. G. Liao, Gong, Zhang, et al., 2019; Liao et al., 2020, Liao, Li, Li and Fang, 2021; Safaei et al., 2018). In particular, their excellent biocompatibility and stability, unique fluorescent feature, and low cost and toxicity enable g-C3N4-based materials to become attractive candidates for biomedical applications (A.-J. Wang et al., 2016; Xiong et al., 2017), e.g., diagnosis and therapy, biosensing, and antibacterial applications, which showed superior properties to other biomaterials with conventional nanostructures, e.g., nanoparticles, tubes, wires, cages, etc. In addition, biosafety and toxicity evaluations have also been conducted, including cytotoxicities, biodistribution, excretion, and hemo/histocompatibility, and the g-C3N4-based materials have demonstrated good biocompatibility, water solubility, and biometabolizability, which guarantee that they meet the requirements of practical clinical applications (L. Feng et al., 2016a; X. Zhang et al., 2013). These evidence illustrate that the emerging g-C3N4-based materials show great potential in biomedical applications. It must be noted, however, that their practical application is still restricted because of their intrinsic shortcomings, e.g., relatively large particles size and low electrical conductivity (Chan et al., 2016; C. Ye et al., 2015). Therefore, the development of modified g-C3N4 with good water solubility and biodegradability, small size, thin nanosheets thickness, and enhanced light absorption is crucial to achieve target-specific biomedical applications. Many attempts including the synthesis of new g-C3N4-based hybrids with multifunction and high performance have been widely reported. In this chapter, we systematically summarize synthetic strategies of g-C3N4-based materials and outline their recent advances in various biomedical applications such as diagnostic imaging, therapeutic application, biosensors, and antibacterial application. In addition, biosafety and toxicity evaluations of g-C3N4-based materials are also discussed in depth. Finally, the state-of-the-art progress, challenges, and perspectives of g-C3N4-based materials in biomedical applications are highlighted and discussed in detail. It is believed that the emerging g-C3N4-based materials are very promising for biomedical applications.
主站蜘蛛池模板: 和林格尔县| 疏勒县| 綦江县| 六盘水市| 吉木萨尔县| 崇仁县| 延川县| 新巴尔虎左旗| 康乐县| 汉中市| 镇赉县| 正蓝旗| 稻城县| 固安县| 巴彦淖尔市| 福清市| 恩平市| 澜沧| 白山市| 鹤庆县| 娱乐| 岢岚县| 通辽市| 大安市| 峨山| 灵丘县| 化德县| 道真| 靖州| 金昌市| 大方县| 龙里县| 文成县| 谷城县| 淮阳县| 贡觉县| 瑞金市| 阆中市| 呈贡县| 梁山县| 禹城市|