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81.
透明质酸(Hyaluronic acid, HA)是一种天然多糖,具有良好的生物相容性和生物降解性,利用 HA 构建的纳米载体自身就具有肿瘤靶向功能,可以作为抗癌药物载体将药物传递到肿瘤细胞内从而实现精准到达病患处。近年来透明质酸在应用于肿瘤靶向给药系统中的关注越来越多,成为了靶向治疗肿瘤的一大研究热点。基于透明质酸的基本特性和肿瘤靶向的生理学基础,在不同的刺激响应下,透明质酸型纳米给药系统能将药物集中释放于肿瘤的微环境内,更好地杀死肿瘤细胞,同时避免其他正常的组织受到药物损害。本文主要综述了透明质酸型纳米药物输送系统在各种刺激响应下释放药物的最新研究进展。 相似文献
82.
Dr. Xuelin Yao Dr. Heng Zhang Fanmiao Kong Dr. Antoine Hinaut Dr. Rémy Pawlak Prof. Dr. Masanari Okuno Dr. Robert Graf Dr. Peter N. Horton Prof. Dr. Simon J. Coles Prof. Dr. Ernst Meyer Prof. Dr. Lapo Bogani Prof. Dr. Mischa Bonn Prof. Dr. Hai I. Wang Prof. Dr. Klaus Müllen Prof. Dr. Akimitsu Narita 《Angewandte Chemie (International ed. in English)》2023,62(46):e202312610
Structurally defined graphene nanoribbons (GNRs) have emerged as promising candidates for nanoelectronic devices. Low band gap (<1 eV) GNRs are particularly important when considering the Schottky barrier in device performance. Here, we demonstrate the first solution synthesis of 8-AGNRs through a carefully designed arylated polynaphthalene precursor. The efficiency of the oxidative cyclodehydrogenation of the tailor-made polymer precursor into 8-AGNRs was validated by FT-IR, Raman, and UV/Vis-near-infrared (NIR) absorption spectroscopy, and further supported by the synthesis of naphtho[1,2,3,4-ghi]perylene derivatives ( 1 and 2 ) as subunits of 8-AGNR , with a width of 0.86 nm as suggested by the X-ray single crystal analysis. Low-temperature scanning tunneling microscopy (STM) and solid-state NMR analyses provided further structural support for 8-AGNR . The resulting 8-AGNR exhibited a remarkable NIR absorption extending up to ∼2400 nm, corresponding to an optical band gap as low as ∼0.52 eV. Moreover, optical-pump TeraHertz-probe spectroscopy revealed charge-carrier mobility in the dc limit of ∼270 cm2 V−1 s−1 for the 8-AGNR . 相似文献
83.
观察法布里—珀罗标准具和共焦球面扫描干涉仪在共焦前后的多光束干涉图像,根据干涉条纹的变化和干涉仪频谱信号强弱进行精确调焦的方法,提高了实验效率并且得到了较好的实验结果。 相似文献
84.
85.
K. S. Dharmsaktu Arvind Kumar Renu Tripathi K. Singh 《Optics and Lasers in Engineering》2000,34(3):191
A technique has been proposed to analyze small in-plane component of vibrations by measuring the fringe shift, and analysing the correlation output of captured vibrating Young's fringes with a photorefractive correlator. Fringes are formed due to interference between the reconstructed speckled beam recorded for stationary object beam, and vibrated speckled beam transmitting through a BaTiO3 crystal after introducing a small shift in the diffuser position. The correlation peak intensity is affected due to mismatch of vibrations between two piezo-mirrors in the object beam. High correlation output gives an indication of the frequency matching of known reference and unknown vibrations, thus giving information on the frequency of vibration. Vibration amplitudes of the order of a wavelength of light have been measured by counting the number of fringes passing past a line in the observation plane. 相似文献
86.
Carrier mediated transport of bilirubin, biliverdin, their dimethylesters and aetiobiliverdin-IV- is measured using a variety of potential carriers like proteins, peptides, tensides and -cyclodextrin in a bulk membrane model. A strong dependence of the transport flux densities on structural details of the carriers as well as of the bile pigments themselves is observed. 相似文献
87.
《Physics letters. A》2019,383(27):125856
Inspired by successful exfoliation in experiment, we explore mechanical, electronic and transport properties of GeP monolayer using first-principles calculations. It is found that the cleavage energy of GeP monolayer is ∼0.39 J/m2, verifying it can be feasibly extracted from its bulk form. The calculated stress-strain relation reveals that monolayer GeP can withstand a tensile stress and strain up to 14.88 GPa and 28%, respectively. The band structure calculations indicate the monolayer GeP possesses an indirect band gap ∼2.28 eV, which can be reduced to 0.43 eV and experiences an indirect-direct transition when axial strain is applied. Besides, the effective masses can be dramatically tuned by strain. The predicted carrier mobilities of GeP monolayer are directionally anisotropic and the electron mobility in x direction exhibits high carrier mobility up to 1242.09 cm2 V−1 S−1. Therefore, GeP monolayer has great potential for applications in high performance flexible field-effect transistors and optoelectronic devices. 相似文献
88.
为改善量子点发光二极管器件载流子注入平衡,提出一种量子点发光二极管各功能层厚度的确定方法.首先选定量子点发光层厚度,基于隧穿模型进行仿真分析确定电子传输层厚度;然后采用空间电荷限制电流模型进行仿真分析确定空穴传输层厚度.采用CdSe/ZnS量子点作为发光层、poly-TPD作为空穴传输层、Alq_3作为电子传输层,按照该方法仿真分析得到各功能层厚度进行旋涂-蒸镀法实物器件制备.对比实验结果表明:当poly-TPD、QDs及Alq_3厚度分别为45nm、25nm及35nm时,获得了较高的发光效率及色纯度,器件性能最好.该方法确定的各功能层厚度有助于减少载流子在发光界面积累,获得载流子的注入平衡,从而改善QLEDs发光性能. 相似文献
89.
The static and dynamical local spin susceptibility of the nonstoichiometric organic conductor, κ-(BEDT-TTF)4Hg2.78Cl8, is studied by 13C NMR spectroscopy from room temperature down to 1.7 K. We observe a gradual growth of inhomogeneity in the spin state as a spectral broadening down to the lowest temperature, which is sustained even under 0.4 GPa but suppressed under 0.8 GPa. The emergence of the inhomogeneity is discussed in the light of the doped triangular-lattice Mott insulator. 相似文献
90.
David J. Foulis Sylvia Pulmannová 《International Journal of Theoretical Physics》2009,48(5):1320-1333
We refer to the real Jordan Banach algebra of bounded Hermitian operators on a Hilbert space as a Hermitian algebra. In this
paper we define and launch a study of a class of generalized Hermitian (GH) algebras. Among the examples of GH-algebras are
ordered special Jordan algebras, JW-algebras, and AJW-algebras, but unlike these more restricted cases, a GH-algebra is not
necessarily a Banach space and its lattice of projections is not necessarily complete. In this paper we develop the basic
theory of GH-algebras, identify their unit intervals as effect algebras, and observe that their projection lattices are sigma-complete
orthomodular lattices. We show that GH-algebras are spectral order-unit spaces and that they admit a substantial spectral
theory.
The second author was supported by Research and Development Support Agency under the contract No. APVV-0071-06, grant VEGA
2/0032/09 and Center of Excellence SAS, CEPI I/2/2005. 相似文献