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61.
Qiang Li Qizhao Wang Linlin Li Lijun Yang Yang Wang Xiaohui Wang Hai‐Tao Fang 《Liver Transplantation》2020,10(24)
The capacitance of microsupercapacitors (MSCs) can double if both sides of substrates are used to construct MSCs. Nevertheless, achieving electric connections of MSCs through substrates is a challenge due to the difficulty in precisely positioning each MSC couple that has two of the same MSCs units on two sides. In this work, taking advantage of the synchronous etching on both sides of transparent polyethylene terephthalate substrates by femtosecond laser pulses, a double‐sided configuration is attained with high precision in the alignment of back‐to‐back MSC couples and versatile double‐side MSCs are realized via arbitrary on‐ and through‐substrate connections of MXene MSC units. The MXene double‐side MSC fabricated by the series connection of 12 spiral pattern MXene MSC units with interdigital electrodes of 10 μm width interspace can output a large working voltage of 7.2 V. Additionally, femtosecond laser etching brings the transformation of MXene into titania near‐etched edges with a lateral distance less than 1 µm. Such a small laser‐affected area has little influence on the capacitive performance, which is one of advantages for femtosecond laser over conventional lasers. This research is valuable for one‐step manufacturing of highly integrated MSCs in the field of miniaturized energy storage systems. 相似文献
62.
Jun‐Xing Zhong Wu‐Qiang Wu Jin‐Feng Liao Wenhuai Feng Yong Jiang Lianzhou Wang Dai‐Bin Kuang 《Liver Transplantation》2020,10(7)
Halide perovskite materials have achieved overwhelming success in various optoelectronic applications, especially perovskite solar cells and perovskite‐based light‐emitting diodes (P‐LEDs), owing to their outstanding optical and electric properties. It is widely believed that flat and mirror‐like perovskite films are imperative for achieving high device performance, while the potential of other perovskite morphologies, such as the emerging textured perovskite, is overlooked, which leaves plenty of room for further breakthroughs. Compared to flat and mirror‐like perovskites, textured perovskites with unique structures, e.g., coral‐like, maze‐like, column‐like or quasi‐core@shell assemblies, are more efficient at light harvesting and charge extraction, thus revolutionizing the pathways toward ultrahigh performance in perovskite‐based optoelectronic devices. Employing a textured perovskite morphology, the record of external quantum efficiency for P‐LEDs is demonstrated as 21.6%. In this research news, recent progress in the utilization of textured perovskite is summarized, with the emphasis on the preparation strategies and prominent optoelectronic properties. The impact of the textured morphology on light harvesting, carrier dynamic management, and device performance is highlighted. Finally, the challenges and great potential of employing these innovative morphologies in fabricating more efficient optoelectronic devices, or creating a new energy harvesting and conversion regime are also provided. 相似文献
63.
Qiang Zeng Yanqing Lai Liangxing Jiang Fangyang Liu Xiaojing Hao Lianzhou Wang Martin A. Green 《Liver Transplantation》2020,10(14)
Solar energy is one of the most abundant renewable energy sources. For efficient utilization of solar energy, photovoltaic technology is regarded as the most important source. However, due to the intermittent and unstable characteristics of solar radiation, photoelectric conversion (PC) devices fail to meet the requirements of continuous power output. With the development of rechargeable electric energy storage systems (ESSs) (e.g., supercapacitors and batteries), the integration of a PC device and a rechargeable ESS has become a promising approach to solving this problem. The so‐called integrated photorechargeable ESSs which can directly store sunlight generated electricity in daylight and reversibly release it at night time, has a huge potential for future applications. This review summarizes the development of several types of mainstream integrated photorechargeable ESSs and introduces different working mechanisms for each photorechargeable ESS in detail. Several general perspectives on challenges and future development in the field are also provided. 相似文献
64.
The emodin anthraquinone derivatives are generally used in traditional Chinese medicine due to their various pharmacological activities. In the present study, a series of emodin anthraquinone derivatives have been designed and synthesized, among which 1,3‐dihydroxy‐6,8‐dimethoxyanthracene‐9,10‐dione is a natural compound that has been synthesized for the very first time, and 1,3‐dimethoxy‐5,8‐dimethylanthracene‐9,10‐dione is a compound that has never been reported earlier. Interestingly, while total seven of these compounds showed neuraminidase inhibitory activity in influenza virus with inhibition rate more than 50 %, specific four compounds exhibited significant inhibition of tumor cell proliferation. The further results demonstrate that 1,3‐dimethoxy‐5,8‐dimethylanthracene‐9,10‐dione showed the best anticancer activity among all the synthesized compounds by inducing highest apoptosis rate to HCT116 cancer cells and arresting their G0/G1 cell cycle phase, through elevation of intracellular level of reactive oxygen species (ROS). Moreover, the binding of 1,3‐dimethoxy‐5,8‐dimethylanthracene‐9,10‐dione with BSA protein has thoroughly been investigated. Altogether, this study suggests the neuraminidase inhibitory activity and antitumor potential of the new emodin anthraquinone derivatives. 相似文献
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67.
目的:探讨大鼠脑缺血后肺组织神经生长因子(nerve growth factor,NGF)/酪氨酸蛋白激酶A(tropomyosin-related kinase A,TrkA)表达的变化。方法:成年雄性大鼠随机分为假手术组和脑缺血后6 h、24 h及48 h组,每组8只。建立大脑中动脉永久性局灶性缺血模型,术后于各时间点麻醉处死大鼠后,测定肺组织湿重/干重(W/D),光镜下观察HE染色肺组织病理学改变;Western blot法检测肺组织NGF、TrkA蛋白表达。结果:与假手术组相比,脑缺血后6 h肺组织W/D有增加,差异无统计学意义(P>0.05),而脑缺血后24 h及48 h肺组织W/D均有显著增高(P<0.05),其中以24 h组最明显(P<0.01);脑缺血后6 h肺组织出现轻度充血、水肿及炎性改变,24 h及48 h组肺泡结构破坏明显。病理学评分结果显示,脑缺血后24 h及48 h组大鼠肺组织病理评分较假手术组显著升高(P<0.05);Western blot法显示,脑缺血6 h肺组织中NGF表达增加(P<0.05),48 h时表达有下降趋势,但仍高于假手术组(P<0.05)。而肺组织中TrkA表达在脑缺血6h有下降(P>0.05),24 h下降明显(P<0.05),48 h时TrkA蛋白表达虽有上升,仍显著低于假手术组(P<0.05)。结论:大鼠肺组织NGF/TrkA的动态变化可能参与了脑缺血后肺损伤的病理生理过程。 相似文献
68.
目的:探讨早期糖尿病肾病(Diabetic nephropathy,DN)模型大鼠磁共振弥散加权成像(Diffusion Weight Imaging,DWI)肾实质ADC值变化规律。方法:将20只清洁级雄性SD大鼠随机分成两组,糖尿病肾病组(DN组)12只,正常对照组(NC组)8只;DN组给予60 mg/kg链尿佐菌素腹腔注射诱导糖尿病肾病模型,NC组按照相同方法、相同剂量柠檬酸缓冲液腹腔注射;并对最终糖尿病模型造模成功并且存活的8只DN大鼠、8只NC大鼠进行MRI扫描,包括常规轴位T1WI、T2WI扫描及DWI扫描;扫描结束后收集血液送血肌酐及双肾组织进行病理检查。并测量每只大鼠双肾皮、髓质的ADC值。结果:造模后,DN组大鼠血糖明显升高、尿量明显增加、体重明显减低,DN组大鼠肾脏出现不同程度病理损伤,符合早期DN病理改变。DN组大鼠肾脏皮、髓质ADC值分别为1.522±0.913×10^-3 mm^2/s、1.268±0.388×10^-3 mm^2/s,较NC组肾脏皮、髓质ADC值1.276±0.341×10^-3 mm^2/s、1.011±0.217×10^-3 mm^2/s增高,两组比较有统计学意义(P<0.05)。结论:DWI成像ADC值可能反映早期糖尿病肾病肾脏功能的变化。 相似文献
69.
目的:制备抗曲霉菌半乳甘露聚糖的单克隆抗体,并基于获得的抗体建立用于快速准确检测曲霉菌感染的双抗体夹心酶联免疫吸附法(ELISA),以期可用于侵袭性曲霉菌病的临床诊断。方法:提取曲霉菌半乳甘露聚糖后免疫BALB/c小鼠,筛选与制备抗曲霉菌半乳甘露聚糖的单克隆抗体,通过间接ELISA法与Western Blot方法开展单克隆抗体检测性能分析,使用获得的单克隆抗体建立双抗体夹心ELISA方法,并初步应用于曲霉菌感染血清检测。结果:获得抗曲霉菌半乳甘露聚糖单克隆抗体5株,均可特异性识别曲霉菌半乳甘露聚糖,以其中性能最佳的3C9抗体和辣根过氧化物酶标记的3C9抗体配对为基础,建立了双抗体夹心ELISA方法,通过初步评价确定该方法可应用于临床侵袭性曲霉菌病血清检测,并且该方法与现有商品化试剂盒相比检测背景值较低,可更有效区分曲霉菌感染阴阳性血清。结论:本研究筛选获得针对曲霉菌半乳甘露聚糖的特异性单克隆抗体,以该抗体为基础建立双抗体夹心ELISA方法具有潜在转化应用前景,可为侵袭性曲霉菌病的临床诊断提供支持。 相似文献
70.
目的:探讨基于CT血管成像的血流储备分数对肺癌淋巴结转移的诊断价值。方法:2018年1月到11月选择在本院进行诊治的肺癌患者60例,所有患者都给予常规CT检查与CT血管成像,记录成像特征与相关血流储备分数-血流量(blood flow,BF)、血容量(blood volume,BV)、平均通过时间(mean transit time,MTT),判断诊断价值。结果:在60例患者中,病理确诊为淋巴结转移20例,非淋巴结转移40例。转移组的毛刺征、分叶征、棘突征、空泡征等CT征象发生率显著高于非转移组(P0.05)。转移组的肺动脉BF、BV值显著低于非转移组(P0.05),MTT值显著高于非转移组(P0.05)。在60例患者中,Spearman相关分析显示淋巴结转移与MTT成显著正相关性(P0.05),与BF、BV值成显著负相关性(P0.05)。结论:CT血管成像在肺癌中的应用能反映患者的血流储备分数状况,有利于判断患者的淋巴结转移情况,有很好的应用价值。 相似文献