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| 1 | Molybdenum sulfide/graphene-carbon nanotube nanocomposite material for electrocatalytic applications in hydrogen evolution reactions显示文摘我们报导铝二硫化物合成的一个三维的层次第三的混血儿(瞬间 2), 减少了 graphene 氧化物(去) ,并且碳 nanotubes (CNT ) 由一个二拍子的圆舞过程准备了。第一,与三维的 microstructuresare 减少了 GOCNT composites 由水的分散的热水的处理综合了去并且经由相互作用形成合成结构的 CNT。然后,瞬间 2 nanoparticles 热水地在 GOCNT 的表面上被种合成。在氢进化反应的这项第三的合成表演上级 electrocatalytic 活动和稳定性与仅仅 35 mV 的一个低发作潜力,~的一个 Tafel 斜坡 38 mVor AuCuFeCo ),并且优化 AuCuFeCo 0.8相应于 134.4 食火鸟的浸透的磁化的 Ni 0.2性能????愠汬祯湩?? | Majid Khan Ammar Bin Yousaf Mingming Chen Chengsha Wei Xibo Wu Ningdong Huang Zemin Qi Liangbin Li | 2016 | Nano Research2016,9,3: | 7 |
| 2 | Novel Co-free high performance TRIP and TWIP medium-entropy alloys at cryogenic temperatures显示文摘Recently,high-and medium-entropy alloys(HEAs and MEAs) have been found to exhibit excellent cryogenic mechanical properties,but most of them contain high-priced Co element.Therefore,developing HEAs or MEAs with high strength and ductility and relatively low cost is urgent.In this work,novel Cofree Fex Mn(75-x) Ni(10)Cr(15)(x=50 and 55 at.%) MEAs were developed,which exhibit a good combination of low cost,high strength and ductility at cryogenic temperature.It was found that the Fe(50)Mn(25)Ni(10)Cr(15)MEA exhibits a combination of cryogenic tensile strength of^0.98 GPa and ductility of^83 %.The excellent cryogenic mechanical properties were attributed to joint of twinning-induced plasticity(TWIP) and transformation-induced plasticity(TRIP) effects.The present study sheds light on developing low cost MEAs with high perfo rmance for cryogenic-tempe rature applications. | Ran Wei Kaisheng Zhang Liangbin Chen Zhenhua Han Tan Wang Chen Chen Jianzhong Jiang Tingwei Hu Fushan Li | 2020 | Journal of Materials Science & Technology2020,54,22: | 6 |
| 3 | Genetic Fingerprint Concerned with Lymphatic Metastasis of Human Lung Squamous Cancer显示文摘背景与目的筛选肺鳞癌患者淋巴转移差异表达基因群。方法原发癌组织及区域淋巴结取自10例接受完全性肺癌切除手术的肺鳞癌患者。根据组织来源将标本分为三组:不伴淋巴转移的肺鳞癌组织(TxN-,n=5)、伴有淋巴转移的肺鳞癌组织(TxN+,n=5)及相应转移淋巴结中的肺鳞癌细胞(N+,n=5)。对各组进行激光显微切割以获得纯净癌细胞,T7RNA线性扩增获取足够量的RNA,实验通道和参照通道分别标记以后与含6000个已知人类基因或表达序列标签的cDNA基因芯片杂交,扫描荧光信号以后进行数据分析。结果共有37个基因可将TxN+组与TxN-组区分开,其中在TxN+组高表达的基因有8个,主要涉及蛋白合成、信号传导、伴侣蛋白和酶等。有29个基因在TxN-组高表达,这些基因主要编码细胞周期调节子、转导子、信号传导蛋白以及细胞凋亡调节蛋白。比较N+组与TxN+组却没有发现具有显著性的差异表达基因。结论肺鳞癌的淋巴转移表型的获得可能是早期事件。这些差异基因的发现有助于阐明肺鳞癌淋巴转移的分子机制和寻找新的治疗靶点。 | Mingjian GE Mei WANG Qingchen WU Zhiming QIN Li CHEN Liangbin LI Li LI Xiaolong ZHAO | 2009 | 中国肺癌杂志2009,12,9: | 2 |
| 4 | Synthesis process and luminescence properties of Tm 3+ in AWO 4 (A显示文摘 | Jinsheng Liao Bao Qiu Herui Wen Jinglin Chen Weixiong You Liangbin Liu | 2009 | Journal of Alloys and Compounds2009,,1: | 1 |
| 5 | p-Type and n-type Cu 2 O semiconductor thin films: Controllable preparation by simple solvothermal method and photoelectrochemical properties显示文摘 | Liangbin Xiong Sheng Huang Xi Yang Mingqiang Qiu Zhenghua Chen Ying Yu | 2010 | Electrochimica Acta2010,,6: | 1 |
| 6 | Toughening FeMn-based high-entropy alloys via retarding phase transformation显示文摘Various high entropy alloys(HEAs)with improved mechanical properties were developed by reducing the phase stability and then promote the phase transformation.The promotion of deformation-induced ma rtensitic transformation from face-centered cubic(fcc)to hexagonal close-packed(hcp)mostly focuses on overcoming the trade-off of strength-ductility of HEAs at room temperature.However,the hcp phase is brittle at cryogenic-temperature,and thus the enhancement of cryogenic ductility of these HEAs still remains a challenge.Here,we present a concept to toughening Fe50Mn30Co10Cr10 HEAs at cryogenictemperature via retarding phase transformation.The retarded but more persistent phase transformation at high strain level was realized via tailoring the grain size.To further verify the effect of phase transformation rate on ductility of HEAs,the mechanical properties of Fe40Mn40Co10Cr10 HEAs with higher stacking fault energy were tested at room and cryogenic temperature,respectively.The present study sheds light on developing high perfo rmance HEAs,especially for alloys with brittle phase transformation products. | Ran Wei Kaisheng Zhang Liangbin Chen Zhenhua Han Chen Chen Tan Wang Jianzhong Jiang Tingwei Hu Shaokang Guan Fushan Li | 2020 | Journal of Materials Science & Technology2020,47,16: | 1 |
| 7 | Treatment Effects of Integrated TCM and Western Medicine Treatment Scheme on COVID-19: A Single-armed Clinical Trial显示文摘Backgroud:The outbreak of COVID-19 has brought unprecedented perils to human health and raised public health concerns in more than two hundred countries.Safe and effective treatment scheme is needed urgently.Objective:To evaluate the effects of integratedTCM and western medicine treatment scheme on COVID-19.Methods:A single-armed clinical trial was carried out in Hangzhou Xixi Hospital,an affiliated hospital with Zhejiang Chinese Medical University.102 confirmed cases were screened out from 725 suspected cases and 93 of them were treated with integrated TCM and western medicine treatment scheme.Results:83 cases were cured,5 cases deteriorated,and 5 cases withdrew from the study.No deaths were reported.The mean relief time of fever,cough,diarrhea,and fatigue were(4.78±4.61)days,(7.22±4.99)days,(5.28±3.39)days,and(5.28±3.39)days,respectively.It took(14.84±5.50)days for SARS-CoV-2 by nucleic acid amplification-based testing to turn negative.Multivariable cox regression analysis revealed that age,BMI,PISCT,BPC,AST,CK,BS,and UPRO were independent risk factors for COVID-19 treatment.Conclusion:Our study suggested that integrated TCM and western medicine treatment scheme was effective for COVID-19. | Jianfeng Bao Zhijun Xie Shourong Liu Lin Huang Jing Sun Yujun Tang Haiping Chen Jianjiang Qi Jianchun Guo Liangbin Miao Zhaoyi Li Hui Yang Yi Zhang Zhiyu Li Yuan Xu Shengyou Lin Yunhao Xun Li Zhang Jie Bao Zhaobin Cai Jinsong Huang Chengping Wen | 2021 | Clinical Complementary Medicine and Pharmacology2021,1,1: | 0 |
| 8 | Manipulating the morphology of CdS/Sb_(2)S_(3) heterojunction using a Mg-doped tin oxide buffer layer for highly efficient solar cells显示文摘Antimony sulfide(Sb_(2)S_(3))is an appealing semiconductor as light absorber for solar cells due to its high absorption coefficient,appropriate band gap(~1.7 e V)and abundance of constituent elements.However,power conversion efficiency(PCE)of Sb_(2)S_(3)-based solar cells still lags much behind the theoretically predicted due to the imperfect energy level alignment at the charge transporting layer/Sb_(2)S_(3)interfaces and hence severe charge recombination.Herein,we insert a high-temperature sintered magnesium(Mg)-doped tin oxide(SnO_(2))layer between cadmium sulfide(Cd S)and fuorine doped tin oxide to form a cascaded energy level alignment and thus mitigate interfacial charge recombination.Simultaneously,the inserted Mg-doped Sn O_(2)buffer layer facilitates the growth of the neibouring Cd S film with orientation followed by Sb_(2)S_(3)film with larger grains and fewer pinholes.Consequently,the resultant Sb_(2)S_(3)solar cells with Mg-doped SnO_(2)deliver a champion PCE of 6.31%,22.8%higher than those without a buffer layer.Our work demonstrates that deliberate absorber growth as well as efficient hole blocking upon an appropriate buffer layer is viable in obtaining solution-processed Sb_(2)S_(3)solar cells with high performance. | Jiashuai Li Liangbin Xiong Xuzhi Hu Jiwei Liang Cong Chen Feihong Ye Jing Li Yongjie Liu Wenlong Shao Ti Wanga Chen Tao Guojia Fang | 2022 | Journal of Energy Chemistry2022,31,3: | 0 |
| 9 | Engineered biochemical cues of regenerative biomaterials to enhance endogenous stem/progenitor cells(ESPCs)-mediated articular cartilage repair显示文摘As a highly specialized shock-absorbing connective tissue,articular cartilage(AC)has very limited self-repair capacity after traumatic injuries,posing a heavy socioeconomic burden.Common clinical therapies for small-to medium-size focal AC defects are well-developed endogenous repair and cell-based strategies,including microfracture,mosaicplasty,autologous chondrocyte implantation(ACI),and matrix-induced ACI(MACI).However,these treatments frequently result in mechanically inferior fibrocartilage,low cost-effectiveness,donor site morbidity,and short-term durability.It prompts an urgent need for innovative approaches to pattern a pro-regenerative microenvironment and yield hyaline-like cartilage with similar biomechanical and biochemical properties as healthy native AC.Acellular regenerative biomaterials can create a favorable local environment for AC repair without causing relevant regulatory and scientific concerns from cell-based treatments.A deeper understanding of the mechanism of endogenous cartilage healing is furthering the(bio)design and application of these scaffolds.Currently,the utilization of regenerative biomaterials to magnify the repairing effect of joint-resident endogenous stem/progenitor cells(ESPCs)presents an evolving improvement for cartilage repair.This review starts by briefly summarizing the current understanding of endogenous AC repair and the vital roles of ESPCs and chemoattractants for cartilage regeneration.Then several intrinsic hurdles for regenerative biomaterials-based AC repair are discussed.The recent advances in novel(bio)design and application regarding regenerative biomaterials with favorable biochemical cues to provide an instructive extracellular microenvironment and to guide the ESPCs(e.g.adhesion,migration,proliferation,differentiation,matrix production,and remodeling)for cartilage repair are summarized.Finally,this review outlines the future directions of engineering the next-generation regenerative biomaterials toward ultimate clinical translation. | Liangbin Zhou Jietao Xu Andrea Schwa Wenxue Tong Jiankun Xu Lizhen Zheng Ye Li Zhuo Li Shunxiang Xu Ziyi Chen Li Zou Xin Zhao Gerjo J.V.Mvan Osch Chunyi Wen Ling Qin | 2023 | Bioactive Materials2023,,8: | 0 |