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| 1 | Gas Sensors Based on Chemi?Resistive Hybrid Functional Nanomaterials显示文摘Chemi-resistive sensors based on hybrid functional materials are promising candidates for gas sensing with high responsivity,good selectivity,fast response/recovery,great stability/repeatability,room-working temperature,low cost,and easy-to-fabricate,for versatile applications.This progress report reviews the advantages and advances of these sensing structures compared with the single constituent,according to five main sensing forms:manipulating/constructing heterojunctions,catalytic reaction,charge transfer,charge carrier transport,molecular binding/sieving,and their combinations.Promises and challenges of the advances of each form are presented and discussed.Critical thinking and ideas regarding the orientation of the development of hybrid material-based gas sensor in the future are discussed. | Yingying Jian Wenwen Hu Zhenhuan Zhao Pengfei Cheng Hossam Haick Mingshui Yao Weiwei Wu | 2020 | Nano-Micro Letters2020,12,6: | 5 |
| 2 | An Organic Solvent-Assisted Intercalation and Collection (OAIC) for Ti_(3)C_(2)T_(x) MXene with Controllable Sizes and Improved Yield显示文摘A good method of synthesizing Ti_(3)C_(2)T_(x)(MXene)is critical for ensuring its success in practical applications,e.g.,electromagnetic interference shielding,electrochemical energy storage,catalysis,sensors,and biomedicine.The main concerns focus on the moderation of the approach,yield,and product quality.Herein,a modified approach,organic solvent-assisted intercalation and collection,was developed to prepare Ti_(3)C_(2)T_(x) flakes.The new approach simultaneously solves all the concerns,featuring a low requirement for facility(centrifugation speed<4000 rpm in whole process),gram-level preparation with remarkable yield(46.3%),a good electrical conductivity(8672 S cm^(−1)),an outstanding capacitive performance(352 F g^(−1)),and easy control over the dimension of Ti_(3)C_(2)T_(x) flakes(0.47–4.60μm^(2)).This approach not only gives a superb example for the synthesis of other MXene materials in laboratory,but sheds new light for the future mass production of Ti_(3)C_(2)T_(x) MXene. | Danyao Qu Yingying Jian Lihao Guo Chen Su Ning Tang Xingmao Zhang Wenwen Hu Zheng Wang Zhenhuan Zhao Peng Zhong Peipei Li Tao Du Hossam Haick Weiwei Wu | 2021 | Nano-Micro Letters2021,13,11: | 2 |
| 3 | Volatile fingerprints of cancer specific genetic mutations显示文摘 | Nir Peled Orna Barash Ulrike Tisch Radu Ionescu Yoav Y. Broza Maya Ilouze Jane Mattei Paul A. Bunn Fred R. Hirsch Hossam Haick | 2013 | Nanomedicine: Nanotechnology, Biology, and Medicine2013,,: | 1 |
| 4 | Non-invasive Breath Analysis of Pulmonary Nodules显示文摘 | Nir Peled Meggie Hakim Paul A. Bunn York E. Miller Timothy C. Kennedy Jane Mattei John D. Mitchell Fred R. Hirsch Hossam Haick | 2012 | Journal of Thoracic Oncology2012,,10: | 1 |
| 5 | Volatolomics in healthcare and its advanced detection technology显示文摘Various diseases increasingly challenge the health status and life quality of human beings.Volatolome emitted from patients has been considered as a potential family of markers,volatolomics,for diagnosis/screening.There are two fundamental issues of volatolomics in healthcare.On one hand,the solid relationship between the volatolome and specific diseases needs to be clarified and verified.On the other hand,effective methods should be explored for the precise detection of volatolome.Several comprehensive review articles had been published in this field.However,a timely and systematical summary and elaboration is still desired.In this review article,the research methodology of volatolomics in healthcare is critically considered and given out,at first.Then,the sets of volatolome according to specific diseases through different body sources and the analytical instruments for their identifications are systematically summarized.Thirdly,the advanced electronic nose and photonic nose technologies for volatile organic compounds(VOCs)detection are well introduced.The existed obstacles and future perspectives are deeply thought and discussed.This article could give a good guidance to researchers in this interdisciplinary field,not only understanding the cutting-edge detection technologies for doctors(medicinal background),but also making reference to clarify the choice of aimed VOCs during the sensor research for chemists,materials scientists,electronics engineers,etc. | Wenwen Hu Weiwei Wu Yingying Jian Hossam Haick Guangjian Zhang Yun Qian Miaomiao Yuan Mingshui Yao | 2022 | Nano Research2022,15,9: | 1 |
| 6 | 显示文摘 | Hossam Haick Yaron Paz | 2001 | J Phys Chem B2001,105,: | 1 |
| 7 | Exhaled breath diagnostics of lung and gastric cancers in China using nanosensors显示文摘Dear Editor,Breath analysis is a promising diagnostic approach for various conditions[1,2].It is based on the identification of volatile organic compounds(VOCs)emitted in the breath,which creates a unique volatolomic signature[3].Owing to their characteristics,VOCs can be measured non-intrusively from the breath or other body sources[3,4].Several studies have shown the diagnostic potential for a variety of conditions based on VOC analysis[5-9].Malignant diseases,where early detection is crucial,are the main focus of VOC analysis,with lung cancer(LC)and gastric cancer(GC)being the most studied.LC and GC together were responsible for approximately 2.5 million deaths globally in 2018[10].The aim of VOC analysis of the breath using sensors is to identify a“VOC-print”comprising the total abundances and ratios of the compounds in the breath,giving an overall unique chemical pattern[11]. | Alaa Gharra Yoav Y.Broza Guiping Yu Weidong Mao Dong Shen Lichun Deng Chun Wu Qiong Wang Xia Sun Jianming Huang Zhuoqi Xuan Bing Huang Song Wu Yana Milyutin Viki Kloper-Weidenfeld Hossam Haick | 2020 | Cancer Communications2020,40,6: | 0 |
| 8 | Tailoring Food Biopolymers into Biogels for Regenerative Wound Healing and Versatile Skin Bioelectronics显示文摘An increasing utilization of wound-related therapeutic materials and skin bioelectronics urges the development of multifunctional biogels for personal therapy and health management.Nevertheless,conventional dressings and skin bioelectronics with single function,mechanical mismatches,and impracticality severely limit their widespread applications in clinical.Herein,we explore a gelling mechanism,fabrication method,and functionalization for broadly applicable food biopolymers-based biogels that unite the challenging needs of elastic yet injectable wound dressing and skin bioelectronics in a single system.We combine our biogels with functional nanomaterials,such as cuttlefish ink nanoparticles and silver nanowires,to endow the biogels with reactive oxygen species scavenging capacity and electrical conductivity,and finally realized the improvement in diabetic wound microenvironment and the monitoring of electrophysiological signals on skin.This line of research work sheds light on preparing food biopolymers-based biogels with multifunctional integration of wound treatment and smart medical treatment. | Qiankun Zeng Qiwen Peng Fangbing Wang Guoyue Shi Hossam Haick Min Zhang | 2023 | Nano-Micro Letters2023,15,9: | 0 |