Leader
|
|
|
00000nz a2200037n 45 0 |
001
|
|
|
WKP|Q46557390
(VIAF cluster)
(Authority/Source Record)
|
003
|
|
|
WKP |
005
|
|
|
20241121000202.0 |
008
|
|
|
241121nneanz||abbn n and d |
035
|
|
|
‡a
(WKP)Q46557390
|
024
|
|
|
‡a
0000-0002-1529-6356
‡2
orcid
|
024
|
|
|
‡a
55605768976
‡2
scopus
|
024
|
|
|
‡a
55605768092
‡2
scopus
|
024
|
|
|
‡a
57211546391
‡2
scopus
|
035
|
|
|
‡a
(OCoLC)Q46557390
|
100
|
0 |
|
‡a
Bin Zhang
‡c
zoologist
‡9
en
|
375
|
|
|
‡a
2
‡2
iso5218
|
400
|
0 |
|
‡a
Bin Zhang
‡c
zoöloog
‡9
nl
|
670
|
|
|
‡a
Author's A kinetic study of product cleavage reactions from the solid phase by a biocompatible and removable cleaving reagent, HCl
|
670
|
|
|
‡a
Author's A nano-combinatorial approach to developing cancer diagnostics: nano-combinatorial diagnostics discovery
|
670
|
|
|
‡a
Author's A nano-combinatorial library strategy for the discovery of nanotubes with reduced protein-binding, cytotoxicity, and immune response
|
670
|
|
|
‡a
Author's Adsorption of bisphenol A to a carbon nanotube reduced its endocrine disrupting effect in mice male offspring
|
670
|
|
|
‡a
Author's Advances in HPLC detection--towards universal detection
|
670
|
|
|
‡a
Author's Analytical strategies for detecting nanoparticle-protein interactions
|
670
|
|
|
‡a
Author's Design, synthesis, cytoselective toxicity, structure-activity relationships, and pharmacophore of thiazolidinone derivatives targeting drug-resistant lung cancer cells
|
670
|
|
|
‡a
Author's Determining the Cytotoxicity of Rare Earth Element Nanoparticles in Macrophages and the Involvement of Membrane Damage.
|
670
|
|
|
‡a
Author's Dichroic Mirror-Assisted Electrochemiluminescent Assay for Simultaneously Detecting Wild-type and Mutant p53 with Photomultiplier Tubes
|
670
|
|
|
‡a
Author's Efficient and Monochromatic Electrochemiluminescence of Aqueous-Soluble Au Nanoclusters via Host-Guest Recognition
|
670
|
|
|
‡a
Author's Electrochemical-Signal-Amplification Strategy for an Electrochemiluminescence Immunoassay with g-C3N4 as Tags
|
670
|
|
|
‡a
Author's Electrochemically Lighting Up Luminophores at Similar Low Triggering Potentials with Mechanistic Insights
|
670
|
|
|
‡a
Author's Electrochemistry and Electrochemiluminescence of Organometal Halide Perovskite Nanocrystals in Aqueous Medium
|
670
|
|
|
‡a
Author's Enabling anticancer therapeutics by nanoparticle carriers: the delivery of Paclitaxel
|
670
|
|
|
‡a
Author's Enhanced Near-Infrared Electrochemiluminescence from Trinary Ag-In-S to Multinary Ag-Ga-In-S Nanocrystals via Doping-in-Growth and Its Immunosensing Applications
|
670
|
|
|
‡a
Author's Experimental modulation and computational model of nano-hydrophobicity
|
670
|
|
|
‡a
Author's Feasibility of a self-calibrated LC/MS/UV method to determine the absolute amount of compounds in their storage and screening lifecycle
|
670
|
|
|
‡a
Author's Fluorescence resonance energy transfer between NH2-NaYF4:Yb,Er/NaYF4@SiO2 upconversion nanoparticles and gold nanoparticles for the detection of glutathione and cadmium ions
|
670
|
|
|
‡a
Author's Hydrogen Peroxide Involved Anodic Charge Transfer and Electrochemiluminescence of All-Inorganic Halide Perovskite CsPbBr3 Nanocrystals in an Aqueous Medium.
|
670
|
|
|
‡a
Author's Induction of size-dependent breakdown of blood-milk barrier in lactating mice by TiO2 nanoparticles
|
670
|
|
|
‡a
Author's Kinetics of resin-supported Mitsunobu esterification and etherification reactions
|
670
|
|
|
‡a
Author's Molecular-Counting-Free and Electrochemiluminescent Single-Molecule Immunoassay with Dual-Stabilizers-Capped CdSe Nanocrystals as Labels
|
670
|
|
|
‡a
Author's Monochromatic and electrochemically switchable electrochemiluminescence of perovskite CsPbBr3 nanocrystals
|
670
|
|
|
‡a
Author's Nanoparticle-based strategies for detection and remediation of environmental pollutants.
|
670
|
|
|
‡a
Author's Novel 8-hydroxylquinoline analogs induce copper-dependent proteasome inhibition and cell death in human breast cancer cells.
|
670
|
|
|
‡a
Author's Phylogeny and systematic revision of the genus Typhlomys (Rodentia, Platacanthomyidae), with description of a new species
|
670
|
|
|
‡a
Author's Probing enzyme-nanoparticle interactions using combinatorial gold nanoparticle libraries
|
670
|
|
|
‡a
Author's Promising Electrochemiluminescence from CuInS2/ZnS Nanocrystals/Hydrazine via Internal Cu(I)/Cu(II) Couple Cycling
|
670
|
|
|
‡a
Author's Promising Mercaptobenzoic Acid-Bridged Charge Transfer for Electrochemiluminescence from CuInS2@ZnS Nanocrystals via Internal Cu+/Cu2+ Couple Cycling
|
670
|
|
|
‡a
Author's Red-shifted electrochemiluminescence of CdTe nanocrystals via Co2+-Doping and its spectral sensing application in near-infrared region
|
670
|
|
|
‡a
Author's Spectrum-based and color-selective electrochemiluminescence immunoassay for determining human prostate specific antigen in near-infrared region
|
670
|
|
|
‡a
Author's Spectrum-Based Electrochemiluminescent Immunoassay with Ternary CdZnSe Nanocrystals as Labels
|
670
|
|
|
‡a
Author's Spectrum-Resolved Triplex-Color Electrochemiluminescence Multiple xing Immunoassay with Highly-Passivated Nanocrystals as Tags
|
670
|
|
|
‡a
Author's Structure-dependent response of a chemiluminescence nitrogen detector for organic compounds with adjacent nitrogen atoms connected by a single bond
|
670
|
|
|
‡a
Author's The Promising Anodic Electrochemiluminescence of Non-Toxic and Core/shell CuInS2/ZnS NCs in Aqueous Medium and Its Bio-sensing Potential.
|
670
|
|
|
‡a
Author's Tunable Electron-Injection Channels of Heterostructured ZnSe@CdTe Nanocrystals for Surface-Chemistry-Involved Electrochemiluminescence
|
670
|
|
|
‡a
Author's Ultrasensitive Electrochemiluminescent Sensor for MicroRNA with Multinary Zn–Ag–In–S/ZnS Nanocrystals as Tags
|
670
|
|
|
‡a
wikidata authority control
‡u
https://viaf.org/processed/NUKAT|n 2011163756
|
670
|
|
|
‡a
wikidata authority control
‡u
https://viaf.org/processed/ISNI|0000000114585239
|
670
|
|
|
‡a
wikidata authority control
‡u
https://viaf.org/viaf/266486720
|
670
|
|
|
‡a
wikidata authority control
‡u
https://viaf.org/processed/SUDOC|147409462
|
670
|
|
|
‡a
wikidata site links
‡u
https://species.wikipedia.org/wiki/Bin_Zhang_(zoologist)
|
909
|
|
|
‡a
(scopus) 57211546391
‡9
1
|
909
|
|
|
‡a
(scopus) 55605768092
‡9
1
|
909
|
|
|
‡a
(scopus) 55605768976
‡9
1
|
909
|
|
|
‡a
(orcid) 0000000215296356
‡9
1
|
919
|
|
|
‡a
nanoparticlebasedstrategiesfordetectionandremediationofenvironmentalpollutants
‡A
Nanoparticle-based strategies for detection and remediation of environmental pollutants.
‡9
1
|
919
|
|
|
‡a
monochromaticandelectrochemicallyswitchableelectrochemiluminescenceofperovskitecspbbr3nanocrystals
‡A
Monochromatic and electrochemically switchable electrochemiluminescence of perovskite CsPbBr3 nanocrystals
‡9
1
|
919
|
|
|
‡a
molecularcountingfreeandelectrochemiluminescentsinglemoleculeimmunoassaywithdualstabilizerscappedcdsenanocrystalsaslabels
‡A
Molecular-Counting-Free and Electrochemiluminescent Single-Molecule Immunoassay with Dual-Stabilizers-Capped CdSe Nanocrystals as Labels
‡9
1
|
919
|
|
|
‡a
kineticsofresinsupportedmitsunobuesterificationandetherificationreactions
‡A
Kinetics of resin-supported Mitsunobu esterification and etherification reactions
‡9
1
|
919
|
|
|
‡a
inductionofsizedependentbreakdownofbloodmilkbarrierinlactatingmicebytio2nanoparticles
‡A
Induction of size-dependent breakdown of blood-milk barrier in lactating mice by TiO2 nanoparticles
‡9
1
|
919
|
|
|
‡a
hydrogenperoxideinvolvedanodicchargetransferandelectrochemiluminescenceofallinorganichalideperovskitecspbbr3nanocrystalsinanaqueousmedium
‡A
Hydrogen Peroxide Involved Anodic Charge Transfer and Electrochemiluminescence of All-Inorganic Halide Perovskite CsPbBr3 Nanocrystals in an Aqueous Medium.
‡9
1
|
919
|
|
|
‡a
fluorescenceresonanceenergytransferbetweennh2nayf4ybernayf4@sio2upconversionnanoparticlesandgoldnanoparticlesforthedetectionofglutathioneandcadmiumions
‡A
Fluorescence resonance energy transfer between NH2-NaYF4:Yb,Er/NaYF4@SiO2 upconversion nanoparticles and gold nanoparticles for the detection of glutathione and cadmium ions
‡9
1
|
919
|
|
|
‡a
feasibilityofaselfcalibratedlcmsuvmethodtodeterminetheabsoluteamountofcompoundsintheirstorageandscreeninglifecycle
‡A
Feasibility of a self-calibrated LC/MS/UV method to determine the absolute amount of compounds in their storage and screening lifecycle
‡9
1
|
919
|
|
|
‡a
experimentalmodulationandcomputationalmodelofnanohydrophobicity
‡A
Experimental modulation and computational model of nano-hydrophobicity
‡9
1
|
919
|
|
|
‡a
enhancednearinfraredelectrochemiluminescencefromtrinaryaginstomultinaryaggainsnanocrystalsviadopingingrowthanditsimmunosensingapplications
‡A
Enhanced Near-Infrared Electrochemiluminescence from Trinary Ag-In-S to Multinary Ag-Ga-In-S Nanocrystals via Doping-in-Growth and Its Immunosensing Applications
‡9
1
|
919
|
|
|
‡a
enablinganticancertherapeuticsbynanoparticlecarriersthedeliveryofpaclitaxel
‡A
Enabling anticancer therapeutics by nanoparticle carriers: the delivery of Paclitaxel
‡9
1
|
919
|
|
|
‡a
electrochemistryandelectrochemiluminescenceoforganometalhalideperovskitenanocrystalsinaqueousmedium
‡A
Electrochemistry and Electrochemiluminescence of Organometal Halide Perovskite Nanocrystals in Aqueous Medium
‡9
1
|
919
|
|
|
‡a
electrochemicallylightingupluminophoresatsimilarlowtriggeringpotentialswithmechanisticinsights
‡A
Electrochemically Lighting Up Luminophores at Similar Low Triggering Potentials with Mechanistic Insights
‡9
1
|
919
|
|
|
‡a
electrochemicalsignalamplificationstrategyforanelectrochemiluminescenceimmunoassaywithgc3n4astags
‡A
Electrochemical-Signal-Amplification Strategy for an Electrochemiluminescence Immunoassay with g-C3N4 as Tags
‡9
1
|
919
|
|
|
‡a
efficientandmonochromaticelectrochemiluminescenceofaqueoussolubleaunanoclustersviahostguestrecognition
‡A
Efficient and Monochromatic Electrochemiluminescence of Aqueous-Soluble Au Nanoclusters via Host-Guest Recognition
‡9
1
|
919
|
|
|
‡a
dichroicmirrorassistedelectrochemiluminescentassayforsimultaneouslydetectingwildtypeandmutantp53withphotomultipliertubes
‡A
Dichroic Mirror-Assisted Electrochemiluminescent Assay for Simultaneously Detecting Wild-type and Mutant p53 with Photomultiplier Tubes
‡9
1
|
919
|
|
|
‡a
determiningthecytotoxicityofrareearthelementnanoparticlesinmacrophagesandtheinvolvementofmembranedamage
‡A
Determining the Cytotoxicity of Rare Earth Element Nanoparticles in Macrophages and the Involvement of Membrane Damage.
‡9
1
|
919
|
|
|
‡a
designsynthesiscytoselectivetoxicitystructureactivityrelationshipsandpharmacophoreofthiazolidinonederivativestargetingdrugresistantlungcancercells
‡A
Design, synthesis, cytoselective toxicity, structure-activity relationships, and pharmacophore of thiazolidinone derivatives targeting drug-resistant lung cancer cells
‡9
1
|
919
|
|
|
‡a
analyticalstrategiesfordetectingnanoparticleproteininteractions
‡A
Analytical strategies for detecting nanoparticle-protein interactions
‡9
1
|
919
|
|
|
‡a
advancesinhplcdetectiontowardsuniversaldetection
‡A
Advances in HPLC detection--towards universal detection
‡9
1
|
919
|
|
|
‡a
adsorptionofbisphenolatoacarbonnanotubereduceditsendocrinedisruptingeffectinmicemaleoffspring
‡A
Adsorption of bisphenol A to a carbon nanotube reduced its endocrine disrupting effect in mice male offspring
‡9
1
|
919
|
|
|
‡a
nanocombinatoriallibrarystrategyforthediscoveryofnanotubeswithreducedproteinbindingcytotoxicityandimmuneresponse
‡A
A nano-combinatorial library strategy for the discovery of nanotubes with reduced protein-binding, cytotoxicity, and immune response
‡9
1
|
919
|
|
|
‡a
nanocombinatorialapproachtodevelopingcancerdiagnosticsnanocombinatorialdiagnosticsdiscovery
‡A
A nano-combinatorial approach to developing cancer diagnostics: nano-combinatorial diagnostics discovery
‡9
1
|
919
|
|
|
‡a
kineticstudyofproductcleavagereactionsfromthesolidphasebyabiocompatibleandremovablecleavingreagenthcl
‡A
A kinetic study of product cleavage reactions from the solid phase by a biocompatible and removable cleaving reagent, HCl
‡9
1
|
919
|
|
|
‡a
ultrasensitiveelectrochemiluminescentsensorformicrornawithmultinaryznaginsznsnanocrystalsastags
‡A
Ultrasensitive Electrochemiluminescent Sensor for MicroRNA with Multinary Zn–Ag–In–S/ZnS Nanocrystals as Tags
‡9
1
|
919
|
|
|
‡a
tunableelectroninjectionchannelsofheterostructuredznse@cdtenanocrystalsforsurfacechemistryinvolvedelectrochemiluminescence
‡A
Tunable Electron-Injection Channels of Heterostructured ZnSe@CdTe Nanocrystals for Surface-Chemistry-Involved Electrochemiluminescence
‡9
1
|
919
|
|
|
‡a
promisinganodicelectrochemiluminescenceofnontoxicandcoreshellcuins2znsncsinaqueousmediumanditsbiosensingpotential
‡A
The Promising Anodic Electrochemiluminescence of Non-Toxic and Core/shell CuInS2/ZnS NCs in Aqueous Medium and Its Bio-sensing Potential.
‡9
1
|
919
|
|
|
‡a
structuredependentresponseofachemiluminescencenitrogendetectorfororganiccompoundswithadjacentnitrogenatomsconnectedbyasinglebond
‡A
Structure-dependent response of a chemiluminescence nitrogen detector for organic compounds with adjacent nitrogen atoms connected by a single bond
‡9
1
|
919
|
|
|
‡a
spectrumresolvedtriplexcolorelectrochemiluminescencemultiple xing immunoassaywithhighlypassivatednanocrystalsastags
‡A
Spectrum-Resolved Triplex-Color Electrochemiluminescence Multiple xing Immunoassay with Highly-Passivated Nanocrystals as Tags
‡9
1
|
919
|
|
|
‡a
spectrumbasedelectrochemiluminescentimmunoassaywithternarycdznsenanocrystalsaslabels
‡A
Spectrum-Based Electrochemiluminescent Immunoassay with Ternary CdZnSe Nanocrystals as Labels
‡9
1
|
919
|
|
|
‡a
spectrumbasedandcolorselectiveelectrochemiluminescenceimmunoassayfordetermininghumanprostatespecificantigeninnearinfraredregion
‡A
Spectrum-based and color-selective electrochemiluminescence immunoassay for determining human prostate specific antigen in near-infrared region
‡9
1
|
919
|
|
|
‡a
redshiftedelectrochemiluminescenceofcdtenanocrystalsviaco2+dopinganditsspectralsensingapplicationinnearinfraredregion
‡A
Red-shifted electrochemiluminescence of CdTe nanocrystals via Co2+-Doping and its spectral sensing application in near-infrared region
‡9
1
|
919
|
|
|
‡a
promisingmercaptobenzoicacidbridgedchargetransferforelectrochemiluminescencefromcuins2@znsnanocrystalsviainternalcu+cu2+couplecycling
‡A
Promising Mercaptobenzoic Acid-Bridged Charge Transfer for Electrochemiluminescence from CuInS2@ZnS Nanocrystals via Internal Cu+/Cu2+ Couple Cycling
‡9
1
|
919
|
|
|
‡a
promisingelectrochemiluminescencefromcuins2znsnanocrystalshydrazineviainternalcu1cu2couplecycling
‡A
Promising Electrochemiluminescence from CuInS2/ZnS Nanocrystals/Hydrazine via Internal Cu(I)/Cu(II) Couple Cycling
‡9
1
|
919
|
|
|
‡a
probingenzymenanoparticleinteractionsusingcombinatorialgoldnanoparticlelibraries
‡A
Probing enzyme-nanoparticle interactions using combinatorial gold nanoparticle libraries
‡9
1
|
919
|
|
|
‡a
phylogenyandsystematicrevisionofthegenustyphlomysrodentiaplatacanthomyidaewithdescriptionofanewspecies
‡A
Phylogeny and systematic revision of the genus Typhlomys (Rodentia, Platacanthomyidae), with description of a new species
‡9
1
|
919
|
|
|
‡a
novel8hydroxylquinolineanalogsinducecopperdependentproteasomeinhibitionandcelldeathinhumanbreastcancercells
‡A
Novel 8-hydroxylquinoline analogs induce copper-dependent proteasome inhibition and cell death in human breast cancer cells.
‡9
1
|
946
|
|
|
‡a
a
‡9
1
|
996
|
|
|
‡2
ISNI|0000000381539376
|
996
|
|
|
‡2
DNB|1116716895
|
996
|
|
|
‡2
SUDOC|229605486
|
996
|
|
|
‡2
LC|nr 95024737
|
996
|
|
|
‡2
DNB|1058847570
|
996
|
|
|
‡2
NII|DA09365574
|
996
|
|
|
‡2
SUDOC|150625596
|
996
|
|
|
‡2
PLWABN|9812615464405606
|
996
|
|
|
‡2
NKC|ntk2010603815
|
996
|
|
|
‡2
ISNI|0000000040995429
|
996
|
|
|
‡2
NTA|224246887
|
996
|
|
|
‡2
NUKAT|n 96300481
|
996
|
|
|
‡2
ISNI|0000000073364674
|
996
|
|
|
‡2
DNB|1236448324
|
996
|
|
|
‡2
NTA|333622316
|
996
|
|
|
‡2
KRNLK|KAC200906026
|
996
|
|
|
‡2
LC|no2007005304
|
996
|
|
|
‡2
LC|n 2017049654
|
996
|
|
|
‡2
NSK|000751544
|
996
|
|
|
‡2
NII|DA09216949
|
996
|
|
|
‡2
ISNI|0000000079305384
|
996
|
|
|
‡2
SUDOC|114000301
|
996
|
|
|
‡2
ISNI|0000000059122863
|
996
|
|
|
‡2
PLWABN|9810599797705606
|
996
|
|
|
‡2
PLWABN|9812842005505606
|
996
|
|
|
‡2
LC|no2022038436
|
996
|
|
|
‡2
ISNI|0000000041855495
|
996
|
|
|
‡2
ISNI|0000000420188936
|
996
|
|
|
‡2
LC|n 78060567
|
996
|
|
|
‡2
NYNYRILM|393439
|
996
|
|
|
‡2
NUKAT|n 2016163277
|
996
|
|
|
‡2
CAOONL|ncf11676250
|
996
|
|
|
‡2
ISNI|0000000444629476
|
996
|
|
|
‡2
ISNI|0000000430296236
|
996
|
|
|
‡2
SUDOC|186208855
|
996
|
|
|
‡2
DNB|1341010562
|
996
|
|
|
‡2
NSK|000521593
|
996
|
|
|
‡2
DNB|1318525713
|
996
|
|
|
‡2
DNB|1129129004
|
996
|
|
|
‡2
DNB|1060689715
|
996
|
|
|
‡2
NTA|191354074
|
996
|
|
|
‡2
ISNI|0000000499118868
|
996
|
|
|
‡2
LC|n 2018056574
|
996
|
|
|
‡2
BNF|16519085
|
996
|
|
|
‡2
ISNI|0000000064198627
|
996
|
|
|
‡2
LC|no2011128503
|
996
|
|
|
‡2
LC|no2006046296
|
996
|
|
|
‡2
BIBSYS|7023201
|
996
|
|
|
‡2
PLWABN|9812197444705606
|
996
|
|
|
‡2
DNB|1044747463
|
996
|
|
|
‡2
LC|no2018020591
|
996
|
|
|
‡2
DNB|1120966205
|
996
|
|
|
‡2
LC|n 2010010394
|
996
|
|
|
‡2
LC|no2014098036
|
996
|
|
|
‡2
DNB|1271058561
|
996
|
|
|
‡2
BIBSYS|90168555
|
996
|
|
|
‡2
SUDOC|176534113
|
996
|
|
|
‡2
SUDOC|260971421
|
996
|
|
|
‡2
LC|no2013098921
|
996
|
|
|
‡2
LC|n 2016003054
|
996
|
|
|
‡2
NSK|000651300
|
996
|
|
|
‡2
DNB|1249078083
|
996
|
|
|
‡2
LC|no2009195327
|
996
|
|
|
‡2
CAOONL|ncf13666135
|
996
|
|
|
‡2
DNB|1221219391
|
996
|
|
|
‡2
ISNI|0000000392192910
|
996
|
|
|
‡2
ISNI|0000000114585239
|
996
|
|
|
‡2
BNF|12282099
|
996
|
|
|
‡2
NII|DA19427022
|
996
|
|
|
‡2
RERO|A027240805
|
996
|
|
|
‡2
PLWABN|9812080109705606
|
996
|
|
|
‡2
LC|no2009059056
|
996
|
|
|
‡2
LC|no2001072853
|
996
|
|
|
‡2
SUDOC|147409462
|
996
|
|
|
‡2
DNB|171300599
|
996
|
|
|
‡2
LC|no2015110910
|
996
|
|
|
‡2
PLWABN|9812800780505606
|
996
|
|
|
‡2
DNB|1344541496
|
996
|
|
|
‡2
ISNI|0000000497387183
|
996
|
|
|
‡2
RERO|A003998331
|
996
|
|
|
‡2
PLWABN|9811568574205606
|
996
|
|
|
‡2
LC|no2013114387
|
996
|
|
|
‡2
NSK|000364841
|
996
|
|
|
‡2
ISNI|0000000049092744
|
996
|
|
|
‡2
DNB|1136603433
|
996
|
|
|
‡2
LC|no2010084958
|
996
|
|
|
‡2
NTA|185252613
|
996
|
|
|
‡2
LC|no2009070908
|
996
|
|
|
‡2
BIBSYS|1523345895139
|
996
|
|
|
‡2
BNF|18162951
|
996
|
|
|
‡2
DNB|1302487671
|
996
|
|
|
‡2
ISNI|0000000060475711
|
996
|
|
|
‡2
NII|DA07181220
|
996
|
|
|
‡2
DNB|136994822
|
996
|
|
|
‡2
ISNI|0000000436170853
|
996
|
|
|
‡2
CYT|AC000227850
|
996
|
|
|
‡2
CYT|AC000634036
|
996
|
|
|
‡2
DNB|121008208X
|
996
|
|
|
‡2
DNB|133565386
|
996
|
|
|
‡2
J9U|987007338013705171
|
996
|
|
|
‡2
DNB|1163282480
|
996
|
|
|
‡2
RERO|A013203728
|
996
|
|
|
‡2
LC|no2010028253
|
996
|
|
|
‡2
LC|n 2014003967
|
996
|
|
|
‡2
ISNI|0000000048614053
|
996
|
|
|
‡2
ISNI|0000000120675900
|
996
|
|
|
‡2
NII|DA11317665
|
996
|
|
|
‡2
CYT|AC000030563
|
996
|
|
|
‡2
DNB|1024722333
|
996
|
|
|
‡2
LC|nr 93022692
|
996
|
|
|
‡2
RERO|A003998332
|
996
|
|
|
‡2
LC|no2024129700
|
996
|
|
|
‡2
BNF|16596295
|
996
|
|
|
‡2
DNB|1252872739
|
996
|
|
|
‡2
CYT|AC000635089
|
996
|
|
|
‡2
BIBSYS|1007761
|
996
|
|
|
‡2
PLWABN|9814248359005606
|
996
|
|
|
‡2
SUDOC|13042501X
|
996
|
|
|
‡2
LC|nr 99033060
|
996
|
|
|
‡2
LC|no2014086298
|
996
|
|
|
‡2
SUDOC|11903509X
|
996
|
|
|
‡2
NUKAT|n 2011163756
|
996
|
|
|
‡2
PLWABN|9814277353205606
|
996
|
|
|
‡2
LC|no2022138242
|
996
|
|
|
‡2
DNB|1060862670
|
996
|
|
|
‡2
LC|no2016090879
|
996
|
|
|
‡2
DNB|1166408221
|
996
|
|
|
‡2
NTA|145382621
|
996
|
|
|
‡2
DNB|1279229845
|
996
|
|
|
‡2
ISNI|000000005090739X
|
996
|
|
|
‡2
LC|no2022137880
|
996
|
|
|
‡2
LC|no2006094514
|
996
|
|
|
‡2
DNB|1153514028
|
996
|
|
|
‡2
LC|n 2008024810
|
996
|
|
|
‡2
DNB|172936438
|
996
|
|
|
‡2
ISNI|0000000389959009
|
996
|
|
|
‡2
LC|no2024122174
|
997
|
|
|
‡a
0 0 lived 0 0
‡9
1
|
998
|
|
|
‡a
Zhang, Bin,
‡2
SUDOC|147409462
‡3
suggested
|
998
|
|
|
‡a
Zhang, Bin
‡2
ISNI|0000000114585239
‡3
suggested
|
998
|
|
|
‡a
Zhang, Bin
‡2
ISNI|0000000114585239
‡3
suggested
|
998
|
|
|
‡a
Zhang, Bin
‡2
ISNI|0000000114585239
‡3
suggested
|
998
|
|
|
‡a
Zhang, Bin,
‡2
ISNI|0000000114585239
‡3
suggested
|
998
|
|
|
‡a
Zhang, Bin
‡2
NUKAT|n 2011163756
‡3
suggested
|